From 230c9f3c4135822b1dcf46f84e1a15a95e94edd3 Mon Sep 17 00:00:00 2001 From: romainsacchi Date: Sun, 21 Aug 2022 14:58:52 +0200 Subject: [PATCH] Datapackage creation --- CITATION.cff | 23 +- README.md | 84 ++- configuration_file/config.yaml | 349 ++++----- datapackage.json | 54 +- inventories/lci-cobalt_ei38.csv | 183 ----- scenario_data/scenario_data.csv | 1214 +++++++++++++++++++++++++++++-- 6 files changed, 1432 insertions(+), 475 deletions(-) delete mode 100644 inventories/lci-cobalt_ei38.csv diff --git a/CITATION.cff b/CITATION.cff index 825b3b7..598fa20 100644 --- a/CITATION.cff +++ b/CITATION.cff @@ -3,24 +3,21 @@ cff-version: 1.2.0 title: >- - Effects of the energy transition on environmental - impacts of cobalt supply: A prospective life cycle - assessment study on future supply of cobalt. + Boyce, J. C. (2022). Ammonia decarbonisation pathways + and their effects on life cycle assessments: Integrating + future ammonia scenarios into background data for prospective + LCAs. [Master’s Thesis, Leiden University and TU Delft] message: Please cite this dataset using these metadata. type: dataset authors: - - given-names: Marc - family-names: van der Meide - email: m.t.van.der.meide@cml.leidenuniv.nl + - given-names: Johanna + family-names: Boyce + email: j.c.boyce@umail.leidenuniv.nl affiliation: >- Faculty of Science - Institute of environmental sciences (CML) -identifiers: - - type: doi - value: 10.1111/jiec.13258 - description: Publication DOI repository-code: >- - https://github.com/premise-community-scenarios/cobalt-perspective-2050 + https://github.com/premise-community-scenarios/ammonia-prospective-scenarios abstract: >- - Scenario to integrate the future global supply of - cobalt into the premise Python package + Scenario to integrate the future supply of + ammonia into the premise Python package diff --git a/README.md b/README.md index ca8b85b..6abf254 100644 --- a/README.md +++ b/README.md @@ -1,34 +1,39 @@ -# cobalt-perspective-2050 ![GitHub release (latest by date)](https://img.shields.io/github/v/release/premise-community-scenarios/cobalt-perspective-2050) [![DOI](https://zenodo.org/badge/DOI/10.5281/zenodo.6984300.svg)](https://doi.org/10.5281/zenodo.6984300) +# ammonia-prospective-scenarios ![GitHub release (latest by date)](https://img.shields.io/github/v/release/premise-community-scenarios/ammonia-prospective-scenarios) [![DOI](https://zenodo.org/badge/DOI/10.5281/zenodo.6984300.svg)](https://doi.org/10.5281/zenodo.6984300) Description ----------- -This is a repository containing a scenario that implements the projections of the -van der Meide et al., 2022 study for: +This is a repository containing scenarios that implement the projections developed +in the Master thesis study of Johanna Boyce for: -* cobalt. +* ammonia. -It is meant to be used in `premise` in addition to a global IAM scenario, to provide -refined projections for the future supply of cobalt on the global market. +It is meant to be used in `premise` in addition to a global IMAGE scenario, +to provide refined projections for the future supply of ammonia for +each IMAGE region. This data package contains all the files necessary for `premise` to implement -this scenario and create market-specific composition for cobalt (including supply from recycling channels). +this scenario and create market- and region specific technology supply shares +for ammonia. Sourced from publication ------------------------ -van der Meide, M., Harpprecht, C., Northey, S., Yang, Y., & Steubing, B. (2022). Effects of the energy transition on environmental impacts of cobalt supply: A prospective life cycle assessment study on future supply of cobalt. Journal of Industrial Ecology, 1– 15. https://doi.org/10.1111/jiec.13258 +Boyce, J. C. (2022). Ammonia decarbonisation pathways and their effects +on life cycle assessments: Integrating future ammonia scenarios +into background data for prospective LCAs. Master’s Thesis, +Leiden University and TU Delft. Data validation --------------- -[![goodtables.io](https://goodtables.io//badge/github/premise-community-scenarios/cobalt-perspective-2050.svg)](https://goodtables.io//github/premise-community-scenarios/cobalt-perspective-2050) +[![goodtables.io](https://goodtables.io//badge/github/premise-community-scenarios/ammonia-prospective-scenarios.svg)](https://goodtables.io//github/premise-community-scenarios/ammonia-prospective-scenarios-2050) Test ---- -![example workflow](https://github.com/premise-community-scenarios/cobalt-perspective-2050/actions/workflows/main.yml/badge.svg?branch=main) +![example workflow](https://github.com/premise-community-scenarios/ammonia-prospective-scenarios/actions/workflows/main.yml/badge.svg?branch=main) Ecoinvent database compatibility -------------------------------- @@ -38,34 +43,53 @@ ecoinvent 3.8 cut-off IAM scenario compatibility --------------------------- -The following coupling is done between IAM and the cobalt scenarios: +The following coupling is done between IAM and the ammonia market scenarios (APS): -| IAM scenario | EP2050+ scenario | -|------------------------| ------------------------| -| IMAGE SSP2-Base | Business As Usual | -| IMAGE SSP2-RCP26 | Sustainable development | +| IAM scenario | APS scenario | +|------------------|-------------------------| +| IMAGE SSP2-Base | Business As Usual | +| IMAGE SSP2-RCP26 | Sustainable development | +| IMAGE SSP2-RCP19 | Sustainable development | What does this do? ------------------ -This external scenario update the ecoinvent global market for cobalt, according -to the projections described in van der Meide et al., 2022. +This external scenario update the ecoinvent market for ammonia, according +to the projections described in the Master thesis study of J. Boyce, 2022. -Cobalt -****** +Ammonia +******* + +The following markets are introduced: + +* `market for ammonia, via steam reforming w/ CCS (APS)` +* `market for hydrogen, electrolysis (APS)` +* `market for ammonia (APS)` + +`market for ammonia (APS)` is supplied by six ammonia production pathways: +* MP (Methane Pyrolysis), called `ammonia production, hydrogen from methane pyrolysis`, +* SMR (Steam Methane Reforming), called `ammonia production, steam reforming`, +* SMRC (SMR with CCS), called `market for ammonia, via steam reforming w/ CCS`, +* ELE (electrolysis), called `ammonia production, hydrogen from electrolysis`, +* OIL (Partial oxidation of oil), called `ammonia production, hydrogen from partial oxidation of oil`, +* CG (coal gasification), called `ammonia production, hydrogen from coal gasification`, +* CGC (CG with CCS), called `ammonia production, hydrogen from coal gasification w/ CCS`. + +This market re-links to activities that consume ammonia throughout the database. + +Hydrogen +******** The following market is introduced: -* `market for cobalt (CP2050)` (GLO) +* `market for hydrogen, electrolysis (APS)` -It is supplied by six cobalt production pathways: -* cobalt from cobalt mining -* cobalt as a co-product from copper mining (ore extraction, processing and electrowinning) -* cobalt as a co-product from nickel mining -* cobalt as a co-product from zinc mining -* cobalt recovered from discarded batteries (hydro- and pyro-metallurgical processes) +It is supplied by two hydrogen production pathways: +* AE (alkaline electrolysis), and +* PEM electrolysis -This market is relinked to activities that consume metallic cobalt throughout the database, if any. +This market re-links to ammonia-producing activities +that consume hydrogen throughout the database. Flow diagram @@ -82,8 +106,8 @@ How to use it? from datapackage import Package - fp = r"https://raw.githubusercontent.com/premise-community-scenarios/cobalt-perspective-2050/main/datapackage.json" - cobalt2050 = Package(fp) + fp = r"https://raw.githubusercontent.com/premise-community-scenarios/ammonia-prospective-scenarios/main/datapackage.json" + ammonia = Package(fp) bw.projects.set_current("your_bw_project") @@ -96,7 +120,7 @@ How to use it? source_version="3.8", key='xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx', external_scenarios=[ - cobalt2050, # <-- list datapackages here + ammonia, # <-- list datapackages here ] ) ``` diff --git a/configuration_file/config.yaml b/configuration_file/config.yaml index 1e27685..d044d5c 100644 --- a/configuration_file/config.yaml +++ b/configuration_file/config.yaml @@ -1,215 +1,236 @@ # Configuration file for custom scenarios for `premise` -# Cobalt Perspective Scenario 2050 -# https://onlinelibrary.wiley.com/doi/full/10.1111/jiec.13258 + +# Reference +# Boyce, J. C. (2022). Ammonia decarbonisation pathways and their +# effects on life cycle assessments: Integrating future ammonia scenarios +# into background data for prospective LCAs [Master’s Thesis, +# Leiden University and TU Delft]. + +# We have added new ammonia production routes: MP (Methane Pyrolysis), +# SMR (Steam Methane Reforming), SMRC (SMR with CCS), +# ELE (electrolysis), OIL (Partial oxidation of oil), CG (coal gasification), +# CGC (CG with CCS). +# Two hydrogen technologies: AE (alkaline electrolysis) and PEM electrolysis +# make a mini-market hydrogen, electrolysis. +# These technologies will be made specific to each IAM region, +# unless exceptions are specified. +# Markets for ammonia will be created for each IAM region and +# replace the old markets. --- +# `production pathways` lists the different technologies production pathways: - copper: + # name given to a technology: this name is internal to premise + MP: + # variables to look for in the scenario data file to fetch production volumes + # values fetched from the scenario data file as production volumes are used to calculate + # the supply share if markets are to be built production volume: - variable: Production|Cobalt|From copper mining - + # `variable` in `production volume` refers to the variable name in the scenario data file + variable: Production|Ammonia|Methane Pyrolysis + # dataset in the imported inventories that represents the technology ecoinvent alias: - name: cobalt metal production, from copper mining, via electrolysis, economic allocation - reference product: cobalt - exists in original database: True - - efficiency: - - variable: Efficiency|Copper|Energy - reference year: 2010 - includes: - technosphere: - - electricity - - - variable: Efficiency|Copper|Mining and production - reference year: 2010 - includes: - technosphere: - - blasting - - conveyor belt - - steel, chromium steel 18/8, hot rolled - - mine infrastructure, open cast, non-ferrous metal - - ammonia, anhydrous, liquid - biosphere: - - Transformation, to mineral extraction site - - Occupation, mineral extraction site - - - variable: Efficiency|Copper|Diesel - reference year: 2010 - includes: - technosphere: - - diesel, burned + # name of the original dataset + name: ammonia production, hydrogen from methane pyrolysis + # reference product of the original dataset + reference product: ammonia, anhydrous, liquid + # indicate whether the dataset exists in the original database + # or if it should be sourced from the inventories folder + exists in original database: False + # indicate whether a region-specific version of the dataset should be created + regionalize: True - - variable: Efficiency|Copper|Tailings - reference year: 2010 - includes: - technosphere: - - sulfidic tailings - - nickel_sulphide: + SMR: production volume: - variable: Production|Cobalt|From nickel sulphide mining + variable: Production|Ammonia|Steam Reforming ecoinvent alias: - name: nickel mine operation, sulfidic ore - reference product: cobalt + name: ammonia production, steam reforming + reference product: ammonia, anhydrous, liquid exists in original database: False - - efficiency: - - variable: Efficiency|Nickel sulphide|Energy - reference year: 2010 - includes: - technosphere: - - electricity - - - variable: Efficiency|Nickel sulphide|Mining and production - reference year: 2010 - includes: - technosphere: - - blasting - - conveyor belt - - mine infrastructure, open cast, non-ferrous metal - - ammonia, anhydrous, liquid - - sand - - - variable: Efficiency|Nickel sulphide|Diesel - reference year: 2010 - includes: - technosphere: - - diesel, burned - - - variable: Efficiency|Nickel sulphide|Tailings - reference year: 2010 - includes: - technosphere: - - sulfidic tailings - - nickel_laterite 1: + regionalize: True + replaces: + - name: ammonia production, steam reforming, liquid + reference product: ammonia, anhydrous, liquid + + # the co-product CO2 (with 0% allocation) is created to + # remain consistent with ecoinvent's treatment of CO2 from SMR + # it has been given blank scenarios per region in the + # scenario data file to prevent an error. + SMRCO2: production volume: - variable: Production|Cobalt|From nickel laterite mining - + variable: Production|AmmoniaCO2|Steam Reforming ecoinvent alias: - name: cobalt production from sulphide matte - reference product: cobalt + name: CO2 from ammonia production, steam reforming + reference product: carbon dioxide, in chemical industry exists in original database: False + regionalize: True + replaces: + - name: ammonia production, steam reforming, liquid + reference product: carbon dioxide, in chemical industry - efficiency: - - variable: Efficiency|Nickel laterite|Mining and production - reference year: 2010 - includes: - technosphere: - - ammonia, anhydrous, liquid + SMR_w_syngas_CCS: + production volume: + variable: Production|Ammonia|Steam Reforming w/ syngas w/ CCS + ecoinvent alias: + name: ammonia production, steam reforming w/ syngas CCS + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True - nickel_laterite 2: + SMR_w_syngas_and_fluegas_CCS: production volume: - variable: Production|Cobalt|From nickel laterite mining + variable: Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS + ecoinvent alias: + name: ammonia production, steam reforming w/ syngas and flue gas CCS + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True + SMR_w_CCS: + production volume: + variable: Production|Ammonia|Steam Reforming w/ CCS ecoinvent alias: - name: ferronickel production - reference product: sulphide matte + name: market for ammonia, via steam reforming w/ CCS (APS) + reference product: ammonia, anhydrous, liquid exists in original database: False + regionalize: False + new dataset: True + #adding PEM and AE separately to make a sub-market + # and allow for efficiency improvements to the + # electrolysis processes + AE: + production volume: + variable: Production|Hydrogen|Alkaline Electrolysis + ecoinvent alias: + name: hydrogen production, alkaline electrolysis + reference product: hydrogen, alkaline electrolysis + exists in original database: False + regionalize: True efficiency: - - variable: Efficiency|Nickel laterite|Energy - reference year: 2010 + - variable: Efficiency|Hydrogen|Alkaline Electrolysis (electricity) + reference year: 2020 includes: + # efficiency gains will only apply to flows whose name + # contains `electricity` technosphere: - electricity - - variable: Efficiency|Nickel laterite|Heat 1 - reference year: 2010 - includes: - technosphere: - - heat, district or industrial, natural gas - - - variable: Efficiency|Nickel laterite|Heat 2 - reference year: 2010 - includes: - technosphere: - - heat, district or industrial, other than natural gas - - - variable: Efficiency|Nickel laterite|Mining and production - reference year: 2010 - includes: - technosphere: - - mine infrastructure - - conveyor belt - - ammonia, anhydrous, liquid - - blasting - biosphere: - - Occupation, mineral extraction site - - Transformation, to mineral extraction site - - - variable: Efficiency|Nickel laterite|Diesel - reference year: 2010 + PEM: + production volume: + variable: Production|Hydrogen|PEM + ecoinvent alias: + name: hydrogen production, gaseous, 25 bar, from electrolysis + reference product: Hydrogen, gaseous, 25 bar + exists in original database: True + regionalize: True + efficiency: + - variable: Efficiency|Hydrogen|PEM (electricity) + reference year: 2020 includes: technosphere: - - diesel, burned + - electricity - - variable: Efficiency|Nickel laterite|Tailings - reference year: 2010 - includes: - technosphere: - - nickel smelter slag + ELE: + production volume: + variable: Production|Ammonia|Electrolysis + ecoinvent alias: + name: ammonia production, hydrogen from electrolysis + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True - cobalt: + OIL: production volume: - variable: Production|Cobalt|From cobalt mining + variable: Production|Ammonia|Oil ecoinvent alias: - name: cobalt production - reference product: cobalt - exists in original database: True + name: ammonia production, partial oxidation of oil + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True - recycling_pyro: + CG: production volume: - variable: Production|Cobalt|From battery recycling (pyro) + variable: Production|Ammonia|Coal Gasification ecoinvent alias: - name: treatment of used Li-ion battery, pyrometallurgical treatment - reference product: cobalt - exists in original database: True + name: ammonia production, hydrogen from coal gasification + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True + replaces: + - name: ammonia production, partial oxidation, liquid + reference product: ammonia, anhydrous, liquid + + # the co-product CO2 (with 0% allocation) is created to remain + # consistent with ecoinvent's treatment of CO2 from ammonia from coal + # it has been given blank scenarios per region in the scenario data + # file to prevent an error - recycling_hydro: + CGCO2: production volume: - variable: Production|Cobalt|From battery recycling (hydro) + variable: Production|HydrogenCO2|Coal Gasification ecoinvent alias: - name: treatment of used Li-ion battery, hydrometallurgical treatment - reference product: cobalt - exists in original database: True + name: CO2 from hydrogen production, coal gasification + reference product: carbon dioxide, in chemical industry + exists in original database: False + regionalize: True + replaces: + - name: ammonia production, partial oxidation, liquid + reference product: carbon dioxide, in chemical industry - zinc: + CGC: production volume: - variable: Production|Cobalt|From zinc mining + variable: Production|Ammonia|Coal Gasification w/ CCS ecoinvent alias: - name: primary zinc production from concentrate - reference product: cobalt - exists in original database: True + name: ammonia production, hydrogen from coal gasification w/ CCS + reference product: ammonia, anhydrous, liquid + exists in original database: False + regionalize: True + +# Creating the markets markets: - - name: market for cobalt (CP2050) - reference product: cobalt + - name: market for ammonia, via steam reforming w/ CCS (APS) + reference product: ammonia, anhydrous, liquid unit: kilogram includes: - - copper - - nickel_sulphide - - nickel_laterite 1 - - cobalt - - recycling_pyro - - recycling_hydro - - zinc + - SMR_w_syngas_CCS + - SMR_w_syngas_and_fluegas_CCS except regions: - World + # sub-market for hydrogen from electrolysis... then this is an input to the ammonia from hydrogen + # from electrolysis activity + # can add other technologies (e.g. SOEC) here in the future + - name: market for hydrogen, electrolysis (APS) + reference product: hydrogen, electrolysis + unit: kilogram + includes: + - AE + - PEM replaces: - - name: market for cobalt - reference product: cobalt - - - - - - - - - + - name: market for hydrogen production, electrolysis + reference product: hydrogen, electrolysis + except regions: + - World - + # name of the market dataset + - name: market for ammonia (APS) + reference product: ammonia, anhydrous, liquid + # unit of the market dataset + unit: kilogram + # names of datasets that should compose the market + includes: + - MP + - SMR + - SMR_w_CCS + - ELE + - OIL + - CG + - CGC + # 'market for ammonia` will replace the existing markets. + replaces: + - name: market for ammonia, anhydrous, liquid + reference product: ammonia, anhydrous, liquid \ No newline at end of file diff --git a/datapackage.json b/datapackage.json index c52a523..728f57e 100644 --- a/datapackage.json +++ b/datapackage.json @@ -1,18 +1,14 @@ { "profile": "data-package", - "name": "cobalt-perspective-2050", - "title": "A prospective scenario on the future supply of cobalt", - "description": "Implementation of the scenarios on future cobalt supply from van der Meide et al., 2022.", - "source":"van der Meide, M., Harpprecht, C., Northey, S., Yang, Y., & Steubing, B. (2022). Effects of the energy transition on environmental impacts of cobalt supply: A prospective life cycle assessment study on future supply of cobalt. Journal of Industrial Ecology, 1– 15. https://doi.org/10.1111/jiec.13258", - "version": "0.0.5", + "name": "ammonia-prospective-scenarios", + "title": "Ammonia decarbonisation pathways and their effects on life cycle assessments: Integrating future ammonia scenarios into background data for prospective LCAs", + "description": "Implementation of the scenarios on future ammonia supply from the Master thesis of J. Boyce, 2022.", + "source":"Boyce, J. C. (2022). Ammonia decarbonisation pathways and their effects on life cycle assessments: Integrating future ammonia scenarios into background data for prospective LCAs [Master’s Thesis, Leiden University and TU Delft].", + "version": "0.0.1", "contributors":[ { - "title": "Marc van der Meide", - "email": "m.t.van.der.meide@cml.leidenuniv.nl" - }, - { - "title": "Romain Sacchi", - "email": "r_s@me.com" + "title": "Johanna C. Boyce", + "email": "j.c.boyce@umail.leidenuniv.nl" } ], "dependencies": { @@ -33,6 +29,10 @@ { "model": "image", "pathway": "SSP2-RCP26" + }, + { + "model": "image", + "pathway": "SSP2-RCP19" } ] }, @@ -81,16 +81,6 @@ "type": "string", "format": "default" }, - { - "name": "2010", - "type": "number", - "format": "default" - }, - { - "name": "2015", - "type": "number", - "format": "default" - }, { "name": "2020", "type": "number", @@ -126,26 +116,6 @@ "type": "number", "format": "default" }, - { - "name": "2060", - "type": "number", - "format": "default" - }, - { - "name": "2070", - "type": "number", - "format": "default" - }, - { - "name": "2080", - "type": "number", - "format": "default" - }, - { - "name": "2090", - "type": "number", - "format": "default" - }, { "name": "2100", "type": "number", @@ -158,7 +128,7 @@ } }, { - "path": "inventories/lci-cobalt_ei38.csv", + "path": "inventories/lci-ammonia.csv", "profile": "data-resource", "name": "inventories", "format": "csv", diff --git a/inventories/lci-cobalt_ei38.csv b/inventories/lci-cobalt_ei38.csv deleted file mode 100644 index adff811..0000000 --- a/inventories/lci-cobalt_ei38.csv +++ /dev/null @@ -1,183 +0,0 @@ -Database,cobalt_processes_ei38,,,,,,,,, -,,,,,,,,,, -Activity,"nickel mine operation, sulfidic ore",,,,,,,,, -comment,"Cobalt production from nickel sulphide, originally created for ecoinvent cutoff v3.6 based on process 'nickel mine operation, sulfidic ore'. For more information, see https://onlinelibrary.wiley.com/doi/full/10.1111/jiec.13258",,,,,,,,, -location,GLO,,,,,,,,, -reference product,cobalt,,,,,,,,, -unit,kilogram,,,,,,,,, -Exchanges,,,,,,,,,, -name,amount,database,location,unit,categories,type,uncertainty type,loc,production volume,reference product -Aluminium,1.52E-05,biosphere3,,kilogram,water::surface water,biosphere,0,1.06E-06,, -Aluminium,0.001616068,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.000113111,, -Arsenic,4.66E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,3.26E-07,, -"Arsenic, ion",7.09E-07,biosphere3,,kilogram,water::surface water,biosphere,0,4.96E-08,, -"BOD5, Biological Oxygen Demand",0.001840078,biosphere3,,kilogram,water::surface water,biosphere,0,0.00012879,, -"COD, Chemical Oxygen Demand",8.32E-08,biosphere3,,kilogram,water::surface water,biosphere,0,0.00012879,, -"Cadmium, ion",0.001136048,biosphere3,,kilogram,water::surface water,biosphere,0,5.82E-09,, -Calcium,0.120485079,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,7.95E-05,, -"Calcium, ion",0.793633455,biosphere3,,kilogram,water::surface water,biosphere,0,0.008432931,, -"Carbon dioxide, fossil",0.008800371,biosphere3,,kilogram,air,biosphere,0,0.055547594,, -Carbon disulfide,3.86E-07,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.000615951,, -"Chromium, ion",1.38E-07,biosphere3,,kilogram,water::surface water,biosphere,0,2.70E-08,, -Cobalt,0.000976041,biosphere3,,kilogram,water::surface water,biosphere,0,9.63E-09,, -Cobalt,0.001840078,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.83E-05,, -Copper,0.000356015,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,2.49E-05,, -"Copper, in ground",0.518421854,biosphere3,,kilogram,natural resource::in ground,biosphere,0,0.036285122,, -"Copper, ion",1.93E-06,biosphere3,,kilogram,water::surface water,biosphere,0,1.35E-07,, -Cyanide,0.000329614,biosphere3,,kilogram,water::surface water,biosphere,0,2.31E-05,, -"DOC, Dissolved Organic Carbon",8.00E-12,biosphere3,,kilogram,water::surface water,biosphere,0,5.02E-05,, -"Dioxins, measured as 2,3,7,8-tetrachlorodibenzo-p-dioxin",0.000912038,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,5.60E-13,, -Dissolved solids,0.00071763,biosphere3,,kilogram,water::surface water,biosphere,0,6.38E-05,, -"Iron, ion",5.12E-05,biosphere3,,kilogram,water::surface water,biosphere,0,3.58E-06,, -Lead,2.82E-05,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.97E-06,, -Lead,6.54E-07,biosphere3,,kilogram,water::surface water,biosphere,0,4.58E-08,, -Magnesium,0.000968041,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.78E-05,, -Manganese,4.34E-06,biosphere3,,kilogram,water::surface water,biosphere,0,3.04E-07,, -Mercury,9.52E-09,biosphere3,,kilogram,water::surface water,biosphere,0,6.66E-10,, -"NMVOC, non-methane volatile organic compounds, unspecified origin",0.000423218,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.12E-05,, -Nickel,1.008042493,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,2.96E-05,, -"Nickel, in ground",4.50E-06,biosphere3,,kilogram,natural resource::in ground,biosphere,0,0.070554404,, -"Nickel, ion",0.004008169,biosphere3,,kilogram,water::surface water,biosphere,0,3.15E-07,, -"Nitrogen, organic bound",0.000160007,biosphere3,,kilogram,water::surface water,biosphere,0,0.000280538,, -"Particulates, < 2.5 um",0.016480695,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.001153509,, -"Particulates, > 10 um",0.00167207,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.000117031,, -"Particulates, > 2.5 um, and < 10um",0.014560614,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.001019119,, -Silver,1.39E-07,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,9.74E-09,, -Sulfate,0.415217503,biosphere3,,kilogram,water::surface water,biosphere,0,0.029061695,, -Sulfur dioxide,1.200050587,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.083993338,, -"TOC, Total Organic Carbon",5.22E-06,biosphere3,,kilogram,water::surface water,biosphere,0,5.02E-05,, -Tin,2.89E-07,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,3.66E-07,, -"Tin, ion",0.00071763,biosphere3,,kilogram,water::surface water,biosphere,0,2.02E-08,, -Water,0.175583402,biosphere3,,cubic meter,water,biosphere,0,0.012289345,, -Water,0.030985306,biosphere3,,cubic meter,air,biosphere,0,0.002168708,, -"Water, river",0.030561288,biosphere3,,cubic meter,natural resource::in water,biosphere,0,0.00213903,, -"Water, well, in ground",0.176007419,biosphere3,,cubic meter,natural resource::in water,biosphere,0,0.012319023,, -Zinc,8.08E-05,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,5.66E-06,, -"Zinc, ion",1.42E-05,biosphere3,,kilogram,water::surface water,biosphere,0,9.97E-07,, -"nickel mine operation, sulfidic ore",1,cobalt_processes_ei38,GLO,kilogram,,production,0,1,,cobalt -"electricity production, hydro, run-of-river",2.824018806,ei38,RoW,kilowatt hour,,technosphere,0,0.491641004,,"electricity, high voltage" -market for aluminium hydroxide factory,3.13E-09,ei38,GLO,unit,,technosphere,0,5.17E-11,,aluminium hydroxide factory -"market for ammonia, anhydrous, liquid",0.001307639,ei38,RER,kilogram,,technosphere,0,0.000480436,,"ammonia, anhydrous, liquid" -"market for ammonia, anhydrous, liquid",0.011448866,ei38,RoW,kilogram,,technosphere,0,0.004206393,,"ammonia, anhydrous, liquid" -market for blasting,0.025299641,ei38,GLO,kilogram,,technosphere,0,0.009295263,,blasting -"market for cement, alternative constituents 21-35%",0.762067652,ei38,Europe without Switzerland,kilogram,,technosphere,0,0.053338256,,"cement, alternative constituents 21-35%" -"market for cement, alternative constituents 21-35%",0.140232272,ei38,CO,kilogram,,technosphere,0,0.009815067,,"cement, alternative constituents 21-35%" -"market for cement, alternative constituents 21-35%",0.005794273,ei38,CH,kilogram,,technosphere,0,0.00040555,,"cement, alternative constituents 21-35%" -"market for cement, alternative constituents 21-35%",1.988027886,ei38,RoW,kilogram,,technosphere,0,0.139145049,,"cement, alternative constituents 21-35%" -"market for chemical, organic",0.287068644,ei38,GLO,kilogram,,technosphere,0,0.00138869,,"chemical, organic" -"market for chemical, inorganic",0.084053157,ei38,GLO,kilogram,,technosphere,0,0.004742824,,"chemical, inorganic" -market for conveyor belt,6.40E-07,ei38,GLO,meter,,technosphere,0,2.35E-07,,conveyor belt -"market for diesel, burned in building machine",0.668707253,ei38,GLO,megajoule,,technosphere,0,0.627150256,,"diesel, burned in building machine" -market for hydrogen cyanide,0.00407768,ei38,RER,kilogram,,technosphere,0,6.74E-05,,hydrogen cyanide -market for hydrogen cyanide,0.008970895,ei38,RoW,kilogram,,technosphere,0,0.000148213,,hydrogen cyanide -"market for hydrogen, liquid",0.002772111,ei38,RER,kilogram,,technosphere,0,4.58E-05,,"hydrogen, liquid" -"market for hydrogen, liquid",0.012682824,ei38,RoW,kilogram,,technosphere,0,0.00020954,,"hydrogen, liquid" -"market for lime, packed",2.521027994,ei38,Europe without Switzerland,kilogram,,technosphere,0,0.041651333,,"lime, packed" -"market for lime, packed",0.064185405,ei38,CH,kilogram,,technosphere,0,0.001060443,,"lime, packed" -"market for lime, packed",5.04057703,ei38,RoW,kilogram,,technosphere,0,0.083278231,,"lime, packed" -"market for mine infrastructure, underground, non-ferrous metal",8.38E-10,ei38,GLO,unit,,technosphere,0,3.08E-10,,"mine infrastructure, underground, non-ferrous metal" -market for nickel smelter slag,-1.732566064,ei38,GLO,kilogram,,technosphere,0,-0.615951144,,nickel smelter slag -market for non-ferrous metal smelter,1.56E-10,ei38,GLO,unit,,technosphere,0,2.58E-12,,non-ferrous metal smelter -market for sand,0.000545898,ei38,IN,kilogram,,technosphere,0,0.000200567,,sand -market for sand,0.105151524,ei38,BR,kilogram,,technosphere,0,0.038633396,,sand -market for sand,0.001259004,ei38,CH,kilogram,,technosphere,0,0.000462567,,sand -market for sand,6.842824377,ei38,RoW,kilogram,,technosphere,0,2.514100941,,sand -market for silica sand,1.760074194,ei38,GLO,kilogram,,technosphere,0,0.123190229,,silica sand -"market for sulfidic tailings, from nickel mine operation",-1.400966794,ei38,ZA,kilogram,,technosphere,0,-0.498063028,,"sulfidic tailings, from nickel mine operation" -"market for sulfidic tailings, from nickel mine operation",-5.800180996,ei38,CA,kilogram,,technosphere,0,-2.062044383,,"sulfidic tailings, from nickel mine operation" -"market for sulfidic tailings, from nickel mine operation",-6.662772016,ei38,RU,kilogram,,technosphere,0,-2.368707393,,"sulfidic tailings, from nickel mine operation" -"market for sulfidic tailings, from nickel mine operation",-1.870930178,ei38,RoW,kilogram,,technosphere,0,-0.665141496,,"sulfidic tailings, from nickel mine operation" -"market group for electricity, high voltage",1.321949578,ei38,GLO,kilowatt hour,,technosphere,0,0.230141746,,"electricity, high voltage" -"market group for electricity, medium voltage",0.559657485,ei38,GLO,kilowatt hour,,technosphere,0,0.097432272,,"electricity, medium voltage" -"market group for heat, district or industrial, natural gas",2.077847231,ei38,GLO,megajoule,,technosphere,0,0.819215022,,"heat, district or industrial, natural gas" -"market group for heat, district or industrial, other than natural gas",4.076869772,ei38,GLO,megajoule,,technosphere,0,1.607352508,,"heat, district or industrial, other than natural gas" -,,,,,,,,,, -Activity,cobalt production from sulphide matte,,,,,,,,, -comment,"Cobalt production from nickel laterite, originally created for ecoinvent cutoff v3.6. For more information, see https://onlinelibrary.wiley.com/doi/full/10.1111/jiec.13258",,,,,,,,, -location,GLO,,,,,,,,, -reference product,cobalt,,,,,,,,, -unit,kilogram,,,,,,,,, -Exchanges,,,,,,,,,, -name,amount,database,location,unit,type,uncertainty type,loc,production volume,reference product, -cobalt production from sulphide matte,1,cobalt_processes_ei38,GLO,kilogram,production,0,1,,cobalt, -"electricity production, hydro, run-of-river",2.265818182,ei38,RoW,kilowatt hour,technosphere,0,1.9146,,"electricity, high voltage", -ferronickel production,1.414736842,cobalt_processes_ei38,GLO,kilogram,technosphere,0,1.068661501,,sulphide matte, -market for aluminium hydroxide factory,3.14E-09,ei38,GLO,unit,technosphere,0,8.50E-10,,aluminium hydroxide factory, -"market for ammonia, anhydrous, liquid",0.011115046,ei38,RoW,kilogram,technosphere,0,0.069095011,,"ammonia, anhydrous, liquid", -"market for ammonia, anhydrous, liquid",0.001269512,ei38,RER,kilogram,technosphere,,,,"ammonia, anhydrous, liquid", -"market for chemical, organic",0.287523248,ei38,GLO,kilogram,technosphere,0,0.022810886,,"chemical, organic", -"market for chemical, inorganic",0.084186264,ei38,GLO,kilogram,technosphere,0,0.077906535,,"chemical, inorganic", -market for hydrogen cyanide,0.004084137,ei38,RER,kilogram,technosphere,0,0.001106627,,hydrogen cyanide, -market for hydrogen cyanide,0.008985101,ei38,RoW,kilogram,technosphere,0,0.002434579,,hydrogen cyanide, -"market for hydrogen, liquid",0.002776501,ei38,RER,kilogram,technosphere,0,0.000752313,,"hydrogen, liquid", -"market for hydrogen, liquid",0.012702909,ei38,RoW,kilogram,technosphere,0,0.003441946,,"hydrogen, liquid", -"market group for electricity, high voltage",1.510545455,ei38,GLO,kilowatt hour,technosphere,0,1.2764,,"electricity, high voltage", -,,,,,,,,,, -Activity,ferronickel production,,,,,,,,, -comment,"Cobalt production from nickel laterite, originally created for ecoinvent cutoff v3.6 based on process 'ferronickel production, 25% Ni'. For more information, see https://onlinelibrary.wiley.com/doi/full/10.1111/jiec.13258",,,,,,,,, -location,GLO,,,,,,,,, -reference product,sulphide matte,,,,,,,,, -unit,kilogram,,,,,,,,, -Exchanges,,,,,,,,,, -name,amount,database,location,unit,categories,type,uncertainty type,loc,production volume,reference product -Aluminium,8.19E-08,biosphere3,,kilogram,water::surface water,biosphere,0,4.20E-08,, -Antimony,2.40E-10,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.23E-10,, -Arsenic,1.70E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,8.74E-07,, -"Arsenic, ion",1.81E-08,biosphere3,,kilogram,water::surface water,biosphere,0,9.29E-09,, -"BOD5, Biological Oxygen Demand",3.11E-09,biosphere3,,kilogram,water::surface water,biosphere,0,5.08E-06,, -Beryllium,9.88E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.60E-09,, -Boron,1.20E-08,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.15E-09,, -"COD, Chemical Oxygen Demand",1.32E-10,biosphere3,,kilogram,water::surface water,biosphere,0,5.08E-06,, -Cadmium,2.53E-09,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.77E-11,, -"Cadmium, ion",0.000650447,biosphere3,,kilogram,water::surface water,biosphere,0,1.30E-09,, -"Calcium, ion",0.024469688,biosphere3,,kilogram,water::surface water,biosphere,0,0.000334137,, -"Carbon dioxide, fossil",1.20E-07,biosphere3,,kilogram,air,biosphere,0,0.012570168,, -Chromium,2.39E-08,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.15E-08,, -"Chromium, ion",7.41E-10,biosphere3,,kilogram,water::surface water,biosphere,0,1.23E-08,, -Cobalt,3.58E-06,biosphere3,,kilogram,water::surface water,biosphere,0,3.81E-10,, -Cobalt,9.88E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.84E-06,, -Copper,1.17E-05,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.01E-06,, -"Copper, ion",5.06E-08,biosphere3,,kilogram,water::surface water,biosphere,0,2.60E-08,, -"DOC, Dissolved Organic Carbon",1.19E-12,biosphere3,,kilogram,water::surface water,biosphere,0,1.98E-06,, -"Dioxins, measured as 2,3,7,8-tetrachlorodibenzo-p-dioxin",4.90E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,6.09E-13,, -Dissolved solids,3.86E-06,biosphere3,,kilogram,water::surface water,biosphere,0,2.52E-06,, -Fluorine,1.14E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,5.85E-07,, -"Iron, in ground",0.148393573,biosphere3,,kilogram,natural resource::in ground,biosphere,0,0.076230322,, -"Iron, ion",2.76E-07,biosphere3,,kilogram,water::surface water,biosphere,0,1.42E-07,, -Lead,9.10E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,4.67E-06,, -Lead,1.57E-08,biosphere3,,kilogram,water::surface water,biosphere,0,8.08E-09,, -Manganese,2.34E-08,biosphere3,,kilogram,water::surface water,biosphere,0,1.20E-08,, -Manganese,1.14E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,5.85E-07,, -Mercury,2.69E-10,biosphere3,,kilogram,water::surface water,biosphere,0,1.38E-10,, -Mercury,5.99E-11,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,3.08E-11,, -Nickel,3.77E-06,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.94E-06,, -"Nickel, in ground",0.051525546,biosphere3,,kilogram,natural resource::in ground,biosphere,0,0.026468862,, -"Nickel, ion",4.05E-08,biosphere3,,kilogram,water::surface water,biosphere,0,2.08E-08,, -"Nitrogen, organic bound",2.16E-05,biosphere3,,kilogram,water::surface water,biosphere,0,1.11E-05,, -"Occupation, mineral extraction site",0.000197264,biosphere3,,square meter-year,natural resource::land,biosphere,0,0.000100334,, -"Particulates, < 2.5 um",0.000609254,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.000312976,, -"Particulates, > 10 um",8.85E-05,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,4.55E-05,, -"Particulates, > 2.5 um, and < 10um",0.000618699,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,0.000317828,, -Selenium,5.99E-11,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,3.08E-11,, -Sulfate,0.00223472,biosphere3,,kilogram,water::surface water,biosphere,0,0.001147984,, -"TOC, Total Organic Carbon",1.90E-06,biosphere3,,kilogram,water::surface water,biosphere,0,1.98E-06,, -Tin,2.34E-08,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,9.77E-07,, -"Tin, ion",3.86E-06,biosphere3,,kilogram,water::surface water,biosphere,0,1.20E-08,, -"Transformation, from unspecified",6.51E-06,biosphere3,,square meter,natural resource::land,biosphere,0,3.34E-06,, -"Transformation, to mineral extraction site",6.58E-06,biosphere3,,square meter,natural resource::land,biosphere,0,3.34E-06,, -Zinc,2.97E-05,biosphere3,,kilogram,air::non-urban air or from high stacks,biosphere,0,1.52E-05,, -"Zinc, ion",1.41E-07,biosphere3,,kilogram,water::surface water,biosphere,0,7.25E-08,, -ferronickel production,1,cobalt_processes_ei38,GLO,kilogram,,production,0,1,,sulphide matte -"electricity production, hydro, run-of-river",0.681316256,ei38,RoW,kilowatt hour,,technosphere,0,0.339056063,,"electricity, high voltage" -market for blasting,0.00014363,ei38,GLO,kilogram,,technosphere,0,7.31E-05,,blasting -market for conveyor belt,9.58E-08,ei38,GLO,meter,,technosphere,0,4.87E-08,,conveyor belt -"market for diesel, burned in building machine",0.192367999,ei38,GLO,megajoule,,technosphere,0,0.116168129,,"diesel, burned in building machine" -"market for lime, packed",0.017089821,ei38,Europe without Switzerland,kilogram,,technosphere,0,0.009444695,,"lime, packed" -"market for lime, packed",0.000435107,ei38,CH,kilogram,,technosphere,0,0.000240462,,"lime, packed" -"market for lime, packed",0.034169616,ei38,RoW,kilogram,,technosphere,0,0.01888385,,"lime, packed" -"market for mine infrastructure, open cast, non-ferrous metal",2.39E-10,ei38,GLO,unit,,technosphere,0,1.22E-10,,"mine infrastructure, open cast, non-ferrous metal" -market for nickel smelter slag,-1.548418904,ei38,GLO,kilogram,,technosphere,0,-0.771633497,,nickel smelter slag -market for non-ferrous metal smelter,7.14E-12,ei38,GLO,unit,,technosphere,0,3.95E-12,,non-ferrous metal smelter -"market group for electricity, high voltage",0.45420676,ei38,GLO,kilowatt hour,,technosphere,0,0.226035346,,"electricity, high voltage" -"market group for heat, district or industrial, natural gas",3.374712104,ei38,GLO,megajoule,,technosphere,0,1.720575282,,"heat, district or industrial, natural gas" -"market group for heat, district or industrial, other than natural gas",4.226125876,ei38,GLO,megajoule,,technosphere,0,2.165036176,,"heat, district or industrial, other than natural gas" \ No newline at end of file diff --git a/scenario_data/scenario_data.csv b/scenario_data/scenario_data.csv index 14f799d..1452a8e 100644 --- a/scenario_data/scenario_data.csv +++ b/scenario_data/scenario_data.csv @@ -1,43 +1,1171 @@ -model,pathway,scenario,region,variables,unit,2010,2015,2020,2025,2030,2035,2040,2045,2050,2060,2070,2080,2090,2100 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Copper|Energy,%,1,0.971,0.944,0.918,0.892,0.867,0.841,0.816,0.791,0.791,0.791,0.791,0.791,0.791 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Copper|Mining and production,%,1,0.944,0.894,0.849,0.806,0.765,0.727,0.69,0.655,0.655,0.655,0.655,0.655,0.655 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Copper|Diesel,%,1,0.951,0.908,0.87,0.835,0.802,0.771,0.742,0.714,0.714,0.714,0.714,0.714,0.714 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Copper|Tailings,%,1,0.941,0.895,0.859,0.828,0.801,0.777,0.757,0.738,0.738,0.738,0.738,0.738,0.738 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel sulphide|Energy,%,1,0.994,0.987,0.979,0.97,0.96,0.948,0.934,0.918,0.918,0.918,0.918,0.918,0.918 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel sulphide|Mining and production,%,1,0.967,0.932,0.896,0.858,0.817,0.773,0.726,0.676,0.676,0.676,0.676,0.676,0.676 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel sulphide|Diesel,%,1,0.977,0.956,0.936,0.916,0.896,0.877,0.857,0.838,0.838,0.838,0.838,0.838,0.838 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel sulphide|Tailings,%,1,0.946,0.902,0.864,0.83,0.8,0.772,0.747,0.723,0.723,0.723,0.723,0.723,0.723 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Energy,%,1,0.989,0.977,0.965,0.952,0.937,0.922,0.905,0.886,0.886,0.886,0.886,0.886,0.886 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Heat 1,%,1,0.961,0.923,0.885,0.847,0.807,0.767,0.726,0.684,0.684,0.684,0.684,0.684,0.684 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Heat 2,%,1,0.963,0.927,0.891,0.855,0.817,0.779,0.739,0.698,0.698,0.698,0.698,0.698,0.698 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Mining and production,%,1,0.96,0.92,0.882,0.843,0.803,0.762,0.72,0.678,0.678,0.678,0.678,0.678,0.678 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Diesel,%,1,0.954,0.912,0.872,0.833,0.795,0.757,0.72,0.684,0.684,0.684,0.684,0.684,0.684 -image,SSP2-Base,Business As Usual,GLO,Efficiency|Nickel laterite|Tailings,%,1,0.946,0.902,0.864,0.83,0.8,0.772,0.747,0.723,0.723,0.723,0.723,0.723,0.723 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From copper mining,%,0.281,0.592,0.641,0.508,0.386,0.348,0.379,0.395,0.383,0.383,0.383,0.383,0.383,0.383 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From nickel sulphide mining,%,0.057,0.07,0.064,0.051,0.041,0.036,0.038,0.039,0.037,0.037,0.037,0.037,0.037,0.037 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From nickel laterite mining,%,0.191,0.182,0.149,0.116,0.096,0.085,0.086,0.088,0.084,0.084,0.084,0.084,0.084,0.084 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From battery recycling (pyro),%,0.22,0.063,0.058,0.148,0.224,0.25,0.234,0.224,0.233,0.233,0.233,0.233,0.233,0.233 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From battery recycling (hydro),%,0.22,0.063,0.058,0.148,0.224,0.25,0.234,0.224,0.233,0.233,0.233,0.233,0.233,0.233 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From cobalt mining,%,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015 -image,SSP2-Base,Business As Usual,GLO,Production|Cobalt|From zinc mining,%,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Copper|Energy,%,1,0.97,0.939,0.908,0.876,0.845,0.815,0.784,0.754,0.754,0.754,0.754,0.754,0.754 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Copper|Mining and production,%,1,0.942,0.886,0.831,0.78,0.732,0.688,0.646,0.606,0.606,0.606,0.606,0.606,0.606 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Copper|Diesel,%,1,0.949,0.901,0.856,0.814,0.776,0.74,0.707,0.676,0.676,0.676,0.676,0.676,0.676 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Copper|Tailings,%,1,0.939,0.888,0.846,0.81,0.781,0.756,0.734,0.714,0.714,0.714,0.714,0.714,0.714 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel sulphide|Energy,%,1,0.993,0.985,0.975,0.964,0.95,0.934,0.914,0.891,0.891,0.891,0.891,0.891,0.891 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel sulphide|Mining and production,%,1,0.965,0.925,0.88,0.832,0.779,0.724,0.665,0.603,0.603,0.603,0.603,0.603,0.603 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel sulphide|Diesel,%,1,0.976,0.952,0.927,0.903,0.88,0.856,0.834,0.811,0.811,0.811,0.811,0.811,0.811 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel sulphide|Tailings,%,1,0.944,0.894,0.849,0.81,0.776,0.746,0.718,0.694,0.694,0.694,0.694,0.694,0.694 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Energy,%,1,0.988,0.975,0.959,0.943,0.924,0.904,0.881,0.856,0.856,0.856,0.856,0.856,0.856 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Heat 1,%,1,0.959,0.915,0.869,0.822,0.773,0.725,0.675,0.624,0.624,0.624,0.624,0.624,0.624 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Heat 2,%,1,0.961,0.92,0.876,0.831,0.784,0.737,0.689,0.639,0.639,0.639,0.639,0.639,0.639 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Mining and production,%,1,0.958,0.913,0.865,0.817,0.768,0.718,0.668,0.617,0.617,0.617,0.617,0.617,0.617 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Diesel,%,1,0.952,0.904,0.855,0.808,0.763,0.719,0.675,0.633,0.633,0.633,0.633,0.633,0.633 -image,SSP2-RCP26,Sustainable development,GLO,Efficiency|Nickel laterite|Tailings,%,1,0.944,0.894,0.849,0.81,0.776,0.746,0.718,0.694,0.694,0.694,0.694,0.694,0.694 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From copper mining,%,0.282,0.613,0.689,0.565,0.463,0.411,0.412,0.445,0.475,0.475,0.475,0.475,0.475,0.475 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From nickel sulphide mining,%,0.055,0.066,0.057,0.047,0.039,0.037,0.035,0.038,0.04,0.04,0.04,0.04,0.04,0.04 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From nickel laterite mining,%,0.186,0.165,0.118,0.093,0.079,0.076,0.071,0.074,0.078,0.078,0.078,0.078,0.078,0.078 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From battery recycling (pyro),%,0.223,0.063,0.053,0.132,0.194,0.223,0.226,0.207,0.189,0.189,0.189,0.189,0.189,0.189 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From battery recycling (hydro),%,0.223,0.063,0.053,0.132,0.194,0.223,0.226,0.207,0.189,0.189,0.189,0.189,0.189,0.189 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From cobalt mining,%,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015 -image,SSP2-RCP26,Sustainable development,GLO,Production|Cobalt|From zinc mining,%,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015,0.015 \ No newline at end of file +model,pathway,scenario,region,variables,unit,2020,2025,2030,2035,2040,2045,2050,2100 +image,SSP2-RCP19,Sustainable development,CHN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,INDIA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,USA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,MEX,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,TUR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,UKR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,WEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RUS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,STAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,ME,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,EAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,NAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,SAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,WAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,BRA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RCAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,INDO,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,JAP,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,KOR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,OCE,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,SEAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CHN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,INDIA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,USA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,MEX,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,TUR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,UKR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,WEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RUS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,STAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,ME,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,EAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,NAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,SAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,WAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,BRA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RCAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,INDO,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,JAP,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,KOR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,OCE,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,SEAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CHN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,INDIA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,USA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,MEX,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,TUR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,UKR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,WEU,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RUS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,STAN,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,ME,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,EAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,NAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,SAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,WAF,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,BRA,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RCAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAM,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,INDO,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,JAP,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,KOR,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,OCE,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,SEAS,Efficiency|Hydrogen|Alkaline Electrolysis (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CHN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,INDIA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,USA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,MEX,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,TUR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,UKR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,WEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RUS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,STAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,ME,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,EAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,NAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,SAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,WAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,BRA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RCAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,INDO,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,JAP,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,KOR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,OCE,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,RSAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,SEAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CHN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,INDIA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,USA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,MEX,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,CEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,TUR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,UKR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,WEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RUS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,STAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,ME,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,EAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,NAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,SAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,WAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,BRA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RCAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,INDO,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,JAP,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,KOR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,OCE,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,RSAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP26,Sustainable development,SEAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CHN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,INDIA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,USA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,MEX,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,CEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,TUR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,UKR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,WEU,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RUS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,STAN,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,ME,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,EAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,NAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,SAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,WAF,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,BRA,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RCAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAM,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,INDO,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,JAP,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,KOR,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,OCE,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,RSAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-Base,Business As Usual,SEAS,Efficiency|Hydrogen|PEM (electricity),%,66,67.5,69,71,73,74.5,76,76 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Coal Gasification,Mt,46.1,44.2,38.1,31.5,25.3,19.3,14,14 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Coal Gasification,Mt,0.2,0.1,0.1,0.1,0.1,0,0,0 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Coal Gasification,Mt,0.7,0.6,0.4,0.3,0.2,0.1,0,0 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Coal Gasification,Mt,0.2,0.2,0.2,0.2,0.1,0.1,0,0 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Coal Gasification,Mt,46.1,50.1,54.1,56.9,59.6,61.4,63.1,63.1 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Coal Gasification,Mt,0.2,0.2,0.2,0.2,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Coal Gasification,Mt,0.7,0.7,0.7,0.6,0.6,0.5,0.5,0.5 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Coal Gasification,Mt,0.2,0.2,0.2,0.2,0.2,0.2,0.2,0.2 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0,0,0 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Coal Gasification,Mt,46.1,50.5,54.8,59.1,63.4,67.8,72.1,72.1 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Coal Gasification,Mt,0.2,0.2,0.2,0.2,0.2,0.2,0.3,0.3 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Coal Gasification,Mt,0.7,0.7,0.8,0.9,0.9,1,1,1 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Coal Gasification,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Coal Gasification,Mt,0.2,0.2,0.2,0.3,0.3,0.3,0.3,0.3 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Coal Gasification,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0.7,1.3,1.8,2.2,2.5,2.6,2.6 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Coal Gasification w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Electrolysis,Mt,0,4,7.7,10.8,13.4,15,15.9,15.9 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Electrolysis,Mt,0,1.4,3.2,5.5,8.3,11.4,15.1,15.1 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Electrolysis,Mt,0,0,0,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.2,0.3,0.4,0.5,0.5 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0.1,0.1 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Electrolysis,Mt,0,0.8,1.5,2.3,3.1,3.9,4.6,4.6 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Electrolysis,Mt,0,0,0.1,0.1,0.2,0.2,0.3,0.3 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Electrolysis,Mt,0,0.3,0.6,0.9,1.3,1.6,1.9,1.9 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Electrolysis,Mt,0,1.2,2.4,3.6,4.7,5.9,7.1,7.1 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Electrolysis,Mt,0,0.8,1.5,2.3,3.1,3.9,4.6,4.6 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.4,0.5,0.6,0.7,0.7 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.4,0.5,0.7,1,1 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.7,0.7 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.7,0.7 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.7,0.7 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.7,0.7 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.7,0.7 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Electrolysis,Mt,0,0.1,0.3,0.5,0.7,1,1.3,1.3 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Electrolysis,Mt,0,0.1,0.3,0.5,0.7,1,1.3,1.3 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Electrolysis,Mt,0,0.1,0.3,0.5,0.7,1,1.3,1.3 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Electrolysis,Mt,0,0.3,0.6,1,1.6,2.1,2.8,2.8 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.3,0.4,0.5,0.5,0.5 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development,CEU,Production|Ammonia|Electrolysis,Mt,0,0,0.1,0.2,0.2,0.3,0.4,0.4 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Electrolysis,Mt,0,0,0,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Electrolysis,Mt,0,0.1,0.2,0.2,0.3,0.4,0.6,0.6 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Electrolysis,Mt,0,0,0,0,0,0,0,0 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+image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Oil,Mt,0.5,0.5,0.4,0.3,0.2,0.1,0,0 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Oil,Mt,0.6,0.6,0.6,0.6,0.6,0.6,0.6,0.6 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Oil,Mt,0.3,0.3,0.4,0.4,0.4,0.4,0.4,0.4 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Oil,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Oil,Mt,0.5,0.5,0.6,0.6,0.6,0.6,0.6,0.6 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Oil,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Oil,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Oil,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 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Usual,BRA,Production|Ammonia|Oil,Mt,0.1,0.2,0.2,0.2,0.2,0.2,0.2,0.2 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Oil,Mt,0.1,0.2,0.2,0.2,0.2,0.2,0.2,0.2 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Oil,Mt,0.1,0.2,0.2,0.2,0.2,0.2,0.2,0.2 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Oil,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Steam Reforming,Mt,7,7.4,7.1,6.6,6.1,5.5,4.9,4.9 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Steam Reforming,Mt,14.2,15.7,17,17.8,18.3,18.2,17.7,17.7 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Steam Reforming,Mt,3.9,3.5,3.1,2.7,2.3,1.9,1.5,1.5 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Steam Reforming,Mt,15.7,14.1,12.5,10.9,9.3,7.7,6.2,6.2 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Steam Reforming,Mt,0.2,0.4,0.6,0.7,0.8,0.8,0.8,0.8 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Steam Reforming,Mt,6.3,5.5,4.7,3.9,3.1,2.3,1.5,1.5 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Steam Reforming,Mt,0.4,0.3,0.3,0.2,0.2,0.1,0.1,0.1 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Steam Reforming,Mt,2.5,2.2,1.9,1.6,1.2,0.9,0.6,0.6 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Steam Reforming,Mt,9.6,8.4,7.1,5.9,4.7,3.5,2.3,2.3 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Steam Reforming,Mt,18.5,17.6,16.8,15.9,15,14.2,13.3,13.3 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Steam Reforming,Mt,3.1,2.4,2.6,2.5,2.5,2.2,1.9,1.9 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Steam Reforming,Mt,16.7,17.4,17.9,17.7,17.1,15.8,14.2,14.2 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Steam Reforming,Mt,1.8,1.9,2,2,1.9,1.8,1.7,1.7 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Steam Reforming,Mt,1.8,1.9,2,2,1.9,1.8,1.7,1.7 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Steam Reforming,Mt,1.8,1.9,2,2,1.9,1.8,1.7,1.7 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Steam Reforming,Mt,1.8,1.9,2,2,1.9,1.8,1.7,1.7 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Steam Reforming,Mt,1.8,1.9,2,2,1.9,1.8,1.7,1.7 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Steam Reforming,Mt,2.3,2.6,2.8,3,3.1,3.1,3.1,3.1 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.6,2.8,3,3.1,3.1,3.1,3.1 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.6,2.8,3,3.1,3.1,3.1,3.1 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Steam Reforming,Mt,6.8,7.3,7.7,7.7,7.6,7.2,6.7,6.7 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Steam Reforming,Mt,3,2.2,2.3,2.1,1.9,1.5,1.2,1.2 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Steam Reforming,Mt,3,2.2,2.3,2.1,1.9,1.5,1.2,1.2 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Steam Reforming,Mt,3,2.2,2.3,2.1,1.9,1.5,1.2,1.2 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Steam Reforming,Mt,3,2.2,2.3,2.1,1.9,1.5,1.2,1.2 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Steam Reforming,Mt,1.7,1.8,1.9,1.9,1.9,1.8,1.6,1.6 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Steam Reforming,Mt,7,7.7,8.4,8.9,9.5,9.9,10.3,10.3 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Steam Reforming,Mt,14.2,15.5,16.7,17.6,18.5,19.1,19.6,19.6 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Steam Reforming,Mt,3.9,4.3,4.6,4.8,5.1,5.2,5.4,5.4 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Steam Reforming,Mt,15.7,17,18.4,19.4,20.4,21,21.6,21.6 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Steam Reforming,Mt,0.2,0.2,0.2,0.2,0.2,0.2,0.2,0.2 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Steam Reforming,Mt,6.3,6.8,7.3,7.6,7.9,8.1,8.3,8.3 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Steam Reforming,Mt,0.4,0.4,0.4,0.4,0.5,0.5,0.5,0.5 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Steam Reforming,Mt,2.5,2.7,2.9,3.1,3.2,3.3,3.4,3.4 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Steam Reforming,Mt,9.6,10.4,11.1,11.6,12.1,12.4,12.7,12.7 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Steam Reforming,Mt,18.5,20.1,21.7,22.8,23.9,24.6,25.3,25.3 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Steam Reforming,Mt,3.1,3.3,3.6,3.8,4,4.1,4.2,4.2 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Steam Reforming,Mt,16.7,18.1,19.5,20.5,21.5,22.1,22.8,22.8 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.2,2.3,2.4,2.5,2.5 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.2,2.3,2.4,2.5,2.5 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.2,2.3,2.4,2.5,2.5 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.2,2.3,2.4,2.5,2.5 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.2,2.3,2.4,2.5,2.5 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,2.9,3.1,3.2,3.3,3.3 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,2.9,3.1,3.2,3.3,3.3 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,2.9,3.1,3.2,3.3,3.3 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Steam Reforming,Mt,6.8,7.4,8,8.4,8.8,9.1,9.4,9.4 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.7,3.9,4,4.1,4.1 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.7,3.9,4,4.1,4.1 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.7,3.9,4,4.1,4.1 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.7,3.9,4,4.1,4.1 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Steam Reforming,Mt,1.7,1.8,2,2.1,2.2,2.2,2.3,2.3 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Steam Reforming,Mt,7,7.6,8.3,8.9,9.6,10.2,10.9,10.9 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Steam Reforming,Mt,14.2,15.5,16.9,18.2,19.5,20.9,22.2,22.2 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Steam Reforming,Mt,3.9,4.3,4.6,5,5.4,5.7,6.1,6.1 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Steam Reforming,Mt,15.7,17.1,18.6,20.1,21.5,23,24.4,24.4 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Steam Reforming,Mt,0.2,0.2,0.2,0.2,0.2,0.3,0.3,0.3 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Steam Reforming,Mt,6.3,6.9,7.4,8,8.6,9.2,9.8,9.8 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Steam Reforming,Mt,0.4,0.4,0.4,0.5,0.5,0.5,0.6,0.6 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Steam Reforming,Mt,2.5,2.8,3,3.2,3.5,3.7,4,4 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Steam Reforming,Mt,9.6,10.5,11.4,12.3,13.2,14.1,15,15 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Steam Reforming,Mt,18.5,20.2,22,23.7,25.4,27.2,28.9,28.9 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Steam Reforming,Mt,3.1,3.3,3.6,3.9,4.2,4.5,4.8,4.8 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Steam Reforming,Mt,16.7,18.2,19.8,21.3,22.9,24.5,26,26 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.3,2.5,2.6,2.8,2.8 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.3,2.5,2.6,2.8,2.8 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.3,2.5,2.6,2.8,2.8 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.3,2.5,2.6,2.8,2.8 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Steam Reforming,Mt,1.8,2,2.1,2.3,2.5,2.6,2.8,2.8 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,3,3.2,3.4,3.6,3.6 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,3,3.2,3.4,3.6,3.6 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Steam Reforming,Mt,2.3,2.5,2.8,3,3.2,3.4,3.6,3.6 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Steam Reforming,Mt,6.8,7.4,8.1,8.7,9.3,10,10.6,10.6 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.8,4.1,4.4,4.6,4.6 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.8,4.1,4.4,4.6,4.6 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.8,4.1,4.4,4.6,4.6 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Steam Reforming,Mt,3,3.2,3.5,3.8,4.1,4.4,4.6,4.6 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Steam Reforming,Mt,1.7,1.8,2,2.1,2.3,2.4,2.6,2.6 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Steam Reforming w/ syngas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Steam Reforming w/ syngas and flue gas w/ CCS,Mt,1,1,1,1,1,1,1,1 +image,SSP2-RCP19,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.1,0.4,0.7,1.1,1.4,1.7,2.1,2.1 +image,SSP2-RCP19,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.3,1.7,3,4.3,5.7,7,8.3,8.3 +image,SSP2-RCP19,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0.1,0.3,0.5,0.8,1.1,1.1 +image,SSP2-RCP19,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.1,0.2,0.3,0.3,0.4,0.4 +image,SSP2-RCP19,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0.1,0.1,0.1,0.1,0.2,0.2 +image,SSP2-RCP19,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.2,0.3,0.4,0.5,0.6,0.6 +image,SSP2-RCP19,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,1.4,3.3,5.5,8.2,11.1,14.5,14.5 +image,SSP2-RCP19,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.9,1.2,1.2 +image,SSP2-RCP19,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.9,1.2,1.2 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.9,1.2,1.2 +image,SSP2-RCP19,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.9,1.2,1.2 +image,SSP2-RCP19,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.9,1.2,1.2 +image,SSP2-RCP19,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.2,0.3,0.5,0.7,0.9,0.9 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.2,0.3,0.5,0.7,0.9,0.9 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.2,0.3,0.5,0.7,0.9,0.9 +image,SSP2-RCP19,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.5,1.1,1.8,2.7,3.7,4.9,4.9 +image,SSP2-RCP19,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.8,0.9,0.9 +image,SSP2-RCP19,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.8,0.9,0.9 +image,SSP2-RCP19,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.8,0.9,0.9 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.5,0.7,0.8,0.9,0.9 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0.1,0.3,0.4,0.7,0.9,1.2,1.2 +image,SSP2-RCP26,Sustainable development,CHN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-RCP26,Sustainable development,USA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.3,0.4,0.4,0.4,0.4,0.4,0.5,0.5 +image,SSP2-RCP26,Sustainable development,MEX,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,TUR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RUS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,BRA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDO,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,JAP,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,KOR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,OCE,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CHN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDIA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.1,0.1,0.1,0.1,0.1,0.1,0.1,0.1 +image,SSP2-Base,Business As Usual,USA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0.3,0.4,0.4,0.4,0.5,0.5,0.5,0.5 +image,SSP2-Base,Business As Usual,MEX,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,TUR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,UKR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WEU,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RUS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,STAN,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,ME,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,EAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,NAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WAF,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,BRA,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RCAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAM,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDO,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,JAP,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,KOR,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,OCE,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SEAS,Production|Ammonia|Steam Reforming w/ CCS,Mt,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDIA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CHN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RUS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,STAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,TUR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,UKR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,EAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,NAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,BRA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RCAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,USA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,MEX,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,ME,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDO,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,JAP,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,KOR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,OCE,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SEAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDIA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CHN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RUS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,TUR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,BRA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RCAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,USA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,MEX,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDO,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,JAP,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,KOR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,OCE,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SEAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDIA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CHN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RUS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,STAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,TUR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,UKR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WEU,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,EAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,NAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,WAF,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,BRA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RCAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAM,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CAN,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,USA,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,MEX,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,ME,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDO,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,JAP,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,KOR,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,OCE,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RSAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,SEAS,Production|AmmoniaCO2|Steam Reforming,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CHN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,CAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,USA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,MEX,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,CEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,TUR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,UKR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,WEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,RUS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,STAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,ME,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,EAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,NAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,SAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,WAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,BRA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,INDO,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,JAP,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,KOR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,OCE,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,CHN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,CAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,USA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,MEX,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,CEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,TUR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,UKR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,WEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,RUS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,STAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,ME,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,EAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,NAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,SAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,WAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,BRA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,INDO,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,JAP,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,KOR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,OCE,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,CHN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,INDIA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,CAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,USA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,MEX,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,CEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,TUR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,UKR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,WEU,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,RUS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,STAN,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,ME,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,EAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,NAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,RSAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,SAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,WAF,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,BRA,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,RCAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,RSAM,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,INDO,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,JAP,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,KOR,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,OCE,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,RSAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-Base,Business As Usual,SEAS,Production|Hydrogen|Alkaline Electrolysis,%,69,69,69,69,69,69,69,69 +image,SSP2-RCP19,Sustainable development,CHN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,INDIA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,CAN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,USA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,MEX,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,CEU,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,TUR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,UKR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,WEU,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,RUS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,STAN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,ME,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,EAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,NAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,RSAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,SAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,WAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,BRA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,RCAM,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,RSAM,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,INDO,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,JAP,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,KOR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,OCE,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,RSAS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP19,Sustainable development,SEAS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,CHN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,INDIA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,CAN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,USA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,MEX,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,CEU,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,TUR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,UKR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,WEU,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,RUS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,STAN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,ME,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,EAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,NAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,RSAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,SAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,WAF,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,BRA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,RCAM,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,RSAM,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,INDO,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,JAP,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,KOR,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,OCE,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,RSAS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-RCP26,Sustainable development,SEAS,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,CHN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,INDIA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,CAN,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,USA,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,MEX,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 +image,SSP2-Base,Business As Usual,CEU,Production|Hydrogen|PEM,%,31,31,31,31,31,31,31,31 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Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RUS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,STAN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CEU,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,TUR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,UKR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WEU,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,EAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,NAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,WAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,BRA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RCAM,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAM,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,CAN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,USA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,MEX,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,ME,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,INDO,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,JAP,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,KOR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,OCE,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,RSAS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-Base,Business As Usual,SEAS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDIA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CHN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RUS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,STAN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CEU,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,TUR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,UKR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WEU,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,EAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,NAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,WAF,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,BRA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RCAM,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAM,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,CAN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,USA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,MEX,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,ME,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,INDO,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,JAP,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,KOR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,OCE,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,RSAS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP26,Sustainable development,SEAS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,INDIA,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CHN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,RUS,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,STAN,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,CEU,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,TUR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable development,UKR,Production|HydrogenCO2|Coal Gasification,%,0,0,0,0,0,0,0,0 +image,SSP2-RCP19,Sustainable 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