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toniseiboldfneum
andauthored
adding Fischer-Tropsch efficiciency to be the inverse of the hydrogen input (#251)
Co-authored-by: Fabian Neumann <fabian.neumann@outlook.de>
1 parent c30d0e0 commit 3a76f56

15 files changed

+32
-29
lines changed

inputs/manual_input.csv

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@@ -219,7 +219,10 @@ methanol-to-kerosene,lifetime,2050,30,years,-,"Concawe (2022): E-Fuels: A techno
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methanol-to-kerosene,investment,2050,200000,EUR/MW_kerosene,2020,"Concawe (2022): E-Fuels: A technoeconomic assessment of European domestic production and imports towards 2050 (https://www.concawe.eu/wp-content/uploads/Rpt_22-17.pdf), table 94.",
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methanol-to-kerosene,FOM,2050,4.5,%/year,2020,"Concawe (2022): E-Fuels: A technoeconomic assessment of European domestic production and imports towards 2050 (https://www.concawe.eu/wp-content/uploads/Rpt_22-17.pdf), table 94.",
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methanol-to-kerosene,VOM,2050,1.35,EUR/MWh_kerosene,2020,"Concawe (2022): E-Fuels: A technoeconomic assessment of European domestic production and imports towards 2050 (https://www.concawe.eu/wp-content/uploads/Rpt_22-17.pdf), table 94.",
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Fischer-Tropsch,efficiency,2020,0.799,per unit,2017,"Agora Energiewende (2018): The Future Cost of Electricity-Based Synthetic Fuels (https://www.agora-energiewende.de/en/publications/the-future-cost-of-electricity-based-synthetic-fuels-1/), section 6.3.2.2.",
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Fischer-Tropsch,efficiency,2020,0.653,per unit,, Inverse of hydrogen input,
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Fischer-Tropsch,efficiency,2030,0.704,per unit,, Inverse of hydrogen input,
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Fischer-Tropsch,efficiency,2040,0.734,per unit,, Inverse of hydrogen input,
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Fischer-Tropsch,efficiency,2050,0.754,per unit,, Inverse of hydrogen input,
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Fischer-Tropsch,investment,2020,788000,EUR/MW_FT,2017,"Agora Energiewende (2018): The Future Cost of Electricity-Based Synthetic Fuels (https://www.agora-energiewende.de/en/publications/the-future-cost-of-electricity-based-synthetic-fuels-1/), table 8: “Reference scenario”.","Well developed technology, no significant learning expected."
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Fischer-Tropsch,lifetime,2020,20,years,2017,"Danish Energy Agency, Technology Data for Renewable Fuels (04/2022), Data sheet “Methanol to Power”.",
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Fischer-Tropsch,FOM,2020,3,%/year,2017,"Agora Energiewende (2018): The Future Cost of Electricity-Based Synthetic Fuels (https://www.agora-energiewende.de/en/publications/the-future-cost-of-electricity-based-synthetic-fuels-1/), section 6.3.2.1.",

outputs/US/costs_2020.csv

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@@ -3949,7 +3949,7 @@ electrobiofuels,VOM,4.957,EUR/MWh_th,combination of BtL and electrofuels,,2022.0
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
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electrobiofuels,efficiency-biomass,1.3183,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-hydrogen,1.0309,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.6217,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.556,per unit,Stoichiometric calculation,,,,
39533953
electrobiofuels,investment,1155460.1124,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
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electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
39553955
electrolysis,efficiency,0.5773,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2025.csv

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@@ -4035,7 +4035,7 @@ electrobiofuels,VOM,4.5072,EUR/MWh_th,combination of BtL and electrofuels,,2022.
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
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electrobiofuels,efficiency-biomass,1.32,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-hydrogen,1.0469,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.6272,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.5738,per unit,Stoichiometric calculation,,,,
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electrobiofuels,investment,1137499.3937,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
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electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
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electrolysis,efficiency,0.5874,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2030.csv

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@@ -4191,7 +4191,7 @@ electrobiofuels,VOM,4.0691,EUR/MWh_th,combination of BtL and electrofuels,,2022.
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
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electrobiofuels,efficiency-biomass,1.3217,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-hydrogen,1.0637,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.6328,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.5912,per unit,Stoichiometric calculation,,,,
41954195
electrobiofuels,investment,1119385.9963,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
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electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
41974197
electrolysis,efficiency,0.6217,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2035.csv

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@@ -4215,7 +4215,7 @@ electrobiofuels,VOM,3.6784,EUR/MWh_th,combination of BtL and electrofuels,,2022.
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
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electrobiofuels,efficiency-biomass,1.3233,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-hydrogen,1.081,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.6385,per unit,Stoichiometric calculation,,,,
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electrobiofuels,efficiency-tot,0.6038,per unit,Stoichiometric calculation,,,,
42194219
electrobiofuels,investment,1101272.599,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
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electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
42214221
electrolysis,efficiency,0.6374,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2040.csv

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@@ -4215,7 +4215,7 @@ electrobiofuels,VOM,3.2988,EUR/MWh_th,combination of BtL and electrofuels,,2022.
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
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electrobiofuels,efficiency-biomass,1.325,per unit,Stoichiometric calculation,,,,
42174217
electrobiofuels,efficiency-hydrogen,1.0989,per unit,Stoichiometric calculation,,,,
4218-
electrobiofuels,efficiency-tot,0.6443,per unit,Stoichiometric calculation,,,,
4218+
electrobiofuels,efficiency-tot,0.6163,per unit,Stoichiometric calculation,,,,
42194219
electrobiofuels,investment,1083159.2016,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
42204220
electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
42214221
electrolysis,efficiency,0.6532,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2045.csv

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@@ -4215,7 +4215,7 @@ electrobiofuels,VOM,2.8959,EUR/MWh_th,combination of BtL and electrofuels,,2022.
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electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
42164216
electrobiofuels,efficiency-biomass,1.3267,per unit,Stoichiometric calculation,,,,
42174217
electrobiofuels,efficiency-hydrogen,1.1173,per unit,Stoichiometric calculation,,,,
4218-
electrobiofuels,efficiency-tot,0.6503,per unit,Stoichiometric calculation,,,,
4218+
electrobiofuels,efficiency-tot,0.6267,per unit,Stoichiometric calculation,,,,
42194219
electrobiofuels,investment,1065045.8042,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
42204220
electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
42214221
electrolysis,efficiency,0.6763,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/US/costs_2050.csv

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@@ -4215,7 +4215,7 @@ electrobiofuels,VOM,2.5054,EUR/MWh_th,combination of BtL and electrofuels,,2022.
42154215
electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,,,
42164216
electrobiofuels,efficiency-biomass,1.3283,per unit,Stoichiometric calculation,,,,
42174217
electrobiofuels,efficiency-hydrogen,1.1364,per unit,Stoichiometric calculation,,,,
4218-
electrobiofuels,efficiency-tot,0.6563,per unit,Stoichiometric calculation,,,,
4218+
electrobiofuels,efficiency-tot,0.637,per unit,Stoichiometric calculation,,,,
42194219
electrobiofuels,investment,1046932.4068,EUR/kW_th,combination of BtL and electrofuels,,2022.0,,
42204220
electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0,,
42214221
electrolysis,efficiency,0.6994,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0,,

outputs/costs_2020.csv

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@@ -233,7 +233,7 @@ Fischer-Tropsch,FOM,3.0,%/year,"Agora Energiewende (2018): The Future Cost of El
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Fischer-Tropsch,VOM,5.636,EUR/MWh_FT,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",102 Hydrogen to Jet: Variable O&M,2020.0
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Fischer-Tropsch,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,
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Fischer-Tropsch,carbondioxide-input,0.36,t_CO2/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","Input per 1t FT liquid fuels output, carbon efficiency increases with years (4.3, 3.9, 3.6, 3.3 t_CO2/t_FT from 2020-2050 with LHV 11.95 MWh_th/t_FT).",
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Fischer-Tropsch,efficiency,0.799,per unit,"Agora Energiewende (2018): The Future Cost of Electricity-Based Synthetic Fuels (https://www.agora-energiewende.de/en/publications/the-future-cost-of-electricity-based-synthetic-fuels-1/), section 6.3.2.2.",,2017.0
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Fischer-Tropsch,efficiency,0.653,per unit, Inverse of hydrogen input,,2020.0
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Fischer-Tropsch,efficiency-heat,0.25,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx","102 Hydrogen to Jet: District Heat Output,",2020.0
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Fischer-Tropsch,electricity-input,0.008,MWh_el/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","0.005 MWh_el input per FT output, output increasing from 2020 to 2050 (0.65, 0.7, 0.73, 0.75 MWh liquid FT output).",
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Fischer-Tropsch,hydrogen-input,1.531,MWh_H2/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","0.995 MWh_H2 per output, output increasing from 2020 to 2050 (0.65, 0.7, 0.73, 0.75 MWh liquid FT output).",
@@ -977,8 +977,8 @@ electrobiofuels,FOM,2.4,%/year,combination of BtL and electrofuels,,2015.0
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electrobiofuels,VOM,5.153,EUR/MWh_th,combination of BtL and electrofuels,,2017.0
978978
electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,
979979
electrobiofuels,efficiency-biomass,1.3183,per unit,Stoichiometric calculation,,
980-
electrobiofuels,efficiency-hydrogen,1.1766,per unit,Stoichiometric calculation,,
981-
electrobiofuels,efficiency-tot,0.6217,per unit,Stoichiometric calculation,,
980+
electrobiofuels,efficiency-hydrogen,0.9616,per unit,Stoichiometric calculation,,
981+
electrobiofuels,efficiency-tot,0.556,per unit,Stoichiometric calculation,,
982982
electrobiofuels,investment,559887.2932,EUR/kW_th,combination of BtL and electrofuels,,2017.0
983983
electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0
984984
electrolysis,efficiency,0.5773,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0

outputs/costs_2025.csv

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@@ -233,7 +233,7 @@ Fischer-Tropsch,FOM,3.0,%/year,"Agora Energiewende (2018): The Future Cost of El
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Fischer-Tropsch,VOM,5.0512,EUR/MWh_FT,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",102 Hydrogen to Jet: Variable O&M,2020.0
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Fischer-Tropsch,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,
235235
Fischer-Tropsch,carbondioxide-input,0.343,t_CO2/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","Input per 1t FT liquid fuels output, carbon efficiency increases with years (4.3, 3.9, 3.6, 3.3 t_CO2/t_FT from 2020-2050 with LHV 11.95 MWh_th/t_FT).",
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Fischer-Tropsch,efficiency,0.799,per unit,"Agora Energiewende (2018): The Future Cost of Electricity-Based Synthetic Fuels (https://www.agora-energiewende.de/en/publications/the-future-cost-of-electricity-based-synthetic-fuels-1/), section 6.3.2.2.",,2017.0
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Fischer-Tropsch,efficiency,0.6785,per unit, Inverse of hydrogen input,,2020.0
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Fischer-Tropsch,efficiency-heat,0.225,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx","102 Hydrogen to Jet: District Heat Output,",2020.0
238238
Fischer-Tropsch,electricity-input,0.0075,MWh_el/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","0.005 MWh_el input per FT output, output increasing from 2020 to 2050 (0.65, 0.7, 0.73, 0.75 MWh liquid FT output).",
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Fischer-Tropsch,hydrogen-input,1.476,MWh_H2/MWh_FT,"DEA (2022): Technology Data for Renewable Fuels (https://ens.dk/en/our-services/projections-and-models/technology-data/technology-data-renewable-fuels), Hydrogen to Jet Fuel, Table 10 / pg. 267.","0.995 MWh_H2 per output, output increasing from 2020 to 2050 (0.65, 0.7, 0.73, 0.75 MWh liquid FT output).",
@@ -977,8 +977,8 @@ electrobiofuels,FOM,2.5263,%/year,combination of BtL and electrofuels,,2015.0
977977
electrobiofuels,VOM,4.6849,EUR/MWh_th,combination of BtL and electrofuels,,2017.0
978978
electrobiofuels,capture rate,0.9,per unit,Assumption based on doi:10.1016/j.biombioe.2015.01.006,,
979979
electrobiofuels,efficiency-biomass,1.32,per unit,Stoichiometric calculation,,
980-
electrobiofuels,efficiency-hydrogen,1.1951,per unit,Stoichiometric calculation,,
981-
electrobiofuels,efficiency-tot,0.6272,per unit,Stoichiometric calculation,,
980+
electrobiofuels,efficiency-hydrogen,1.0149,per unit,Stoichiometric calculation,,
981+
electrobiofuels,efficiency-tot,0.5737,per unit,Stoichiometric calculation,,
982982
electrobiofuels,investment,512440.2631,EUR/kW_th,combination of BtL and electrofuels,,2017.0
983983
electrolysis,FOM,4.0,%/year,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Fixed O&M ,2020.0
984984
electrolysis,efficiency,0.5874,per unit,"Danish Energy Agency, inputs/data_sheets_for_renewable_fuels.xlsx",86 AEC 100 MW: Hydrogen Output,2020.0

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