1c5f471acb
Only include these technologies since they are connected at new locations. Other technologies can fit in at existing connections.
252 lines
18 KiB
Plaintext
252 lines
18 KiB
Plaintext
technology,year,parameter,value,unit,source
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solar-rooftop,2030,discount rate,0.04,per unit,standard for decentral
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onwind,2030,lifetime,25,years,IEA2010
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offwind,2030,lifetime,25,years,IEA2010
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solar,2030,lifetime,25,years,IEA2010
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solar-rooftop,2030,lifetime,25,years,IEA2010
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solar-utility,2030,lifetime,25,years,IEA2010
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PHS,2030,lifetime,80,years,IEA2010
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hydro,2030,lifetime,80,years,IEA2010
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ror,2030,lifetime,80,years,IEA2010
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OCGT,2030,lifetime,30,years,IEA2010
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nuclear,2030,lifetime,45,years,ECF2010 in DIW DataDoc http://hdl.handle.net/10419/80348
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CCGT,2030,lifetime,30,years,IEA2010
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coal,2030,lifetime,40,years,IEA2010
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lignite,2030,lifetime,40,years,IEA2010
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geothermal,2030,lifetime,40,years,IEA2010
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biomass,2030,lifetime,30,years,ECF2010 in DIW DataDoc http://hdl.handle.net/10419/80348
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oil,2030,lifetime,30,years,ECF2010 in DIW DataDoc http://hdl.handle.net/10419/80348
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onwind,2030,investment,1182,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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offwind,2030,investment,2506,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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solar,2030,investment,600,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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biomass,2030,investment,2209,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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geothermal,2030,investment,3392,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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coal,2030,investment,1300,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348 PC (Advanced/SuperC)
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lignite,2030,investment,1500,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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solar-rooftop,2030,investment,725,EUR/kWel,ETIP PV
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solar-utility,2030,investment,425,EUR/kWel,ETIP PV
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PHS,2030,investment,2000,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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hydro,2030,investment,2000,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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ror,2030,investment,3000,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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OCGT,2030,investment,400,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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nuclear,2030,investment,6000,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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CCGT,2030,investment,800,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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oil,2030,investment,400,EUR/kWel,DIW DataDoc http://hdl.handle.net/10419/80348
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onwind,2030,FOM,2.961083,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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offwind,2030,FOM,3.192338,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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solar,2030,FOM,4.166667,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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solar-rooftop,2030,FOM,2,%/year,ETIP PV
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solar-utility,2030,FOM,3,%/year,ETIP PV
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biomass,2030,FOM,4.526935,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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geothermal,2030,FOM,2.358491,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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coal,2030,FOM,1.923076,%/year,DIW DataDoc http://hdl.handle.net/10419/80348 PC (Advanced/SuperC)
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lignite,2030,FOM,2.0,%/year,DIW DataDoc http://hdl.handle.net/10419/80348 PC (Advanced/SuperC)
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oil,2030,FOM,1.5,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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PHS,2030,FOM,1,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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hydro,2030,FOM,1,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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ror,2030,FOM,2,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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CCGT,2030,FOM,2.5,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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OCGT,2030,FOM,3.75,%/year,DIW DataDoc http://hdl.handle.net/10419/80348
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onwind,2030,VOM,0.015,EUR/MWhel,RES costs made up to fix curtailment order
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offwind,2030,VOM,0.02,EUR/MWhel,RES costs made up to fix curtailment order
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solar,2030,VOM,0.01,EUR/MWhel,RES costs made up to fix curtailment order
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coal,2030,VOM,6,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348 PC (Advanced/SuperC)
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lignite,2030,VOM,7,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348
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CCGT,2030,VOM,4,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348
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OCGT,2030,VOM,3,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348
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nuclear,2030,VOM,8,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348
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gas,2030,fuel,21.6,EUR/MWhth,IEA2011b
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uranium,2030,fuel,3,EUR/MWhth,DIW DataDoc http://hdl.handle.net/10419/80348
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oil,2030,VOM,3,EUR/MWhel,DIW DataDoc http://hdl.handle.net/10419/80348
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nuclear,2030,fuel,3,EUR/MWhth,IEA2011b
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biomass,2030,fuel,7,EUR/MWhth,IEA2011b
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coal,2030,fuel,8.4,EUR/MWhth,IEA2011b
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lignite,2030,fuel,2.9,EUR/MWhth,IEA2011b
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biogas,2030,fuel,59,EUR/MWhth,JRC and Zappa
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solid biomass,2030,fuel,25.2,EUR/MWhth,JRC and Zappa
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oil,2030,fuel,50,EUR/MWhth,IEA WEM2017 97USD/boe = http://www.iea.org/media/weowebsite/2017/WEM_Documentation_WEO2017.pdf
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PHS,2030,efficiency,0.75,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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hydro,2030,efficiency,0.9,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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ror,2030,efficiency,0.9,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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OCGT,2030,efficiency,0.39,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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CCGT,2030,efficiency,0.5,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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biomass,2030,efficiency,0.468,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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geothermal,2030,efficiency,0.239,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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nuclear,2030,efficiency,0.337,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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gas,2030,CO2 intensity,0.187,tCO2/MWhth,https://www.eia.gov/environment/emissions/co2_vol_mass.php
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coal,2030,efficiency,0.464,per unit,DIW DataDoc http://hdl.handle.net/10419/80348 PC (Advanced/SuperC)
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lignite,2030,efficiency,0.447,per unit,DIW DataDoc http://hdl.handle.net/10419/80348
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oil,2030,efficiency,0.393,per unit,DIW DataDoc http://hdl.handle.net/10419/80348 CT
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coal,2030,CO2 intensity,0.354,tCO2/MWhth,https://www.eia.gov/environment/emissions/co2_vol_mass.php
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lignite,2030,CO2 intensity,0.4,tCO2/MWhth,German sources
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oil,2030,CO2 intensity,0.248,tCO2/MWhth,https://www.eia.gov/environment/emissions/co2_vol_mass.php
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geothermal,2030,CO2 intensity,0.026,tCO2/MWhth,https://www.eia.gov/environment/emissions/co2_vol_mass.php
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solid biomass,2030,CO2 intensity,0.3,tCO2/MWhth,TODO
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electrolysis,2030,investment,350,EUR/kWel,Palzer Thesis
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electrolysis,2030,FOM,4,%/year,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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electrolysis,2030,lifetime,18,years,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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electrolysis,2030,efficiency,0.8,per unit,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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fuel cell,2030,investment,339,EUR/kWel,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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fuel cell,2030,FOM,3,%/year,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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fuel cell,2030,lifetime,20,years,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013
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fuel cell,2030,efficiency,0.58,per unit,NREL http://www.nrel.gov/docs/fy09osti/45873.pdf; budischak2013 conservative 2020
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hydrogen storage,2030,investment,11.2,USD/kWh,budischak2013
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hydrogen storage,2030,lifetime,20,years,budischak2013
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hydrogen underground storage,2030,investment,0.5,EUR/kWh,maximum from https://www.nrel.gov/docs/fy10osti/46719.pdf
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hydrogen underground storage,2030,lifetime,40,years,http://www.acatech.de/fileadmin/user_upload/Baumstruktur_nach_Website/Acatech/root/de/Publikationen/Materialien/ESYS_Technologiesteckbrief_Energiespeicher.pdf
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H2 pipeline,2030,investment,267,EUR/MW/km,Welder et al https://doi.org/10.1016/j.ijhydene.2018.12.156
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H2 pipeline,2030,lifetime,40,years,TODO
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H2 pipeline,2030,FOM,3,%/year,TODO
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methanation,2030,investment,1000,EUR/kWH2,Schaber thesis
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methanation,2030,lifetime,25,years,Schaber thesis
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methanation,2030,FOM,3,%/year,Schaber thesis
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methanation,2030,efficiency,0.8,per unit,Palzer and Schaber thesis
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helmeth,2030,investment,2000,EUR/kW,no source
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helmeth,2030,lifetime,25,years,no source
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helmeth,2030,FOM,3,%/year,no source
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helmeth,2030,efficiency,0.8,per unit,HELMETH press release
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SMR,2030,investment,540.56,EUR/kWCH4,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030; GBP 466 exchange 1.16
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SMR,2030,lifetime,25,years,TODO
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SMR,2030,FOM,5.4,%/year,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030
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SMR,2030,efficiency,0.74,per unit,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030
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SMR CCS,2030,investment,1032,EUR/kWCH4,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030; GBP 466 exchange 1.16; CCS costed at 300 EUR/tCO2/a
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SMR CCS,2030,lifetime,25,years,TODO
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SMR CCS,2030,FOM,5.4,%/year,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030
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SMR CCS,2030,efficiency,0.67,per unit,https://www.gov.uk/government/publications/hydrogen-supply-chain-evidence-base; slide 42 assumption for 2030; CCS uses 10% of gas
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industry CCS,2030,investment,300,EUR/tCO2/a,Saygin et al 2013 https://doi.org/10.1016/j.ijggc.2013.05.032
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industry CCS,2030,FOM,2,%/year,Saygin et al 2013 https://doi.org/10.1016/j.ijggc.2013.05.032
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industry CCS,2030,lifetime,25,years,Saygin et al 2013 https://doi.org/10.1016/j.ijggc.2013.05.032
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industry CCS,2030,efficiency,0.9,per unit,Saygin et al 2013 https://doi.org/10.1016/j.ijggc.2013.05.032
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Fischer-Tropsch,2030,investment,677.6,EUR/kWH2,Fasihi doi:10.3390/su9020306 (60 kEUR/bpd = 847 EUR/kWL (1b = 1.7 MWh) 847*0.8 = 677.6)
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Fischer-Tropsch,2030,lifetime,30,years,doi:10.3390/su9020306
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Fischer-Tropsch,2030,FOM,3,%/year,doi:10.3390/su9020306
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Fischer-Tropsch,2030,efficiency,0.8,per unit,TODO
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DAC,2030,investment,250,EUR/(tCO2/a),Fasihi doi:10.3390/su9020306/Climeworks
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DAC,2030,lifetime,30,years,Fasihi
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DAC,2030,FOM,4,%/year,Fasihi
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battery inverter,2030,investment,411,USD/kWel,budischak2013
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battery inverter,2030,lifetime,20,years,budischak2013
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battery inverter,2030,efficiency,0.81,per unit,budischak2013; Lund and Kempton (2008) https://doi.org/10.1016/j.enpol.2008.06.007
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battery inverter,2030,FOM,3,%/year,budischak2013
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battery storage,2030,investment,192,USD/kWh,budischak2013
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battery storage,2030,lifetime,15,years,budischak2013
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decentral air-sourced heat pump,2030,investment,1050,EUR/kWth,HP; Palzer thesis
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decentral air-sourced heat pump,2030,lifetime,20,years,HP; Palzer thesis
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decentral air-sourced heat pump,2030,FOM,3.5,%/year,Palzer thesis
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decentral air-sourced heat pump,2030,efficiency,3,per unit,default for costs
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decentral air-sourced heat pump,2030,discount rate,0.04,per unit,Palzer thesis
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decentral ground-sourced heat pump,2030,investment,1400,EUR/kWth,Palzer thesis
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decentral ground-sourced heat pump,2030,lifetime,20,years,Palzer thesis
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decentral ground-sourced heat pump,2030,FOM,3.5,%/year,Palzer thesis
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decentral ground-sourced heat pump,2030,efficiency,4,per unit,default for costs
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decentral ground-sourced heat pump,2030,discount rate,0.04,per unit,Palzer thesis
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central air-sourced heat pump,2030,investment,700,EUR/kWth,Palzer thesis
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central air-sourced heat pump,2030,lifetime,20,years,Palzer thesis
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central air-sourced heat pump,2030,FOM,3.5,%/year,Palzer thesis
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central air-sourced heat pump,2030,efficiency,3,per unit,default for costs
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retrofitting I,2030,discount rate,0.04,per unit,Palzer thesis
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retrofitting I,2030,lifetime,50,years,Palzer thesis
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retrofitting I,2030,FOM,1,%/year,Palzer thesis
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retrofitting I,2030,investment,50,EUR/m2/fraction reduction,Palzer thesis
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retrofitting II,2030,discount rate,0.04,per unit,Palzer thesis
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retrofitting II,2030,lifetime,50,years,Palzer thesis
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retrofitting II,2030,FOM,1,%/year,Palzer thesis
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retrofitting II,2030,investment,250,EUR/m2/fraction reduction,Palzer thesis
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water tank charger,2030,efficiency,0.9,per unit,HP
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water tank discharger,2030,efficiency,0.9,per unit,HP
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decentral water tank storage,2030,investment,860,EUR/m3,IWES Interaktion
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decentral water tank storage,2030,FOM,1,%/year,HP
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decentral water tank storage,2030,lifetime,20,years,HP
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decentral water tank storage,2030,discount rate,0.04,per unit,Palzer thesis
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central water tank storage,2030,investment,30,EUR/m3,IWES Interaktion
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central water tank storage,2030,FOM,1,%/year,HP
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central water tank storage,2030,lifetime,40,years,HP
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decentral resistive heater,2030,investment,100,EUR/kWhth,Schaber thesis
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decentral resistive heater,2030,lifetime,20,years,Schaber thesis
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decentral resistive heater,2030,FOM,2,%/year,Schaber thesis
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decentral resistive heater,2030,efficiency,0.9,per unit,Schaber thesis
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decentral resistive heater,2030,discount rate,0.04,per unit,Palzer thesis
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central resistive heater,2030,investment,100,EUR/kWhth,Schaber thesis
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central resistive heater,2030,lifetime,20,years,Schaber thesis
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central resistive heater,2030,FOM,2,%/year,Schaber thesis
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central resistive heater,2030,efficiency,0.9,per unit,Schaber thesis
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decentral gas boiler,2030,investment,175,EUR/kWhth,Palzer thesis
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decentral gas boiler,2030,lifetime,20,years,Palzer thesis
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decentral gas boiler,2030,FOM,2,%/year,Palzer thesis
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decentral gas boiler,2030,efficiency,0.9,per unit,Palzer thesis
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decentral gas boiler,2030,discount rate,0.04,per unit,Palzer thesis
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central gas boiler,2030,investment,63,EUR/kWhth,Palzer thesis
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central gas boiler,2030,lifetime,22,years,Palzer thesis
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central gas boiler,2030,FOM,1,%/year,Palzer thesis
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central gas boiler,2030,efficiency,0.9,per unit,Palzer thesis
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decentral CHP,2030,lifetime,25,years,HP
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decentral CHP,2030,investment,1400,EUR/kWel,HP
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decentral CHP,2030,FOM,3,%/year,HP
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decentral CHP,2030,discount rate,0.04,per unit,Palzer thesis
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central gas CHP,2030,lifetime,30,years,DEA
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central gas CHP,2030,investment,1300,EUR/kWel,DEA
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central gas CHP,2030,FOM,3,%/year,DEA
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central gas CHP,2030,efficiency,0.45,per unit,DEA (condensation mode)
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central gas CHP,2030,c_b,0.7,per unit,DEA (backpressure ratio)
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central gas CHP,2030,c_v,0.17,per unit,DEA (loss of fuel for additional heat)
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central gas CHP,2030,p_nom_ratio,1.,per unit,
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central gas CHP,2030,VOM,0.82,EUR/MWh,DEA
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central gas CHP CCS,2030,lifetime,30,years,DEA
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central gas CHP CCS,2030,investment,1900,EUR/kWel,DEA + DIW extra for CCS on gas plant
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central gas CHP CCS,2030,FOM,3,%/year,DEA
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central gas CHP CCS,2030,efficiency,0.405,per unit,DEA (condensation mode + efficiency loss due to capture)
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central gas CHP CCS,2030,c_b,0.7,per unit,DEA (backpressure ratio)
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central gas CHP CCS,2030,c_v,0.17,per unit,DEA (loss of fuel for additional heat)
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central gas CHP CCS,2030,p_nom_ratio,1.,per unit,
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central gas CHP CCS,2030,VOM,0.82,EUR/MWh,DEA
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central solid biomass CHP,2030,lifetime,40,years,DEA for wood pellets CHP
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central solid biomass CHP,2030,investment,1990,EUR/kWel,DEA for wood pellets CHP
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central solid biomass CHP,2030,FOM,3,%/year,DEA for wood pellets CHP
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central solid biomass CHP,2030,efficiency,0.52,per unit,DEA for wood pellets CHP (condensation mode)
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central solid biomass CHP,2030,c_b,1.01,per unit,DEA for wood pellets CHP (backpressure ratio)
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central solid biomass CHP,2030,c_v,0.15,per unit,DEA for wood pellets CHP (loss of fuel for additional heat)
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central solid biomass CHP,2030,p_nom_ratio,1.,per unit,
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central solid biomass CHP,2030,VOM,2.2,EUR/MWh,DEA for wood pellets CHP
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central solid biomass CHP CCS,2030,lifetime,40,years,DEA for wood pellets CHP
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central solid biomass CHP CCS,2030,investment,2590,EUR/kWel,DEA for wood pellets CHP + DIW extra for CCS on gas plant
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central solid biomass CHP CCS,2030,FOM,3,%/year,DEA for wood pellets CHP
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central solid biomass CHP CCS,2030,efficiency,0.468,per unit,DEA for wood pellets CHP (condensation mode + efficiency loss due to capture)
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central solid biomass CHP CCS,2030,c_b,1.01,per unit,DEA for wood pellets CHP (backpressure ratio)
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central solid biomass CHP CCS,2030,c_v,0.15,per unit,DEA for wood pellets CHP (loss of fuel for additional heat)
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central solid biomass CHP CCS,2030,p_nom_ratio,1.,per unit,
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central solid biomass CHP CCS,2030,VOM,2.2,EUR/MWh,DEA for wood pellets CHP
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micro CHP,2030,lifetime,20,years,DEA for PEMFC with methane (for unit consuming 2kW CH4)
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micro CHP,2030,investment,4500,EUR/kWCH4,DEA for PEMFC with methane (for unit consuming 2kW CH4)
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micro CHP,2030,FOM,6,%/year,DEA for PEMFC with methane (for unit consuming 2kW CH4)
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micro CHP,2030,efficiency,0.351,per unit,DEA for PEMFC with methane (for unit consuming 2kW CH4)
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micro CHP,2030,efficiency-heat,0.609,per unit,DEA for PEMFC with methane (for unit consuming 2kW CH4)
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decentral solar thermal,2030,discount rate,0.04,per unit,Palzer thesis
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decentral solar thermal,2030,FOM,1.3,%/year,HP
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decentral solar thermal,2030,investment,270000,EUR/1000m2,HP
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decentral solar thermal,2030,lifetime,20,years,HP
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central solar thermal,2030,FOM,1.4,%/year,HP
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central solar thermal,2030,investment,140000,EUR/1000m2,HP
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central solar thermal,2030,lifetime,20,years,HP
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HVAC overhead,2030,investment,400,EUR/MW/km,Hagspiel
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HVAC overhead,2030,lifetime,40,years,Hagspiel
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HVAC overhead,2030,FOM,2,%/year,Hagspiel
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HVDC overhead,2030,investment,400,EUR/MW/km,Hagspiel
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HVDC overhead,2030,lifetime,40,years,Hagspiel
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HVDC overhead,2030,FOM,2,%/year,Hagspiel
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HVDC submarine,2030,investment,2000,EUR/MW/km,Own analysis of European submarine HVDC projects since 2000
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HVDC submarine,2030,lifetime,40,years,Hagspiel
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HVDC submarine,2030,FOM,2,%/year,Hagspiel
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HVDC inverter pair,2030,investment,150000,EUR/MW,Hagspiel
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HVDC inverter pair,2030,lifetime,40,years,Hagspiel
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HVDC inverter pair,2030,FOM,2,%/year,Hagspiel
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electricity distribution grid,2030,investment,500,EUR/kW,TODO
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electricity distribution grid,2030,lifetime,40,years,TODO
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electricity distribution grid,2030,FOM,2,%/year,TODO
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electricity grid connection,2030,investment,140,EUR/kW,DEA
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electricity grid connection,2030,lifetime,40,years,TODO
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electricity grid connection,2030,FOM,2,%/year,TODO
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decentral oil boiler,2030,investment,156.0140915953699,EUR/kWth,Palzer thesis (https://energiesysteme-zukunft.de/fileadmin/user_upload/Publikationen/PDFs/ESYS_Materialien_Optimierungsmodell_REMod-D.pdf) (+eigene Berechnung)
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decentral oil boiler,2030,lifetime,20.0,years,Palzer thesis (https://energiesysteme-zukunft.de/fileadmin/user_upload/Publikationen/PDFs/ESYS_Materialien_Optimierungsmodell_REMod-D.pdf)
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decentral oil boiler,2030,FOM,2.0,%/year,Palzer thesis (https://energiesysteme-zukunft.de/fileadmin/user_upload/Publikationen/PDFs/ESYS_Materialien_Optimierungsmodell_REMod-D.pdf)
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decentral oil boiler,2030,efficiency,0.9,per unit,Palzer thesis (https://energiesysteme-zukunft.de/fileadmin/user_upload/Publikationen/PDFs/ESYS_Materialien_Optimierungsmodell_REMod-D.pdf)
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