Volume 36 Issue 3
Jun.  2022
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WANG Yanhong, FU Gangzhan. Total cost of ownership of fuel cell vehicles in China under carbon neutral target scenario[J]. Journal of Shanghai University of Engineering Science, 2022, 36(3): 249-260. doi: 10.12299/jsues.22-0029
Citation: WANG Yanhong, FU Gangzhan. Total cost of ownership of fuel cell vehicles in China under carbon neutral target scenario[J]. Journal of Shanghai University of Engineering Science, 2022, 36(3): 249-260. doi: 10.12299/jsues.22-0029

Total cost of ownership of fuel cell vehicles in China under carbon neutral target scenario

doi: 10.12299/jsues.22-0029
  • Received Date: 2022-02-22
  • Publish Date: 2022-06-30
  • In the carbon neutral target scenario, a calculation model for total cost of ownership (TCO) of fuel cell vehicles was developed, and the learning curve theory was applied to predict the cost trend of the key components of fuel cell vehicles. The future cost of hydrogen production for the current mainstream technology path was predicted. TCO was used to represent the future cost trend, competitiveness and key influencing factors of China’s fuel cell vehicles.

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  • [1]
    McKinsey & Company. A portfolio of power-trains for Europe: A fact based analysis[J]. [S.l.: s.n.], 2010.
    [2]
    JAMES B D, HUYA-KOUADIO J M, HOUCHINS C, et al. Mass production cost estimation of direct H2 PEM fuel cell systems for transportation applications (2012—2016)[R]. Arlington: Strategic Analysis Inc., 2016.
    [3]
    COX B, BAUER C, BELTRAN A M, et al. Life cycle environmental and cost comparison of current and future passenger cars under different energy scenarios[J] . Applied Energy,2020,269:115021. doi: 10.1016/j.apenergy.2020.115021
    [4]
    MAO S Y, BASMA H, RAGON P L, et al. Total cost of ownership for heavy trucks in China: Battery electric, fuel cell, and diesel trucks[R]. Washington: International Council on Clean Transportation, 2021.
    [5]
    陈志祥. 学习曲线及在工业生产运作研究中的应用综述[J] . 中国工程科学,2007(7):82 − 88,94.
    [6]
    IEA. Entering the decade of electric drive[J]. Paris: International Energy Agency, 2020.
    [7]
    DOE U. Multiyear research development and demonstration plan: planned program activities for 2011—2020[J] . Office DFCT,2017,3:4.
    [8]
    KÖRNER A, TAM C, BENNETT S, et al. Technology roadmap-hydrogen and fuel cells[J]. Paris: International Energy Agency, 2015.
    [9]
    MARCINKOSKI J, VIJAYAGOPAL R, ADAMS J, et al. DOE advanced truck technologies: Subsection of the electrified powertrain roadmap technical targets for hydrogen-fueled long-haul tractor-trailer trucks[EB/OL]. (2019-10-31)[2022-01-30]. https://www.hydrogen.energy.gov/pdfs/19006_hydrogen_class8_long_haul_truck_targ ets. pdf.
    [10]
    MAYER T, KREYENBERG D, WIND J, et al. Feasibility study of 2020 target costs for PEM fuel cells and lithium-ion batteries: A two-factor experience curve approach[J] . International Journal of Hydrogen Energy,2012,37(19):14463 − 14474. doi: 10.1016/j.ijhydene.2012.07.022
    [11]
    NYKVIST B R, NILSSON M N. Rapidly falling costs of battery packs for electric vehicles[J] . Nature Climate Change,2015,5(4):329 − 332. doi: 10.1038/nclimate2564
    [12]
    National Research Council. Transitions to alternative vehicles and fuels[M]. Washington: National Academies Press, 2013.
    [13]
    BOUCKAERT S, PALES A F, MCGLADE C, et al. Net zero by 2050: A roadmap for the global energy sector[R]. Washington: IEA, 2021.
    [14]
    Hydrogen and Fuel Cell Technologies Office. DOE H2A Analysis[EB/OL].[2021-12-20]. https://www.energy.gov/eere/fuelcells/doe-h2a-analysis.
    [15]
    CHINA E R I. 2050 High renewable energy penetration scenario and roadmap study[R]. Beijing: Energy Research Institute, 2015.
    [16]
    国家发改委能源研究所, 隆基股份, 山西煤业化工集团. 中国2050年光伏发展展望[C]//Proceedings of UNFCCC COP25. Madrid: United Nations Climate Change Conference, 2019.
    [17]
    International Renewable Energy Agency. Green hydrogen cost reduction: Scaling up electrolysers to meet the 1.5 ℃ climate goal[R]. Abu Dhabi: International Renewable Energy Agency, 2020.
    [18]
    CRETI A , KOTELNIKOVA A , MEUNIER G, et al. A cost benefit analysis of fuel cell electric vehicles[EB/OL]. [2021-12-20]. https://hal.archives-ouvertes.fr/hal-01116997.
    [19]
    [20]
    KÖRNER A, TAM C, BENNETT S, et al. Technology roadmap: Hydrogen and fuel cells[R]. Paris: International Energy Agency, 2015.
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