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Thou shalt drive electric and hybrid vehicles: Scenario analysis on energy saving and emission mitigation for road transportation sector in China

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  • He, Ling-Yun
  • Chen, Yu

Abstract

Road transport today is responsible for a significant and growing share of anthropogenic emissions and energy consumption. This paper attempts to address the possible policy measures to reduce the energy consumption and mitigate the harmful emissions, especially greenhouse gas (GHG) from China's road transportation sector. Five scenarios, which assess electric or/and hybrid vehicles, are designed and examined to estimate the potentials for reducing consumption and emissions. It is concluded that comprehensive and appropriate strategies be promoted to minimize the adverse impacts of China's road vehicles on energy demand and environmental sustainability. For future policy implementation, it is appropriate to promote both high-efficient pure electric and hybrid vehicles simultaneously and improve shares of both types by a wide margin. To be more specific, significant energy saving and emissions reduction can be achieved by promoting electric vehicles in some subsectors (such as Passenger vehicle (PV), Light truck (LT), Bus and Motorcycle (MC)), and by promoting hybrid vehicles in other subsector (Heavy truck (HT)). Our results can provide better insights for both policy makers and practitioners in the field.

Suggested Citation

  • He, Ling-Yun & Chen, Yu, 2013. "Thou shalt drive electric and hybrid vehicles: Scenario analysis on energy saving and emission mitigation for road transportation sector in China," Transport Policy, Elsevier, vol. 25(C), pages 30-40.
  • Handle: RePEc:eee:trapol:v:25:y:2013:i:c:p:30-40
    DOI: 10.1016/j.tranpol.2012.11.006
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    References listed on IDEAS

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    1. Kheir, Naim A & Salman, Mutasim A & Schouten, Niels J, 2004. "Emissions and fuel economy trade-off for hybrid vehicles using fuzzy logic," Mathematics and Computers in Simulation (MATCOM), Elsevier, vol. 66(2), pages 155-172.
    2. Hu, Zhiyuan & Tan, Piqiang & Yan, Xiaoyu & Lou, Diming, 2008. "Life cycle energy, environment and economic assessment of soybean-based biodiesel as an alternative automotive fuel in China," Energy, Elsevier, vol. 33(11), pages 1654-1658.
    3. Ji, Xi & Chen, G.Q. & Chen, B. & Jiang, M.M., 2009. "Exergy-based assessment for waste gas emissions from Chinese transportation," Energy Policy, Elsevier, vol. 37(6), pages 2231-2240, June.
    4. Ou, Xunmin & Zhang, Xiliang & Chang, Shiyan & Guo, Qingfang, 2009. "Energy consumption and GHG emissions of six biofuel pathways by LCA in (the) People's Republic of China," Applied Energy, Elsevier, vol. 86(Supplemen), pages 197-208, November.
    5. Ou, Xunmin & Zhang, Xiliang & Chang, Shiyan, 2010. "Scenario analysis on alternative fuel/vehicle for China's future road transport: Life-cycle energy demand and GHG emissions," Energy Policy, Elsevier, vol. 38(8), pages 3943-3956, August.
    6. He, Kebin & Huo, Hong & Zhang, Qiang & He, Dongquan & An, Feng & Wang, Michael & Walsh, Michael P., 2005. "Oil consumption and CO2 emissions in China's road transport: current status, future trends, and policy implications," Energy Policy, Elsevier, vol. 33(12), pages 1499-1507, August.
    7. Cohen, Joshua T., 2005. "Diesel vs. compressed natural gas for school buses: a cost-effectiveness evaluation of alternative fuels," Energy Policy, Elsevier, vol. 33(13), pages 1709-1722, September.
    8. Zhang, Qingyu & Tian, Weili & Zheng, Yingyue & Zhang, Lili, 2010. "Fuel consumption from vehicles of China until 2030 in energy scenarios," Energy Policy, Elsevier, vol. 38(11), pages 6860-6867, November.
    9. Ou, Xunmin & Zhang, Xiliang & Chang, Shiyan, 2010. "Alternative fuel buses currently in use in China: Life-cycle fossil energy use, GHG emissions and policy recommendations," Energy Policy, Elsevier, vol. 38(1), pages 406-418, January.
    10. Sioshansi, Ramteen & Fagiani, Riccardo & Marano, Vincenzo, 2010. "Cost and emissions impacts of plug-in hybrid vehicles on the Ohio power system," Energy Policy, Elsevier, vol. 38(11), pages 6703-6712, November.
    11. Yan, Xiaoyu & Crookes, Roy J., 2009. "Reduction potentials of energy demand and GHG emissions in China's road transport sector," Energy Policy, Elsevier, vol. 37(2), pages 658-668, February.
    12. Cai, Wenjia & Wang, Can & Wang, Ke & Zhang, Ying & Chen, Jining, 2007. "Scenario analysis on CO2 emissions reduction potential in China's electricity sector," Energy Policy, Elsevier, vol. 35(12), pages 6445-6456, December.
    13. Yan, Xiaoyu & Crookes, Roy J., 2009. "Life cycle analysis of energy use and greenhouse gas emissions for road transportation fuels in China," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(9), pages 2505-2514, December.
    14. Wang, Ke & Wang, Can & Lu, Xuedu & Chen, Jining, 2007. "Scenario analysis on CO2 emissions reduction potential in China's iron and steel industry," Energy Policy, Elsevier, vol. 35(4), pages 2320-2335, April.
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