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수소연료전지차의 도입이 무역에 미치는 효과 분석에 관한 연구

A Study on the Effects of Supply of Fuel Cell Electric Vehicles(FCEV) on Trade

  • 오수영 (인천대학교 동북아물류대학원) ;
  • 이향숙 (인천대학교 동북아물류대학원)
  • Soo-Young Oh (Graudate School of Logistics, Incheon National University) ;
  • Hyang-Sook Lee (Graudate School of Logistics, Incheon National University)
  • 투고 : 2021.11.24
  • 심사 : 2022.02.26
  • 발행 : 2022.02.28

초록

This study analyzes FCEV among measures to respond to climate change policies. In particular, it proposes alternatives to solve this problem in the trade industry, which relies on transportation sectors with high greenhouse gas emissions such as exports and imports of goods. Therefore, when FCEV is introduced in the transportation sector, changes in CO2 emissions, a greenhouse gas, and changes in logistics costs for changes in CO2 emissions are set through scenarios to evaluate the impact on product trade, such as imports and exports. As a result, the increase in logistics costs due to carbon dioxide emissions affected the import and export volume of goods, and when FCEV was introduced, the export volume would increase by up to 5.6%, and the import volume by up to 30%. In addition, CO2 emissions decreased to about 60% in 2050. Therefore, the introduction of FCEV in the transportation sector will greatly contribute to increasing sales in the trading industry and will be able to solve environmental problems such as greenhouse gas reduction.

키워드

과제정보

This research was supported by the 4th Educational Training Program for the Shipping, Port and Logistics from the Ministry of Oceans and Fisheries.

참고문헌

  1. 2050 Carbon Neutral Committee(2021), 2050 Carbon Neutral Scenario.
  2. Choi, Do-Young (2010), A Study on the Regulation of Automobile Fuel economy and Greenhouse Gas, Korea Energy Ecomomics Institute, 10(35).
  3. Granovskii, M., Dincer, I., & Rosen, M. A. (2006). Economic and environmental comparison of conventional, hybrid, electric and hydrogen fuel cell vehicles. Journal of Power Sources, 159(2), 1186-1193. https://doi.org/10.1016/j.jpowsour.2005.11.086
  4. Guo, Z., Li, T., Peng, S., & Zhang, H. (2021). Environmental and economic consequences of the incentive policy on electric vehicle industry: A CGE based study in China. Resources, Conservation and Recycling, 169, 105542.
  5. Hong, Sung-Wook(2017), A study on the establishment of an export outlook model through the analysis of export determinants by country and economic zone, Korea Institute for Industrial Economics & Trade.
  6. Hwang, Sang-Guk(2005), The Bank of Korea Quarterly Reconstruction of the Macroeconometric Model, Bank of Korea.
  7. IPCC(2018), Special Report Global Warming of 1.5 ℃.
  8. Kim, I., Kim, J., & Lee, J. (2020). Dynamic analysis of well-to-wheel electric and hydrogen vehicles greenhouse gas emissions: Focusing on consumer preferences and power mix changes in South Korea. Applied Energy, 260, 114281.
  9. Kim, Jae-Kyung (2019), A Policy Study to Promote Eco-friendly CO2-free Hydrogen Production, Korea Energy Ecomomics Institute, 18(6).
  10. Lee, Sung-Won(2000), Estimation of price elasticity of domestic air demand based on the State Preference methodology, Korean Society of Transportation, 18(1), 27-34.
  11. Li, Y., & Kimura, S. (2021). Economic competitiveness and environmental implications of hydrogen energy and fuel cell electric vehicles in ASEAN countries: The current and future scenarios. Energy Policy, 148, 111980.
  12. Li, Y., & Taghizadeh-Hesary, F. (2022). The economic feasibility of green hydrogen and fuel cell electric vehicles for road transport in China. Energy Policy, 160, 112703.
  13. McKinsey(2018), Korea's Hydrogen Country Roadmap: Korea's future hydrogen economy vision and roadmaps and suggestions to achieve it.
  14. Ministry of Environment(2019), National Greenhouse Gas Inventory Report of Korea.
  15. Oldenbroek, V., Wijtzes, S., Blok, K., & van Wijk, A. J. (2021). Fuel cell electric vehicles and hydrogen balancing 100 percent renewable and integrated national transportation and energy systems. Energy Conversion and Management: X, 9, 100077.
  16. Park Kwang-So(2010), A Study on the Improvement of Korean Logistics Policies, The International Commerce & Law Review, 45, 139-163.
  17. Salkuyeh, Y. K., B. A. Saville and H. L. MacLean(2017), Techno-economic analysis and life cycle assessment of hydrogen production from natural gas using current and emerging technologies, International Journal of hydrogen energy Vol. 42, pp. 18894-18909. https://doi.org/10.1016/j.ijhydene.2017.05.219
  18. Shin, J., Hwang, W. S., & Choi, H. (2019). Can hydrogen fuel vehicles be a sustainable alternative on vehicle market?: Comparison of electric and hydrogen fuel cell vehicles. Technological Forecasting and Social Change, 143, 239-248. https://doi.org/10.1016/j.techfore.2019.02.001
  19. Song, Z., Pan, Y., Chen, H., & Zhang, T. (2021). Effects of temperature on the performance of fuel cell hybrid electric vehicles: A review. Applied Energy, 302, 117572.
  20. Vijay Mahajan et al.(1985), Models for Innovation Diffusion, SAGE Publications.