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Research Article

A 4750 hours’ durability investigation of the PEMFC stack based on fuel cell hybrid vehicles conditions

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Pages 1874-1885 | Received 01 Apr 2023, Accepted 21 Oct 2023, Published online: 09 Nov 2023

References

  • Bayat, M., M. Ozalp, and H. Gurbuz. 2022. Comprehensive performance analysis of a high-temperature PEM fuel cell under different operating and design conditions. Sustainable Energy Technologies and Assessments 52:102232. August. doi:10.1016/j.seta.2022.102232.
  • Bloom, I., J. K. Basco, L. K. Walker, T. Malkow, M. G. De, A. Saturnio, and T. Tsotridis. 2013. Fuel cell testing protocols: An international perspective. doi:10.2790/86676.
  • Bloom, I., L. K. Walker, J. K. Basco, T. Malkow, A. Saturnio, G. De Marco, G. Tsotridis. 2013. A comparison of fuel cell testing protocols – a case study: Protocols used by the U.S. department of energy, European Union, international electrotechnical commission/fuel cell testing and standardization network, and fuel cell technical team. Journal of Power Sources 243:451–57. December. doi:10.1016/j.jpowsour.2013.06.026.
  • Borup, R., J. Meyers, B. Pivovar, Y. S. Kim, R. Mukundan, N. Garland, D. Myers, M. Wilson, F. Garzon, D. Wood, et al. 2007. Scientific aspects of polymer electrolyte fuel cell durability and degradation. Chemical Reviews 107 (10):3904–51. September. doi:10.1021/cr050182l.
  • Chen, H., P. Pei, and M. Song. 2015. Lifetime prediction and the economic lifetime of proton exchange membrane fuel cells. Applied Energy 142:154–63. March. doi:10.1016/j.apenergy.2014.12.062.
  • Chen, H., Z. Song, X. Zhao, T. Zhang, P. Pei, and C. Liang. 2018. A review of durability test protocols of the proton exchange membrane fuel cells for vehicle. Applied Energy 224:289–99. August. doi:10.1016/j.apenergy.2018.04.050.
  • Felgenhauer, M. F., M. A. Pellow, S. M. Benson, and T. Hamacher. 2016. Evaluating co-benefits of battery and fuel cell vehicles in a community in California. Energy 114:360–68. November. doi:10.1016/j.energy.2016.08.014.
  • Hua, Z., Z. Zheng, E. Pahon, M. C. Pera, and F. Gao. 2022. Multi-timescale lifespan prediction for PEMFC systems under dynamic operating conditions. IEEE Transactions on Transportation Electrification 8(1):345–55. August. doi:10.1109/TTE.2021.3103921.
  • Huang, J., D. Yang, F. Chang, and J. X. Ma. 2015. Durability of a fuel cell stack with low hydrogen stoichiometry under driving cycle conditions. Journal of Chemical Engineering of Chinese Universities 29 (6):1364–70. doi:10.3969/j.issn.1003-9015.2015.06.012.
  • Jiao, K., B. Wang, Q. Du, Y. Wang, G. Zhang, Z. Yang, H. Deng, and X. Xie. 2021. Water and thermal management of proton exchange membrane fuel. Elsevier. doi:10.1016/C2020-0-04110-1.
  • Lin, R., B. Li, Y. P. Hou, and J. M. Ma. 2009. Investigation of dynamic driving cycle effect on performance degradation and micro-structure change of PEM fuel cell. International Journal of Hydrogen Energy 34(5):2369–76. March. doi:10.1016/j.ijhydene.2008.10.054.
  • Lu, L., M. Ouyang, H. Huang, P. Pei, and F. Yang. 2007. A semi-empirical voltage degradation model for a low-pressure proton exchange membrane fuel cell stack under bus city driving cycles. Journal of Power Sources 164(1):306–14. January. doi:10.1016/j.jpowsour.2006.10.061.
  • Nagulapati, V. M., S. S. Kumar, V. Annadurai, and H. Lim. 2023. Machine learning based fault detection and state of health estimation of proton exchange membrane fuel cells. Energy and AI 12:100184. November. doi:10.1016/j.egyai.2023.100237.
  • Nandjou, F., J. P. Poirot-Crouvezier, M. Chandesris, J. F. Blachot, C. Bonnaud, and Y. Bultel. 2016. Impact of heat and water management on proton exchange membrane fuel cells degradation in automotive application. Journal of Power Sources 326:182–92. September. doi:10.1016/j.jpowsour.2016.07.004.
  • Nguyen, H. L., J. Han, X. L. Nguyen, S. Yu, Y. M. Goo, and D. D. Le. 2021. Review of the durability of polymer electrolyte membrane fuel cell in long-term operation: Main influencing parameters and testing protocols. Energies 14(13):4048. July. doi:10.3390/en14134048.
  • Nguyen, H. Q., and B. Shabani. 2020. Proton exchange membrane fuel cells heat recovery opportunities for combined heating/cooling and power applications. Energy Conversion and Management 204:112328. January. doi:10.1016/j.enconman.2019.112328.
  • Niu, T., W. Huang, C. Zhang, T. Zeng, J. Chen, Y. Li, and Y. Liu. 2022a. Study of degradation of fuel cell stack based on the collected high-dimensional data and clustering algorithms calculations. Energy and AI 10:100184. November. doi:10.1016/j.egyai.2022.100184.
  • Niu, T., W. Huang, C. Zhang, T. Zeng, J. Chen, Y. Li, and Y. Liu. 2022b. Study of degradation of fuel cell stack based on the collected high-dimensional data and clustering algorithms calculations. Energy and AI 10:100237. April. doi:10.1016/j.egyai.2022.100184.
  • Noto, H., M. Kondo, Y. Otake, and M. Kato. 2009. Development of fuel cell hybrid vehicle by Toyota durability. SAE 2009 Aero Tech Congress and Exhibition. November. doi:10.4271/2009-01-1002.
  • Robin, C., M. Gérard, M. Quinaud, J. d’Arbigny, and Y. Bultel. 2016. Proton exchange membrane fuel cell model for aging predictions: Simulated equivalent active surface area loss and comparisons with durability tests. Journal of Power Sources 326:417–27. September. doi:10.1016/j.jpowsour.2016.07.018.
  • Thompson, S. T., B. D. James, J. M. Huya-Kouadio, C. Houchins, D. A. DeSantis, R. Ahluwalia, A. R. Wilson, G. Kleen, and D. Papageorgopoulos. 2018. Direct hydrogen fuel cell electric vehicle cost analysis: System and high-volume manufacturing description, validation, and outlook. Journal of Power Sources 399:304–13. November. doi:10.1016/j.jpowsour.2018.07.100.
  • Tsinghua University, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Wuhan University of Technology, et al. 2020. Evaluation method for lifetime of proton exchange membrane fuel cell stack in vehicle application. Standardization Administration, GB/T 38914-2020 (In Chinese) 1–15.
  • Wahdame, B., D. Candusso, X. François, F. Harel, M. Pera, D. Hissel, and J. Kauffmann. 2007. Comparison between two PEM fuel cell durability tests performed at constant current and under solicitations linked to transport mission profile. International Journal of Hydrogen Energy 32(17):4523–36. December. doi:10.1016/j.ijhydene.2007.03.013.
  • Wang, Y., K. S. Chen, J. Mishler, S. C. Cho, and X. C. Adroher. 2011. A review of polymer electrolyte membrane fuel cells: Technology, applications, and needs on fundamental research. Applied Energy 88(4):981–1007. April. doi:10.1016/j.apenergy.2010.09.030.
  • Wang, Y., K. Wu, H. Zhao, J. Li, X. Sheng, Y. Yin, Q. Du, B. Zu, L. Han, K. Jiao, et al. 2023. Degradation prediction of proton exchange membrane fuel cell stack using semi-empirical and data-driven methods. Energy and AI 11:100205. January. doi:10.1016/j.egyai.2022.100205.
  • Xu, L., J. Li, U. Reimer, H. Huang, Z. Hu, H. Jiang, H. Janßen, M. Ouyang, and W. Lehnert. 2017. Methodology of designing durability test protocol for vehicular fuel cell system operated in soft run mode based on statistic results of on-road data. International Journal of Hydrogen Energy 42(50):29840–51. December. doi:10.1016/j.ijhydene.2017.10.060.
  • Xu, L., U. Reimer, J. Li, H. Huang, Z. Hu, H. Jiang, H. Janßen, M. Ouyang, and W. Lehnert. 2018. Design of durability test protocol for vehicular fuel cell systems operated in power-follow mode based on statistical results of on-road data. Journal of Power Sources 377:59–69. February. doi:10.1016/j.jpowsour.2017.11.075.
  • Zhou, M., S. Frensch, V. Liso, N. Li, S. L. Sahlin, G. Cinti, and S. Simon Araya. 2022. Modeling the performance degradation of a high-temperature PEM fuel cell. Energies 15(15):5651. August. doi:10.3390/en15155651.

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