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Pathways Toward Enhanced Techno-Economic Performance of Flow Battery Systems in Energy System Applications

机译:能量系统应用中提高流动电池系统技术经济性能的途径

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摘要

Redox flow batteries have shown great potential for a wide range of applications in future energy systems. However, the lack of a deep understanding of the key drivers of the techno-economic performance of different flow battery technologies-and how these can be improved-is a major barrier to wider adoption of these battery technologies. This study analyzes these drivers and provides an extensive comparison of four flow battery technologies, including the all-vanadium redox (VRB), iron-chromium, zinc-bromine, and polysulfide-bromine flow batteries, by examining their current and projected techno-economic performances. We address the potential for performance improvements and resulting cost reduction by developing a component-based learning curve model. The model considers the near-term learning rates for various subcomponents of each of the four battery technologies as well as their technological improvements. The results show that (i) both technological improvements in the performance parameters as well as mass production effects could drive significant cost reductions for flow battery systems; (ii) flow battery systems could be cost-effective in a variety of energy system applications in the near future; and (iii) from a techno-economic perspective, VRB systems are more suitable for the applications that require low energy and high power capacities.
机译:氧化还原流量电池对未来能源系统中广泛应用的巨大潜力。然而,缺乏对不同流动电池技术的技术经济性能的关键驱动因素的深刻理解 - 以及如何改进 - 是宽泛采用这些电池技术的主要障碍。本研究通过检查其当前和预计的技术经济,分析了这些驱动因素,并提供了四种流动电池技术,包括全钒氧化还原(VRB),铁 - 铬,溴 - 溴和聚硫化物 - 溴流电池表演。通过开发基于组件的学习曲线模型,我们解决了性能改进的潜力,并导致成本降低。该模型考虑了四种电池技术中每一种的各种子组件的近期学习率以及它们的技术改进。结果表明,(i)性能参数的技术改进以及批量生产效果可以推动流量电池系统的显着降低; (ii)流量电池系统在不久的将来,在各种能量系统应用中可能具有成本效益; (iii)从技术经济的角度来看,VRB系统更适合需要低能量和高功率容量的应用。

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    Zhejiang Univ Inst Thermal Sci &

    Power Syst State Key Lab Clean Energy Utilizat Sch Energy Engn Zheda Rd 38 Hangzhou 310027 Zhejiang Peoples R China;

    Zhejiang Univ Sch Energy Engn Inst Thermal Sci &

    Power Syst Zheda Rd 38 Hangzhou 310027 Zhejiang Peoples R China;

    Columbia Univ Earth Inst Columbia Climate Ctr New York NY 10025 USA;

    Zhejiang Univ Sch Energy Engn State Key Lab Clean Energy Utilizat Zheda Rd 38 Hangzhou 310027 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 电化学工业;
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