基于氧化还原液流电池的传输系统,用于增加可再生能源的利用和电动汽车的采用

Hrithu Olickel Arumaraj, R. M. Shereef
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引用次数: 3

摘要

全球迫切需要减少化石燃料的使用,呼吁解决基于可再生能源的电动汽车充电的限制,并立即提高可再生能源的利用率。在此,我们分析了将氧化还原液流电池(RFB)与一种新的电能传输和存储方法相结合在电动汽车上的应用。RFB与锂离子电池的适用性进行了比较。以印度为例,以绿色走廊项目的预算分配为基准进行财务可行性分析。该组合解决方案有利于电动汽车的采用、电网支持倡议和可再生能源的吸收。虽然RFB电解质的能量密度显著增加,但同时粘度的增加是建立该系统的主要挑战。分析表明,需要重点研究开发低粘度RFB电解质,以充分发挥该技术的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Redox flow battery based transmission system for increasing renewable energy utilisation and electric vehicle adoption
The global urgency to decrease fossil fuel usage, calls to address the constraints in renewable energy(RE) based charging of electric vehicles(EV) and increase RE utilisation immediately. Here, we analyse using redox flow battery(RFB) in EVs’ in combination with a novel method of electrical energy transportation and storage. Suitability of RFB for use in the same is examined in comparison to Li-ion battery. Taking India as an example, financial viability analysis is done using budget allocated for the Green corridor project as a benchmark. The combined solution facilitates EV adoption, grid support initiatives and absorption of RE. While energy density of RFB electrolyte has increased significantly the simultaneous increase in viscosity is the major challenge in establishing the system proposed. The analysis demonstrates the need for focused research into developing low viscosity RFB electrolytes to attain the full potential of the technology.
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