退役电动汽车电池在二次使用中重新利用的技术经济可行性:系统综述

IF 5.8 Q2 ENERGY & FUELS Energy and climate change Pub Date : 2022-12-01 DOI:10.1016/j.egycc.2022.100086
Mohammed Khalifa Al-Alawi, James Cugley, Hany Hassanin
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引用次数: 9

摘要

随着交通运输行业脱碳的全球目标和新电动汽车(EV)车主的显著增加,人们对退役电动汽车电池(REVB)达到其原始容量70-80%时暴露在环境中的预期数量表示担忧。然而,在拆卸后,REVB有很大的潜力为其他应用提供能源,如储存剩余能源。本系统综述评估了专注于在第二生命应用中重新利用REVB的最新建模/实验研究。在技术上和经济上,REVB重新利用的可行性已经得到证实,可以解决清洁能源技术的不可靠性,并减轻新存储系统的高投资。40%的纳入研究认为以光伏为主导技术的混合系统,其中REVB被评估为小型和大型存储系统。此外,对REVB在提供网格服务方面的性能进行了成功的评估。然而,人们发现,由于工作要求苛刻,频率调节等密集电网服务应用在技术上具有挑战性。经过审查的研究认为,由于缺乏对REVB转售的市场监管,REVB的价格不同;同样,由于缺乏标准化,包括初始健康状态(SoH)和充电状态(SoC)限制在内的技术参数也不一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Techno-economic feasibility of retired electric-vehicle batteries repurpose/reuse in second-life applications: A systematic review

In line with the global target in decarbonising the transportation sector and the noticeable increase of new electric vehicles (EV) owners, concerns are raised regarding the expected quantity of Retired EV Batteries (REVB) exposed to the environment when they reach 70–80% of their original capacity. However, there is significant potential for REVB, after deinstallation, to deliver energy for alternative applications such as storing surplus. This systematic review evaluates state-of-art modelling/experimental studies focused on repurposing REVB in second-life applications. Technical and economic viability of REVB repurposing has been confirmed to solve the unreliability of cleaner energy technologies and mitigate the high investment of new storage systems. 40% of included studies considered hybrid systems with PV being a dominant technology where REVB was evaluated to be small-scaled and large storage systems. Additionally, successful attempts were conducted to evaluate REVB performance in providing grid services. It has however, been discovered intensive grid services applications like frequency regulation, was technically challenging due to demanding working requirements. Reviewed studies considered different prices for REVB due to lack of market regulation on REVB resale; similarly, technical parameters, including initial State of Health (SoH) and State of Charge (SoC) constraints were inconsistent due to lack of standardisation.

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来源期刊
Energy and climate change
Energy and climate change Global and Planetary Change, Renewable Energy, Sustainability and the Environment, Management, Monitoring, Policy and Law
CiteScore
7.90
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0.00%
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0
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