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废旧电池的回收技术、政策、前景及挑战

Recycling technologies, policies, prospects, and challenges for spent batteries.

作者信息

Kang Zhuang, Huang Zhixin, Peng Qingguo, Shi Zhiwei, Xiao Huaqiang, Yin Ruixue, Fu Guang, Zhao Jin

机构信息

School of Mechanical Engineering, Guizhou University, Guiyang 550025, China.

Key Laboratory of Advanced Manufacturing Technology of the Ministry of Education, Guizhou University, Guiyang 550025, China.

出版信息

iScience. 2023 Sep 28;26(11):108072. doi: 10.1016/j.isci.2023.108072. eCollection 2023 Nov 17.

Abstract

The recycling of spent batteries is an important concern in resource conservation and environmental protection, while it is facing challenges such as insufficient recycling channels, high costs, and technical difficulties. To address these issues, a review of the recycling of spent batteries, emphasizing the importance and potential value of recycling is conducted. Besides, the recycling policies and strategies implemented in representative countries are summarized, providing legal and policy support for the recycling industry. Moreover, a comprehensive classification and comparison of recycling technologies identify the characteristics and current status of different approaches. The integrated recycling technology provides a better recycling performance with zero-pollution recycling of spent battery. Biorecycling technology is expected to gain a broad development prospect in the future owing to the superiority of energy-saving and environmental protection, high recycling efficiency, via microbial degradation, enzymatic degradation, etc. Consequently, as for the existing recycling challenges of waste batteries, developing new recycling technology and perfecting its recycling system is an indispensable guarantee for the sustainable development of waste battery. Meanwhile, theoretical support is offered for the recycling of spent batteries.

摘要

废旧电池的回收利用是资源节约和环境保护中的一个重要问题,然而它面临着回收渠道不足、成本高以及技术困难等挑战。为了解决这些问题,本文对废旧电池回收利用进行了综述,强调了回收利用的重要性和潜在价值。此外,总结了代表性国家实施的回收政策和策略,为回收行业提供法律和政策支持。而且,对回收技术进行了全面分类和比较,确定了不同方法的特点和现状。综合回收技术实现了废旧电池的零污染回收,具有更好的回收性能。生物回收技术由于具有节能、环保、回收效率高的优势,通过微生物降解、酶降解等方式,有望在未来获得广阔的发展前景。因此,针对废旧电池现有的回收挑战,开发新的回收技术并完善其回收体系是废旧电池可持续发展不可或缺的保障。同时,也为废旧电池的回收利用提供了理论支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21f9/10589888/77d6047444f4/fx1.jpg

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