Water treatment methods in heavy metals removal during photovoltaic modules recycling: a review

IF 11.2 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Shuang Song , Qiyuan Li , Greg Leslie , Yansong Shen
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Abstract

Delivering efficient, affordable and sustainable water treatment methods in the removal of heavy metals in wastewater often remains a challenge. This paper seeks to alleviate this challenge by reviewing and assessing the viability and efficiency of different water treatment methods within the realm of end-of-life (EoL) photovoltaic (PV) module recycling. Specifically, this paper evaluates the possible designs, pretreatment requirements, efficiency, relative cost and environmental footprint of adsorption, ion exchange and membrane process, applications of physical-chemical and tertiary treatments, to protect the receiving environment and realise treated water reuse in EoL PV module recycling process respectively. The current results suggest that the membrane process is a promising solution to the various heavy metals removal in EoL PV recycling due to its comparatively good performance in efficiency and environmental footprint. Meanwhile, specifical efforts should be put into the development of cost competitiveness membrane that excels in EoL PV recycling. More importantly, exploring the potential combination of different water treatment methods could also greatly broaden the range of solutions available for addressing the existing water issues in EoL PV recycling.

光伏组件回收过程中去除重金属的水处理方法:综述
在去除废水中的重金属方面,提供高效、经济和可持续的水处理方法往往仍是一项挑战。本文试图通过审查和评估不同水处理方法在报废(EoL)光伏(PV)组件回收领域的可行性和效率来缓解这一挑战。具体而言,本文评估了吸附、离子交换和膜工艺的可能设计、预处理要求、效率、相对成本和环境足迹,以及物理化学和三级处理的应用,以分别保护接收环境和实现 EoL 光伏模块回收过程中处理后水的再利用。目前的研究结果表明,膜法工艺在效率和环境足迹方面表现相对较好,是在 EoL 光伏组件回收过程中去除各种重金属的一种可行解决方案。同时,应特别致力于开发在 EoL 光伏回收中具有成本竞争力的膜。更重要的是,探索不同水处理方法的潜在组合也可大大拓宽解决现有 EoL 光伏循环利用中水问题的方案范围。
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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来源期刊
Resources Conservation and Recycling
Resources Conservation and Recycling 环境科学-工程:环境
CiteScore
22.90
自引率
6.10%
发文量
625
审稿时长
23 days
期刊介绍: The journal Resources, Conservation & Recycling welcomes contributions from research, which consider sustainable management and conservation of resources. The journal prioritizes understanding the transformation processes crucial for transitioning toward more sustainable production and consumption systems. It highlights technological, economic, institutional, and policy aspects related to specific resource management practices such as conservation, recycling, and resource substitution, as well as broader strategies like improving resource productivity and restructuring production and consumption patterns. Contributions may address regional, national, or international scales and can range from individual resources or technologies to entire sectors or systems. Authors are encouraged to explore scientific and methodological issues alongside practical, environmental, and economic implications. However, manuscripts focusing solely on laboratory experiments without discussing their broader implications will not be considered for publication in the journal.
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