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从废水中去除和回收有毒和有价值金属的可持续和高效技术:最新进展、挑战和未来展望。

Sustainable and efficient technologies for removal and recovery of toxic and valuable metals from wastewater: Recent progress, challenges, and future perspectives.

机构信息

Microcellular Plastics Manufacturing Laboratory (MPML), Department of Mechanical and Industrial Engineering, Faculty of Applied Science and Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, M5S 3G8, Canada; Institute for Water Innovation (IWI), Faculty of Applied Science and Engineering, University of Toronto, 55 St. George Street, Toronto, Ontario, M5S 1A4, Canada.

Microcellular Plastics Manufacturing Laboratory (MPML), Department of Mechanical and Industrial Engineering, Faculty of Applied Science and Engineering, University of Toronto, 5 King's College Road, Toronto, Ontario, M5S 3G8, Canada; Institute for Water Innovation (IWI), Faculty of Applied Science and Engineering, University of Toronto, 55 St. George Street, Toronto, Ontario, M5S 1A4, Canada; State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin, Heilongjiang, China.

出版信息

Chemosphere. 2022 Apr;292:133102. doi: 10.1016/j.chemosphere.2021.133102. Epub 2021 Dec 13.

Abstract

Due to their numerous effects on human health and the natural environment, water contamination with heavy metals and metalloids, caused by their extensive use in various technologies and industrial applications, continues to be a huge ecological issue that needs to be urgently tackled. Additionally, within the circular economy management framework, the recovery and recycling of metals-based waste as high value-added products (VAPs) is of great interest, owing to their high cost and the continuous depletion of their reserves and natural sources. This paper reviews the state-of-the-art technologies developed for the removal and recovery of metal pollutants from wastewater by providing an in-depth understanding of their remediation mechanisms, while analyzing and critically discussing the recent key advances regarding these treatment methods, their practical implementation and integration, as well as evaluating their advantages and remaining limitations. Herein, various treatment techniques are covered, including adsorption, reduction/oxidation, ion exchange, membrane separation technologies, solvents extraction, chemical precipitation/co-precipitation, coagulation-flocculation, flotation, and bioremediation. A particular emphasis is placed on full recovery of the captured metal pollutants in various reusable forms as metal-based VAPs, mainly as solid precipitates, which is a powerful tool that offers substantial enhancement of the remediation processes' sustainability and cost-effectiveness. At the end, we have identified some prospective research directions for future work on this topic, while presenting some recommendations that can promote sustainability and economic feasibility of the existing treatment technologies.

摘要

由于重金属和类金属在各种技术和工业应用中广泛使用,对人类健康和自然环境造成了众多影响,因此,受其污染的水仍然是一个亟待解决的巨大生态问题。此外,在循环经济管理框架内,基于金属的废物作为高附加值产品(VAP)的回收和再循环引起了极大的关注,这是因为它们的成本高,储备量和自然资源不断减少。本文综述了为从废水中去除和回收金属污染物而开发的最新技术,通过深入了解其修复机制,分析和批判性讨论这些处理方法的最新关键进展,以及它们的实际实施和整合,并评估它们的优点和剩余的局限性。本文涵盖了各种处理技术,包括吸附、还原/氧化、离子交换、膜分离技术、溶剂萃取、化学沉淀/共沉淀、混凝-絮凝、浮选和生物修复。特别强调以各种可重复使用的金属基 VAP 形式(主要是固体沉淀物)来完全回收捕获的金属污染物,这是一种强大的工具,可以极大地增强修复过程的可持续性和成本效益。最后,我们确定了一些针对该主题未来工作的前瞻性研究方向,并提出了一些建议,以促进现有处理技术的可持续性和经济可行性。

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