Adsorption and desorption processes of toxic heavy metals, regeneration and reusability of spent adsorbents: Economic and environmental sustainability approach

IF 15.9 1区 化学 Q1 CHEMISTRY, PHYSICAL Advances in Colloid and Interface Science Pub Date : 2024-05-19 DOI:10.1016/j.cis.2024.103196
Jonas Bayuo , Mwemezi J. Rwiza , Joon Weon Choi , Kelvin Mark Mtei , Ahmad Hosseini-Bandegharaei , Mika Sillanpää
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Abstract

A growing number of variables, including rising population, water scarcity, growth in the economy, and the existence of harmful heavy metals in the water supply, are contributing to the increased demand for wastewater treatment on a global scale. One of the innovative water treatment technologies is the adsorptive removal of heavy metals through the application of natural and engineered adsorbents. However, adsorption currently has setbacks that prevent its wider application for heavy metals sequestration from aquatic environments using various adsorbents, including difficulty in selecting suitable desorption eluent to recover adsorbed heavy metals and regeneration techniques to recycle the spent adsorbents for further use and safe disposal. Therefore, the recovery of adsorbed heavy metal ions and the ability to reuse the spent adsorbents is one of the economic and environmental sustainability approaches. This study presents a state-of-the-art critical review of different desorption agents that could be used to retrieve heavy metals and regenerate the spent adsorbents for further adsorption-desorption processes. Additionally, an attempt was made to discuss and summarize some of the independent factors influencing heavy metals desorption, recovery, and adsorbent regeneration. Furthermore, isotherm and kinetic modeling have been summarized to provide insights into the adsorption-desorption mechanisms of heavy metals. Finally, the review provided future perspectives to provide room for researchers and industry players who are interested in heavy metals desorption, recovery, and spent adsorbents recycling to reduce the high cost of adsorbents reproduction, minimize secondary waste generation, and thereby provide substantial economic and environmental benefits.

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有毒重金属的吸附和解吸过程、废吸附剂的再生和再利用:经济和环境可持续性方法
人口增长、水资源短缺、经济增长以及供水中存在有害重金属等变量的不断增加,导致全球范围内对废水处理的需求不断增加。创新水处理技术之一是通过应用天然和工程吸附剂吸附去除重金属。然而,吸附技术目前还存在一些问题,阻碍了其在利用各种吸附剂从水生环境中吸附重金属方面的广泛应用,其中包括难以选择合适的解吸洗脱剂来回收吸附的重金属,以及难以采用再生技术来回收废旧吸附剂以便进一步使用和安全处置。因此,回收吸附的重金属离子并对废吸附剂进行再利用是实现经济和环境可持续发展的方法之一。本研究对可用于回收重金属和再生废吸附剂以进一步进行吸附-解吸过程的不同解吸剂进行了最新的严格审查。此外,还试图讨论和总结影响重金属解吸、回收和吸附剂再生的一些独立因素。此外,还总结了等温线和动力学模型,以便深入了解重金属的吸附-解吸机制。最后,综述提供了未来展望,为对重金属解吸、回收和废吸附剂循环利用感兴趣的研究人员和行业参与者提供了空间,以降低吸附剂再生的高昂成本,最大限度地减少二次废物的产生,从而提供可观的经济和环境效益。
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来源期刊
CiteScore
28.50
自引率
2.60%
发文量
175
审稿时长
31 days
期刊介绍: "Advances in Colloid and Interface Science" is an international journal that focuses on experimental and theoretical developments in interfacial and colloidal phenomena. The journal covers a wide range of disciplines including biology, chemistry, physics, and technology. The journal accepts review articles on any topic within the scope of colloid and interface science. These articles should provide an in-depth analysis of the subject matter, offering a critical review of the current state of the field. The author's informed opinion on the topic should also be included. The manuscript should compare and contrast ideas found in the reviewed literature and address the limitations of these ideas. Typically, the articles published in this journal are written by recognized experts in the field.
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