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基于工业废料的吸附剂作为去除水中新兴污染物的新趋势。

Industrial waste-based adsorbents as a new trend for removal of water-borne emerging contaminants.

作者信息

Rangappa Harsha S, Herath Indika, Lin Chuxia, Ch Subrahmanyam

机构信息

Center for Interdisciplinary Programs, Indian Institute of Technology Hyderabad, Kandi, Sangareddy, 502285, Telangana, India; Centre for Regional and Rural Futures, Faculty of Science, Engineering and Built Environment, Deakin University, Burwood, VIC, 3125 Australia.

Centre for Regional and Rural Futures, Faculty of Science, Engineering and Built Environment, Deakin University, Waurn Ponds, VIC, 3216 Australia.

出版信息

Environ Pollut. 2024 Feb 15;343:123140. doi: 10.1016/j.envpol.2023.123140. Epub 2023 Dec 14.

Abstract

Emerging contaminants in wastewater are one of the growing concerns because of their adverse effects on human health and ecosystems. Adsorption technology offers superior performance due to its cost-effectiveness, stability, recyclability, and reliability in maintaining environmental and health standards for toxic pollutants. Despite extensive research on the use of traditional adsorbents to remove emerging contaminants, their expensiveness, lack of selectivity, and complexity of regeneration remain some of the challenges. Industrial wastes viz. blast furnace slag, red mud, and copper slag can be used to develop efficacious adsorbents for the treatment of emerging contaminants in water. Advantages of the use of such industrial wastes include resource utilization, availability, cost-effectiveness, and waste management. Nevertheless, little is known so far about their application, removal efficacy, adsorption mechanisms, and limitations in the treatment of emerging contaminants. A holistic understanding of the application of such unique industrial waste-derived adsorbents in removing emerging contaminants from water is need of the hour to transform this technology from bench-scale to pilot and large-scale applications. This review investigates different water treatment techniques associated with industrial waste-based adsorbents derived from blast furnace slag, red mud, and copper slag. Besides, this review provides important insights into the growing trends of utilizing such novel types of adsorbents to remove emerging contaminants from water with an emphasis on removal efficacy, controlling measures, adsorption mechanisms, advantages, and limitations. The present timely review brings the current state of knowledge into a single reference which could be a strong platform for future research in understanding the latest advancements, decision making, and financial management related to the treatment of wastewater using industrial waste-based adsorbents.

摘要

废水中的新兴污染物因其对人类健康和生态系统的不利影响而日益受到关注。吸附技术因其成本效益、稳定性、可回收性以及在维持有毒污染物的环境和健康标准方面的可靠性而具有卓越性能。尽管对使用传统吸附剂去除新兴污染物进行了广泛研究,但其昂贵的成本、缺乏选择性以及再生的复杂性仍然是一些挑战。工业废料,如高炉矿渣、赤泥和铜渣,可用于开发有效的吸附剂来处理水中的新兴污染物。使用此类工业废料的优点包括资源利用、可用性、成本效益和废物管理。然而,到目前为止,对于它们在处理新兴污染物方面的应用、去除效果、吸附机制和局限性知之甚少。当下亟需全面了解此类独特的工业废料衍生吸附剂在从水中去除新兴污染物方面的应用,以便将该技术从实验室规模转化为中试和大规模应用。本综述研究了与源自高炉矿渣、赤泥和铜渣的工业废料基吸附剂相关的不同水处理技术。此外,本综述提供了重要见解,阐述了利用此类新型吸附剂从水中去除新兴污染物的发展趋势,重点关注去除效果、控制措施、吸附机制、优点和局限性。本次及时的综述将当前的知识状态整合到一个单一的参考文献中,这可能成为未来研究的有力平台,有助于理解使用工业废料基吸附剂处理废水的最新进展、决策制定和财务管理。

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