FeS-based nanocomposites: A promising approach for sustainable environmental remediation - Focus on adsorption and photocatalysis - A review.

IF 8.4 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Journal of Environmental Management Pub Date : 2025-01-01 Epub Date: 2024-12-18 DOI:10.1016/j.jenvman.2024.123530
Aqsa Nawaz, Aman Khalid, Wajeeha Qayyum, Rabia Bibi, Muhammad Azam Qamar, Muhammad Zahid, Ahmad Farhan, Manoj P Rayaroth, Łukasz Cichocki, Grzegorz Boczkaj
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Abstract

Population expansion, industrialization, urban development, and climate changes increased the water crisis in terms of drinking water availability. Among the various nanomaterials for nanoremediation towards water treatment, FeS-based nanocomposites have emerged as promising candidates in the adsorptive and photocatalytic removal of contaminants. This paper, therefore, evaluates the potential of FeS-based nanocomposites for environmental applications, more specifically the combined use of adsorption and photocatalysis. Pyrite and mackinawite structures outcompeted the other FeS configurations due to their large surface areas, numerous active sites, and enhanced conductivity, factors that enhance the adsorption and photovoltaic processes. To improve photocatalytic performance FeS requires modification with additional materials. Various fabrication strategies (including hydrothermal method, co-precipitation, electrochemical anodization, electrospinning, impregnation, green synthesis, mechanochemical approach/ball milling) of FeS-based composites and their efficacy and the mechanisms for removing organic and inorganic pollutants are reviewed in this paper. The structural characteristics of FeS scaffolds play a crucial role in the effective removal of heavy metals, such as Hg and Cr ions, primarily through ion exchange and surface complexation. Organic pollutants such as methylene blue and tetracycline were effectively degraded by advanced oxidation processes (AOPs). A large scale applications of FeS include industrial wastewater treatment, groundwater remediation towards trichloroethylene and other organic solvents removal, municipal wastewater, oil spills cleanup, pre-treatment for seawater desalination. Current challenges relate to catalysts stability, their removal after treatment stage, recycling, metals leaching and up-scaling as well as high effectiveness in real case-scenario and costs optimization. In summary, this review will help to advance research in the field of environmental remediation using FeS-based nanocomposites.

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基于fes的纳米复合材料:一种有前景的可持续环境修复方法-以吸附和光催化为重点-综述。
人口膨胀、工业化、城市发展和气候变化加剧了饮用水供应方面的水危机。在各种用于水处理的纳米材料中,以 FeS 为基础的纳米复合材料在吸附和光催化去除污染物方面大有可为。因此,本文评估了铁硫基纳米复合材料在环境应用方面的潜力,特别是吸附和光催化的结合使用。黄铁矿和麦饭石结构因其表面积大、活性位点多和导电性强等因素,在吸附和光催化过程中优于其他 FeS 结构。为了提高光催化性能,FeS 需要用其他材料进行改性。本文综述了 FeS 基复合材料的各种制造策略(包括水热法、共沉淀、电化学阳极氧化、电纺丝、浸渍、绿色合成、机械化学法/球磨)及其去除有机和无机污染物的功效和机理。主要通过离子交换和表面络合作用,FeS 支架的结构特征在有效去除汞和铬离子等重金属方面起着至关重要的作用。亚甲基蓝和四环素等有机污染物通过高级氧化工艺(AOPs)得到了有效降解。FeS 的大规模应用包括工业废水处理、去除三氯乙烯和其他有机溶剂的地下水修复、城市污水、溢油清理、海水淡化的预处理。目前面临的挑战涉及催化剂的稳定性、处理阶段后的清除、回收、金属浸出和升级,以及在实际情况下的高效性和成本优化。总之,本综述将有助于推进使用 FeS 基纳米复合材料进行环境修复领域的研究。
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
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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