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羟基磷灰石纳米复合材料在吸附和光催化降解去除重金属和有机污染物方面的高级应用:综述。

Advanced applications of hydroxyapatite nanocomposite materials for heavy metals and organic pollutants removal by adsorption and photocatalytic degradation: A review.

机构信息

Laboratory of Materials, Processes, Catalysis, and Environment, Higher School of Technology, University Sidi Mohamed Ben Abdellah, Fez-Morocco, Morocco; Ministry of Health and Social Protection, Higher Institute of Nursing Professions and Health Techniques, Fez-Morocco, Morocco.

Laboratory of Applied Chemistry and Environment, Faculty of Sciences, Ibn Zohr University, 80000, Agadir, Morocco.

出版信息

Chemosphere. 2024 Jun;358:142236. doi: 10.1016/j.chemosphere.2024.142236. Epub 2024 May 3.

Abstract

This comprehensive review delves into the forefront of scientific exploration, focusing on hydroxyapatite-based nanocomposites (HANCs) and their transformative role in the adsorption of heavy metals (HMs) and organic pollutants (OPs). Nanoscale properties, including high surface area and porous structure, contribute to the enhanced adsorption capabilities of HANCs. The nanocomposites' reactive sites facilitate efficient contaminant interactions, resulting in improved kinetics and capacities. HANCs exhibit selective adsorption properties, showcasing the ability to discriminate between different contaminants. The eco-friendly synthesis methods and potential for recyclability position the HANCs as environmentally friendly solutions for adsorption processes. The review acknowledges the dynamic nature of the field, which is characterized by continuous innovation and a robust focus on ongoing research endeavors. The paper highlights the HANCs' selective adsorption capabilities of various HMs and OPs through various interactions, including hydrogen and electrostatic bonding. These materials are also used for aquatic pollutants' photocatalytic degradation, where reactive hydroxyl radicals are generated to oxidize organic pollutants quickly. Future perspectives explore novel compositions, fabrication methods, and applications, driving the evolution of HANCs for improved adsorption performance. This review provides a comprehensive synthesis of the state-of-the-art HANCs, offering insights into their diverse applications, sustainability aspects, and pivotal role in advancing adsorption technologies for HMs and OPs.

摘要

这篇全面的综述深入探讨了科学探索的前沿领域,重点关注基于羟基磷灰石的纳米复合材料(HANCs)及其在重金属(HMs)和有机污染物(OPs)吸附方面的变革作用。纳米级特性,包括高表面积和多孔结构,有助于提高 HANCs 的吸附能力。纳米复合材料的反应位点促进了污染物的有效相互作用,从而提高了动力学和容量。HANCs 表现出选择性吸附特性,能够区分不同的污染物。环保的合成方法和潜在的可回收性使 HANCs 成为吸附过程的环保解决方案。该综述承认该领域的动态性质,其特点是不断创新和对持续研究努力的强烈关注。本文通过各种相互作用,如氢键和静电键合,突出了 HANCs 对各种 HMs 和 OPs 的选择性吸附能力。这些材料还用于水污染物的光催化降解,其中生成活性羟基自由基以快速氧化有机污染物。未来的研究方向探索了新型组成、制造方法和应用,推动了 HANCs 的发展,以提高吸附性能。本综述对 HANCs 的最新技术进行了全面综合,为其多样化的应用、可持续性方面以及在推进 HMs 和 OPs 吸附技术方面的关键作用提供了深入的见解。

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