Photocatalytic Application of Polymers in Removing Pharmaceuticals from Water: A Comprehensive Review

Catalysts Pub Date : 2024-07-12 DOI:10.3390/catal14070447
S. Armaković, S. Armaković, Maria M. Savanović
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Abstract

This comprehensive review covers recent advancements in utilizing various types of polymers and their modifications as photocatalysts for the removal of pharmaceutical contaminants from water. It also considers polymers that enhance the photocatalytic properties of other materials, highlighting their dual role in improving water purification efficiency. Over the past decades, significant progress has been made in understanding the photocatalytic properties of polymers, including organic, inorganic, and composite materials, and their efficacy in degrading pharmaceuticals. Some of the most commonly used polymers, such as polyaniline, poly(p-phenylene vinylene), polyethylene oxide, and polypyrole, and their properties have been reviewed in detail. Physical modification techniques (mechanical blending and extrusion processing) and chemical modification techniques (nanocomposite formation, plasma modification techniques, surface functionalization, and cross-linking) have been discussed as appropriate for modifying polymers in order to increase their photocatalytic activity. This review examines the latest research findings, including the development of novel polymer-based photocatalysts and their application in the removal of pharmaceutical compounds, as well as optimization strategies for enhancing their performance. Additionally, challenges and future directions in this field are discussed to guide further research efforts.
光催化应用聚合物去除水中的药物:全面综述
本综述介绍了利用各类聚合物及其改性物作为光催化剂去除水中药物污染物的最新进展。本综述还探讨了可增强其他材料光催化特性的聚合物,强调了它们在提高水净化效率方面的双重作用。过去几十年来,人们在了解聚合物(包括有机、无机和复合材料)的光催化特性及其降解药物的功效方面取得了重大进展。一些最常用的聚合物,如聚苯胺、聚对苯二甲酸乙烯、聚环氧乙烷和聚吡咯,以及它们的特性已作了详细介绍。还讨论了物理改性技术(机械混合和挤压加工)和化学改性技术(纳米复合材料的形成、等离子体改性技术、表面功能化和交联),这些技术适用于改性聚合物以提高其光催化活性。本综述探讨了最新的研究成果,包括新型聚合物光催化剂的开发及其在去除药物化合物中的应用,以及提高其性能的优化策略。此外,还讨论了该领域的挑战和未来方向,以指导进一步的研究工作。
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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