用于废水净化的有机光催化剂

IF 12.8 1区 化学 Q1 CHEMISTRY, PHYSICAL
Zhaoyi Mo, Zhongquan Zhao, Hong Miao
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引用次数: 0

摘要

废水中的抗生素污染由于其对人类健康和生态系统的潜在影响而日益受到关注。传统的废水处理方法往往不能充分去除抗生素,主要是由于这些有机化合物的高化学稳定性和废水环境的复杂性。综述了近年来利用有机半导体光催化剂降解废水中抗生素的研究进展。我们提供了各种有机半导体材料及其光催化性能的关键分析,强调了它们在不同条件下的效率和抗生素降解的机制。研究结果表明,这些有机半导体材料具有在水生环境中实现高降解率、低能耗和高效去除抗生素污染物的潜力。本文强调了发展先进的光催化方法作为抗生素污染可持续解决方案的重要性,并强调了有机超分子光催化剂在改善废水处理过程中的作用。最后,概述了有机半导体光催化材料在畜牧业废水中去除污染物方面的发展趋势和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Organic photocatalysts for wastewater decontamination
Antibiotic contamination in wastewater has become a concern increasingly due to its potential impact on human health and ecosystems. Conventional wastewater treatment methods often fail to remove antibiotics adequately, primarily due to the high chemical stability of these organic compounds and the complexity of wastewater environments. This review summarizes recent progress in the use of organic semiconductor photocatalysts for the degradation of antibiotics in wastewater. We provide a critical analysis of various organic semiconductor materials and their photocatalytic performances, emphasizing their efficiencies under different conditions and the mechanisms of antibiotic degradation. The findings suggest that these organic semiconductor materials have the potential to achieve high degradation rates, low energy consumption, and efficient removal of antibiotic pollutants in aquatic environments. This review emphasizes the importance of developing advanced photocatalytic methods as sustainable solutions for antibiotic contamination and underscores the role of organic supramolecular photocatalysts in improving wastewater treatment processes. Finally, we outline the future development trends and prospects of organic semiconductor photocatalytic materials for removing pollutants from livestock wastewater.
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来源期刊
CiteScore
21.90
自引率
0.70%
发文量
36
审稿时长
47 days
期刊介绍: The Journal of Photochemistry and Photobiology C: Photochemistry Reviews, published by Elsevier, is the official journal of the Japanese Photochemistry Association. It serves as a platform for scientists across various fields of photochemistry to communicate and collaborate, aiming to foster new interdisciplinary research areas. The journal covers a wide scope, including fundamental molecular photochemistry, organic and inorganic photochemistry, photoelectrochemistry, photocatalysis, solar energy conversion, photobiology, and more. It provides a forum for discussing advancements and promoting collaboration in the field of photochemistry.
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