A Complete Method for Evaluating the Performance of Photocatalysts for the Degradation of Antibiotics in Environmental Remediation.

IF 1.2 4区 综合性期刊 Q3 MULTIDISCIPLINARY SCIENCES
Bing Wang, XuXia Zhang, LeCheng Li, MengTing Ji, Zheng Zheng, ChuanHui Shi, Zhuo Li, Hong Hao
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引用次数: 2

Abstract

Various antibiotics such as tetracycline, aureomycin, amoxicillin, and levofloxacin are found in large quantities in groundwater and soil systems, potentially leading to the development of resistant and multi-drug resistant bacteria, posing a threat to humans, animals, and environmental systems. Photocatalytic technology has attracted keen interest due to its rapid and stable treatment and direct use of solar energy. However, most studies evaluating the performance of semiconductor catalysts for the photocatalytic degradation of organic pollutants in water are currently incomplete. In this paper, a complete experimental protocol is designed to comprehensively evaluate the photocatalytic performance of semiconductor catalysts. Herein, rhombic dodecahedral silver phosphate was prepared by a simple solvent phase synthesis method at room temperature and atmospheric pressure. BrSubphthalocyanine/Ag3PO4 heterojunction materials were prepared by the solvothermal method. The catalytic performance of as-prepared materials for the degradation of tetracycline was evaluated by studying different influencing factors such as catalyst dosage, temperature, pH, and anions at atmospheric pressure using a 300 W xenon lamp as a simulated solar light source and a light intensity of 350 mW/cm2. Compared with the first cycle, the constructed BrSubphthalocyanine/Ag3PO4 maintained 82.0% of the original photocatalytic activity after five photocatalytic cycles, while the pristine Ag3PO4 maintained only 28.6%. The stability of silver phosphate samples was further tested by a five-cycle experiment. This paper provides a complete process for evaluating the catalytic performance of semiconductor catalysts in the laboratory for the development of semiconductor catalysts with potential for practical applications.

环境修复中光催化剂降解抗生素性能的完整评价方法。
地下水和土壤系统中大量存在四环素、金霉素、阿莫西林和左氧氟沙星等各种抗生素,可能导致耐药和多重耐药细菌的发展,对人类、动物和环境系统构成威胁。光催化技术以其快速稳定的处理和直接利用太阳能等优点而受到人们的广泛关注。然而,目前评价半导体催化剂光催化降解水中有机污染物性能的研究大多不完整。本文设计了一套完整的实验方案,以全面评价半导体催化剂的光催化性能。在常温常压下,采用简单的溶剂相合成方法制备了磷酸银的菱形十二面体。采用溶剂热法制备了BrSubphthalocyanine/Ag3PO4异质结材料。以300 W氙灯为模拟太阳光源,光强为350 mW/cm2,研究催化剂用量、温度、pH、阴离子等因素对制备的材料降解四环素的催化性能的影响。与第一次循环相比,经过5次光催化循环后,构建的BrSubphthalocyanine/Ag3PO4的光催化活性保持了82.0%,而原始Ag3PO4仅保持了28.6%。通过五循环实验进一步测试了磷酸银样品的稳定性。本文为开发具有实际应用潜力的半导体催化剂提供了一个在实验室中评价半导体催化剂催化性能的完整过程。
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
Jove-Journal of Visualized Experiments
Jove-Journal of Visualized Experiments MULTIDISCIPLINARY SCIENCES-
CiteScore
2.10
自引率
0.00%
发文量
992
期刊介绍: JoVE, the Journal of Visualized Experiments, is the world''s first peer reviewed scientific video journal. Established in 2006, JoVE is devoted to publishing scientific research in a visual format to help researchers overcome two of the biggest challenges facing the scientific research community today; poor reproducibility and the time and labor intensive nature of learning new experimental techniques.
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