可见光下降解海水中盐酸土霉素三元复合光催化剂的制备与表征

Jinghua Liu, Yifu Liu, Shini Wu, Yuqi Zhang, Xiaocai Yu
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引用次数: 1

摘要

摘要盐酸土霉素是水产养殖中应用最广泛的兽用抗生素。养殖废水中存在大量残留抗生素,对生态环境造成危害。本研究采用共沉淀法制备了Zn0.75Mn0.75Fe1.5O4/ZnFe2O4/ZnO三元复合光催化剂(ZMF-ZF-Z),用于降解海洋养殖废水中的盐酸土霉素。采用XRD、SEM、EDS、UV-VIS (DRS)、PL光谱等测试方法对光生电子-空穴对催化剂的晶相、结构、形貌、元素组成、元素含量、光学性能等进行了表征。结果表明,ZMF-ZF-Z光催化剂比纯ZnO具有更大的可见光响应范围,可以吸收更多的自然光。在实验过程中,zzmf - zf -Z光催化剂经过5次重复使用后,光催化效果几乎没有减弱,说明该光催化剂具有很好的稳定性。在可见光照射下,ZMF-ZF-Z光催化剂对海水中盐酸土霉素的降解率为77.11%,比纯ZnO的降解率提高了约3倍,光催化活性显著提高。本研究为实际生产生活中海水中抗生素的降解提供了科学有效的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation and characterization of ternary composite photocatalyst for degradation of oxytetracycline hydrochloride in seawater under visible light
Abstract Oxytetracycline hydrochloride is the most widely used veterinary antibiotic in aquaculture. The presence of large amounts of residual antibiotics in aquaculture wastewater harms the ecological environment. In this study, the ternary composite of Zn0.75Mn0.75Fe1.5O4/ZnFe2O4/ZnO (ZMF-ZF-Z) photocatalyst was prepared by the coprecipitation method for degradation of oxytetracycline hydrochloride in marine aquaculture wastewater. The crystal phase, structure, morphology, elemental composition, element content, and optical properties of photogenerated electron-hole pairs of catalyst were characterized by XRD, SEM, EDS, UV-VIS (DRS), PL spectroscopy, and other test methods. The results showed that ZMF-ZF-Z photocatalyst had a larger response range of visible light than pure ZnO, which can absorb more natural light. During the process of the experiment, the photocatalytic effect of Z ZMF-ZF-Z photocatalyst was almost no weakening after 5 times reuse, which means quite good stability of the photocatalyst. Under the visible light irradiation, the degradation rate of oxytetracycline hydrochloride in seawater was 77.11% with ZMF-ZF-Z photocatalyst, which was about 3 times higher than that of pure ZnO, and the photocatalytic activity was significantly improved. This research provides a scientific and effective method for degrading antibiotics in seawater in actual production and life.
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