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壳聚糖修饰的 N、S 共掺杂 TiO2 和 N、S 共掺杂 ZnO 可见光光催化降解四环素。

Chitosan modified N, S-doped TiO and N, S-doped ZnO for visible light photocatalytic degradation of tetracycline.

机构信息

Research Center for Environmental Determinants of Health, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Mechanical Engineering Department, Faculty of Engineering and the Built Environment, University of Johannesburg, 2006, South Africa.

出版信息

Int J Biol Macromol. 2019 Jul 1;132:360-373. doi: 10.1016/j.ijbiomac.2019.03.217. Epub 2019 Mar 30.

Abstract

N, S-doped TiO (NST), N, S-doped ZnO (NSZ) and their composite with chitosan (NST/CS, NSZ/CS) were synthesized by sol gel-hydrothermal method. The prepared samples were characterized using XRD, FTIR, TEM and BET techniques. These photocatalysts were used for the photocatalytic degradation of tetracycline under visible light irradiation. At screening test, NST/CS had the highest tetracycline degradation efficiency of 91% for duration of 20 min under visible light. The blending of chitosan with NST increases the rate of photocatalytic degradation of tetracycline about 2 times. A detail characterization including HRTEM, SEM, EDS and DRS were conducted for NST/CS, the most active photocatalyst in this study. Photocatalytic activity test was conducted by varying tetracycline concentration, irradiation time, catalyst's concentration and pH using response surface methodology to find out the optimum condition for photocatalytic activity. The reusability of as-synthesized NST/CS was assessed which due to its high recoverability can be applied as an effective catalyst for degradation of organic substances in water and wastewater especially for degradation of emerging pollutants such pharmaceutical pollutants. The results from this work show a promising material for local authorities and pharmaceutical facilities to use for the treatment of pharmaceutical pollutants and tetracycline removal in water resource.

摘要

采用溶胶-凝胶水热法合成了 N、S 共掺杂 TiO2(NST)、N、S 共掺杂 ZnO(NSZ)及其与壳聚糖的复合材料(NST/CS、NSZ/CS)。采用 XRD、FTIR、TEM 和 BET 技术对制备的样品进行了表征。这些光催化剂用于可见光照射下四环素的光催化降解。在筛选试验中,NST/CS 在 20 min 可见光照射下对四环素的降解效率最高,达到 91%。壳聚糖与 NST 的共混提高了四环素的光催化降解速率,约为 2 倍。对本研究中最活跃的光催化剂 NST/CS 进行了详细的特性分析,包括 HRTEM、SEM、EDS 和 DRS。通过响应面法改变四环素浓度、光照时间、催化剂浓度和 pH 值来进行光催化活性测试,以找出光催化活性的最佳条件。评估了合成的 NST/CS 的可重复使用性,由于其高回收率,可将其作为在水和废水中降解有机物质的有效催化剂,特别是用于降解新兴污染物如药物污染物。这项工作的结果为地方当局和制药厂提供了一种有前途的材料,用于处理水中的药物污染物和四环素去除。

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