二氧化铈-氧化锆(x)CeO2-(1-x)ZrO2二元氧化物纳米催化剂吸附增强声光催化去除水中四环素

Gyuri Kim, Yeonji Yea, Sejoon Park, Seong-Rye Byeon, Seungbeom Seo, Jun-Sung Cho, C. Park
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引用次数: 0

摘要

目的:四环素(TC)抗生素有引起胃肠道和肝脏疾病的风险,在极少数情况下,光敏性和骨组织沉积。方法:因此,开发一种能够完全去除水中残留TC的技术迫在眉睫。本研究提出了一种新型的声光催化分解体系,该体系可以有效地分解水基难降解性微量污染物TC。结果与讨论:采用水热法合成了xCeO2-(1-x)ZrO2 (x = 0、0.25、0.5、0.75和1)二元纳米复合材料,并采用x射线衍射、傅里叶变换红外光谱、场发射扫描电镜、紫外-可见漫反射光谱、x射线光电子能谱、Brunauer-Emmett-Teller表面积等技术进行了表征。有趣的是,0.75CeO2-0.25ZrO2 (CZ0.75)纳米复合材料在无光条件下对TC的吸附和去除能力较低,但由于材料与深度处理系统的协同作用,在声光照射60 min后,剩余TC的去除率达到89.2%。对CZ0.75进行了溶液初始pH、催化剂用量、反应时间、初始TC浓度、超声强度等操作因素的影响,并分析了其机理。结论:此外,通过LC-MS分析,确定了使用CZ0.75催化剂降解TC过程中获得的中间产物和TC降解途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adsorption-enhanced sonophotocatalytic removal of tetracycline from water using ceria-zirconia (x)CeO2-(1-x)ZrO2 binary oxide nanocatalyst
Objectives : Tetracycline (TC) antibiotics have a risk of causing gastrointestinal and hepatic disorders and, in rare cases, photosensitivity and deposition in bone tissue.Methods : Therefore, it is urgent to develop a technology that can completely remove TC remaining in the water. In this study, a new type of sonophotocatalytic decomposition system that can efficiently decompose TC, a water-based recalcitrant trace pollutant, was proposed.Results and Discussion : As a sonophotocatalyst, xCeO2-(1-x)ZrO2 (x = 0, 0.25, 0.5, 0.75, and 1) binary nanocomposites were synthesized by hydrothermal methods, followed by X-ray diffraction, Fourier-transform infrared spectroscopy, field emission scanning electron microscope, UV-Vis diffuse reflectance spectroscopy, X-ray photoelectron spectroscopy, Brunauer-Emmett-Teller surface area techniques. Interestingly, the 0.75CeO2-0.25ZrO2 (CZ0.75) nanocomposite had low adsorption and removal ability of TC in the absence of light, but due to the synergistic effect of the material and the advanced treatment system, the remaining TC was removed by 89.2% under sonophoto irradiation for 60 min. For CZ0.75, the effect of operating factors such as initial pH of solution, catalyst dosage, reaction time, initial TC concentration, and ultrasonic intensity was studied and the mechanism was analyzed.Conclusion : In addition, through LC-MS analysis, intermediate products obtained in the TC degradation process using the CZ0.75 catalyst and the TC degradation pathway were identified.
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