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CdS 纳米棒的合成及其在基于 LED 的光催化降解四环素抗生素中的应用。

Synthesis and application of CdS nanorods for LED-based photocatalytic degradation of tetracycline antibiotic.

机构信息

Department of Civil Engineering, Yeungnam University, Gyeongsan, 38541, South Korea.

Department of Civil Engineering, Yeungnam University, Gyeongsan, 38541, South Korea.

出版信息

Chemosphere. 2022 Mar;291(Pt 2):132870. doi: 10.1016/j.chemosphere.2021.132870. Epub 2021 Nov 10.

Abstract

With the rapid development of pharmaceutical industrialization, increased consumption of drugs and discharged sewage contains antibiotics that lead to water contamination. For this purpose, removal of antibiotics from aquatic environment is emphasizing the need to produce clean water using easy separable catalysts through photocatalytic water remediation and thus the semiconductor photocatalysts have presently gained fascinating unprecedented research attention. Herein, we present the synthesis of semiconductor CdS nanorods by a facile hydrothermal procedure using ethylene diamine as a coordinating agent. Then, we subsequently studied the photocatalytic activity of CdS nanorods under blue and white LED light irradiation for the degradation of tetracycline antibiotic as a model compound. The light dependent photocatalytic activity of CdS nanorods demonstrated that CdS nanorods possess higher catalytic efficiency in presence of blue light compared to white light toward the photocatalytic degradation of tetracycline antibiotic. We have also studied the photocatalytic activity in presence of various light intensity. These CdS nanorods exhibited the highest tetracycline degradation efficacy of 95.6% within 60 min in presence of blue light (intensity: 200W/m) without any supplementary oxygen sources during the degradation reaction. The photocatalytic mechanism of the tetracycline degradation has been elucidated by scavenging experiment. The experimental results indicate the formation of reactive oxygen species during photocatalytic degradation of tetracycline antibiotic. This work represents an alternative route to develop heterogeneous photocatalyst for antibiotics degradation due to the outstanding efficiency and stability of the CdS nanorods as well as easy separation through simple filtration method. It is anticipated that this work will shed light in the practical applications of CdS nanorods for environmental remediation through wastewater treatment.

摘要

随着医药产业化的快速发展,药物的消耗量增加,排放的污水中含有抗生素,导致了水污染。因此,需要使用易于分离的催化剂通过光催化水修复来去除水环境中的抗生素,从而半导体光催化剂目前引起了人们前所未有的研究兴趣。在此,我们通过使用乙二胺作为配位剂的简便水热程序来合成半导体 CdS 纳米棒。然后,我们随后研究了 CdS 纳米棒在蓝光和白光 LED 光照射下对四环素抗生素作为模型化合物的光催化活性。CdS 纳米棒的光依赖性光催化活性表明,与白光相比,CdS 纳米棒在蓝光存在下对四环素抗生素的光催化降解具有更高的催化效率。我们还研究了不同光强下的光催化活性。在没有任何补充氧源的情况下,这些 CdS 纳米棒在蓝光(强度:200W/m)存在下的四环素降解效率最高,在 60 分钟内达到 95.6%。通过清除实验阐明了四环素降解的光催化机理。实验结果表明,在四环素抗生素的光催化降解过程中形成了活性氧物质。这项工作代表了一种开发用于抗生素降解的非均相光催化剂的替代途径,因为 CdS 纳米棒具有出色的效率和稳定性,并且可以通过简单的过滤方法进行简单分离。预计这项工作将为通过废水处理实现 CdS 纳米棒在环境修复中的实际应用提供启示。

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