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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Adsorption-photocatalytical remediation for series of tetracycline contaminants with BiOCl-CdS composite under simulated sunlight
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Adsorption-photocatalytical remediation for series of tetracycline contaminants with BiOCl-CdS composite under simulated sunlight

机译:模拟阳光下BioCl-CDS复合材料系列四环素污染物的吸附 - 光催化修复

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Tetracycline antibiotics (TCs) are widely released into the aqueous environments and thus pose much serious threats to aquatic ecosystem and human healthy. Due to their heteroaromatic stable frame structure, the removal of TCs has always been an arduous task. In this investigation, we have successfully prepared a series of BiOCl-CdS composites which were used to well remedy the TCs pollutions. BiOCl presented 3D hierarchical microspheres and CdS nanoparticles were uniformly dispersed on its leave surface, confirming by the characterization of XRD, XPS, TEM, SEM and EDS techniques. Compared with pure BiOCl and CdS, the BiOCl-CdS composite exhibits highly adsorption-photocatalytic degradation toward the removal of TCs under solar light illuminating, reaching up to 91.2% for TC, 83.7% for OTC, 75.1% for CTC, within 60 min, respectively. Based on the UV diffuse spectrum, photoelectrochemical measurements, band potential calculation, LC-MS testing, the active species trapping, a novel adsorption-photocatalytic mechanism is proposed. BiOCl, with 3D hierarchical microspheres, possesses not only excellent adsorption towards TCs through a chelation but also good photo-oxidative ability due to the very positive band potential. When compositing with CdS nanoparticles, the matched band structure could not only expand the solar spectrum harvest but also boost the separation of photogenerated electrons and holes, enhancing the solar light driven photocatalytic activity. In summary, the designed material could be potential commercial application to remedy antibiotic residues from the domestic waste water or industrial discharge driven by solar lighting, with a low cost, easy manipulation, and high efficiency. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:四环素抗生素(TCS)被广泛释放到水环境中,从而对水生生态系统和人类健康构成了很大的严重威胁。由于它们的杂芳族稳定框架结构,TCS的去除一直是艰苦的任务。在这项调查中,我们已经成功地制备了一系列BioCl-CDS复合材料,用于妥善解决TCS污染。 BioCl呈现的3D层次微球和Cds纳米颗粒在其离开表面上均匀分散,通过XRD,XPS,TEM,SEM和EDS技术的表征来证实。与纯BioCl和Cds相比,BioCl-CDS复合材料表现出高度吸附 - 光催化降解在太阳光照射下除去TCS,TC达到91.2%,对于OTC的83.7%,CTC在60分钟内为75.1%,分别。基于UV漫射频谱,光电化学测量,带电位计算,LC-MS测试,提出了一种新型吸附 - 光催化机制。具有3D层次微球的BioCl不仅具有通过螯合的伴随而对TCS的优异吸附,而且由于非常阳性带电位,也是良好的光氧化能力。当用CDS纳米粒子合成时,匹配的带结构不仅可以扩展太阳频谱收获,而且还可以提高光发生的电子和孔的分离,增强了太阳光驱动的光催化活性。总之,设计的材料可能是通过由太阳照明驱动的国内废水或工业排放的抗生素残留物的潜在商业应用,具有低成本,易于操纵和高效率。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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