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Physicochemical regeneration of high silica zeolite Y used to clean-up water polluted with sulfonamide antibiotics

机译:高硅沸石Y的物理化学再生,用于清除磺胺类抗生素污染的水

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摘要

High silica zeolite Y has been positively evaluated to clean-up water polluted with sulfonamides, an antibiotic family which is known to be involved in the antibiotic resistance evolution. To define possible strategies for the exhausted zeolite regeneration, the efficacy of some chemico-physical treatments on the zeolite loaded with four different sulfonamides was evaluated. The evolution of photolysis, Fenton-like reaction, thermal treatments, and solvent extractions and the occurrence in the zeolite pores of organic residues eventually entrapped was elucidated by a combined thermogravimetric (TGA-DTA), diffractometric (XRPD), and spectroscopic (FT-IR) approach. The chemical processes were not able to remove the organic guest from zeolite pores and a limited transformation on embedded molecules was observed. On the contrary, both thermal treatment and solvent extraction succeeded in the regeneration of the zeolite loaded from deionized and natural fresh water. The recyclability of regenerated zeolite was evaluated over several adsorption/regeneration cycles, due to the treatment efficacy and its stability as well as the ability to regain the structural features of the unloaded material. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:已对高硅沸石Y进行了积极评估,以清除被磺胺类物质污染的水,磺胺类是已知的抗生素家族,参与了抗生素耐药性的演变。为了确定用尽的沸石再生的可能策略,评估了对载有四种不同磺酰胺的沸石进行的一些化学物理处理的功效。通过热重分析(TGA-DTA),衍射分析(XRPD)和光谱分析(FT- IR)方法。化学过程不能从沸石孔中除去有机客体,并且观察到嵌入分子上的转化有限。相反,热处理和溶剂萃取均成功地使去离子和天然淡水负载的沸石再生。由于处理效果,其稳定性以及恢复未加载材料的结构特征的能力,在多个吸附/再生循环中评估了再生沸石的可回收性。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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