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过锰氧化物/SBA-15 催化臭氧氧化增强水中氯贝酸降解的机理。

Mechanism for enhanced degradation of clofibric acid in aqueous by catalytic ozonation over MnOx/SBA-15.

机构信息

School of Chemistry & Environment, South China Normal University, Guangzhou 510006, China.

School of Chemistry & Environment, South China Normal University, Guangzhou 510006, China.

出版信息

J Hazard Mater. 2015 Apr 9;286:276-84. doi: 10.1016/j.jhazmat.2014.12.050. Epub 2014 Dec 30.

Abstract

Comparative experiments were conducted to investigate the catalytic ability of MnO(x)/SBA-15 for the ozonation of clofibric acid (CA) and its reaction mechanism. Compared with ozonation alone, the degradation of CA was barely enhanced, while the removal of TOC was significantly improved by catalytic ozonation (O3/MnO(x)/SBA-15). Adsorption of CA and its intermediates by MnO(x)/SBA-15 was proved unimportant in O3/MnO(x)/SBA-15 due to the insignificant adsorption of CA and little TOC variation after ceasing ozone in stopped-flow experiment. The more remarkably inhibition effect of sodium bisulfite (NaHSO3) on the removal of TOC in catalytic ozonation than in ozonation alone elucidated that MnO(x)/SBA-15 facilitated the generation of hydroxyl radicals (OH), which was further verified by electron spin-resonance spectroscopy (ESR). Highly dispersed MnO(x) on SBA-15 were believed to be the main active component in MnO(x)/SBA-15. Some intermediates were indentified and different degradation routes of CA were proposed in both ozonation alone and catalytic ozonation. The amounts of small molecular carboxylic acids (i.e., formic acid (FA), acetic acid (AA) and oxalic acid (OA)) generated in catalytic ozonation were lower than in ozonation alone, resulting from the generation of more OH.

摘要

进行了对比实验,以研究 MnO(x)/SBA-15 对氯菲酸 (CA) 的臭氧化催化能力及其反应机制。与单独臭氧化相比,CA 的降解几乎没有增强,而催化臭氧化 (O3/MnO(x)/SBA-15) 显著提高了 TOC 的去除率。由于在停流实验中 CA 的吸附量和 TOC 的变化很小,证明 MnO(x)/SBA-15 对 CA 和其中间产物的吸附在 O3/MnO(x)/SBA-15 中不重要。由于 NaHSO3 对催化臭氧化中 TOC 去除的抑制作用比单独臭氧化更为显著,表明 MnO(x)/SBA-15 促进了羟基自由基 (OH) 的生成,这进一步通过电子自旋共振光谱 (ESR) 得到了验证。高分散的 MnO(x)负载在 SBA-15 上被认为是 MnO(x)/SBA-15 中的主要活性组分。在单独臭氧化和催化臭氧化中都鉴定出了一些中间产物,并提出了 CA 的不同降解途径。在催化臭氧化中生成的小分子羧酸(如甲酸 (FA)、乙酸 (AA) 和草酸 (OA)) 的量低于单独臭氧化,这是由于生成了更多的 OH。

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