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双金属纳米粒子/过硫酸盐体系中含水层物质对三氯乙烯处理的竞争。

Competition by aquifer materials in a bimetallic nanoparticle/persulfate system for the treatment of trichloroethylene.

机构信息

Department of Civil & Environmental Engineering, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada.

出版信息

Environ Sci Process Impacts. 2013 Oct;15(10):1964-8. doi: 10.1039/c3em00285c.

Abstract

It has been suggested in the literature that aquifer materials can compete with the target organic compounds in an activated peroxygen system. In this study, we employed a rapid treatment method using persulfate activated with bimetallic nanoparticles to investigate the competition between aquifer materials and the dissolved phase of a target organic compound. The concentration of dissolved trichloroethylene (TCE) remaining after using the activated persulfate system was two- to three-fold higher in a soil slurry batch system than in an aqueous batch system. For all five aquifer materials investigated, an increase in the mass of the aquifer solids significantly decreased the degradation of TCE. A linear relationship was observed between the mass of aquifer materials and the initial TCE degradation rate, suggesting that the organic carbon and/or aquifer material constituents (e.g., carbonates and bicarbonates) compete with the oxidation of TCE.

摘要

文献中提出,含水层物质可以在过氧活化系统中与目标有机化合物竞争。在本研究中,我们采用了一种使用双金属纳米粒子活化过硫酸盐的快速处理方法,来研究含水层物质与目标有机化合物的溶解相之间的竞争。在用过硫酸盐活化系统处理后,土壤泥浆批量系统中残留的溶解三氯乙烯(TCE)浓度比水溶液批量系统高两到三倍。对于所有五种研究的含水层物质,含水层固体质量的增加显著降低了 TCE 的降解。观察到含水层材料的质量与初始 TCE 降解速率之间存在线性关系,表明有机碳和/或含水层材料成分(例如碳酸盐和碳酸氢盐)与 TCE 的氧化竞争。

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