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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Tailoring catalysts for hydrodechlorinating chlorinated hydrocarbon contaminants in groundwater
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Tailoring catalysts for hydrodechlorinating chlorinated hydrocarbon contaminants in groundwater

机译:为地下水中的氯代烃污染物加氢脱氯的定制催化剂

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摘要

A palladium—on-zeolite catalyst has been optimized for treating groundwater contaminated with halogenated hydrocarbon compounds (HHCs) by hydrodechlorination with dissolved hydrogen. Aqueous sulfite was used as the model poison and the dechlorination of l,2-dichlorobenzene (1,2-DCB) was used as the model reaction to study the relationship between zeolite hx drophobicity, pore size, and resistance against deactivation. The optimal Pd support is a hydrophobic zeolite Y with a pore size of 0.74 nm tailored to exclude reactive ions from internal sites, to minimize deactivation and inhibition, and to maximize the transformation rate of HHCs. Common halogenated contaminants including chlorinated ethylenes and aromatics are removed within minutes. Catalyst efficiency under groundwater treatment conditions was demonstrated in a bench-scale column experiment.
机译:钯/沸石催化剂已经过优化,用于通过溶解氢加氢脱氯处理被卤代烃化合物(HHC)污染的地下水。以亚硫酸水溶液为模型毒物,以l,2-二氯苯(1,2-DCB)脱氯为模型反应,研究沸石的高疏水性,孔径和抗失活性之间的关系。最佳的Pd载体是孔径为0.74 nm的疏水性沸石Y,该沸石经定制可排除内部位点的反应性离子,从而最大程度降低失活和抑制作用,并最大化HHCs的转化率。数分钟内即可除去常见的卤化污染物,包括氯化乙烯和芳烃。在台式规模的柱实验中证明了在地下水处理条件下的催化剂效率。

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