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铁和有机膨润土用于三氯乙烯的还原与吸附。

Iron and organo-bentonite for the reduction and sorption of trichloroethylene.

作者信息

Cho Hyun-Hee, Lee Taeyoon, Hwang Sun-Jin, Park Jae-Woo

机构信息

Department of Environmental Science and Engineering, Ewha Womans University, 11-1 Daehyon-dong, Seodaemun-gu, Seoul 120-750, South Korea.

出版信息

Chemosphere. 2005 Jan;58(1):103-8. doi: 10.1016/j.chemosphere.2004.09.004.

Abstract

Hybrid barriers using dechlorination and immobilization were studied to remove trichloroethylene (TCE) in this study. Hybrid barriers of iron filings and organo (hexadecyltrimethylammonium, HDTMA)-bentonite were simulated in columns to assess the performance of the hybrid barriers. TCE reduction rate for the mixture of zero valent iron (ZVI) and HDTMA-bentonite was approximately seven times higher than that for ZVI, suggesting the reduction of TCE was accelerated when HDTMA-bentonite was mixed with ZVI. For the column of two separate layers of iron and HDTMA-bentonite, TCE reduction rate was nearly similar to that for ZVI alone, but the partition coefficient (Kd) was 4.5 times higher than that for ZVI only. TCE was immobilized in the first layer with HDTMA-bentonite due to sorption, and then dechlorinated in the second layer with iron filings due to reduction. The HDTMA-bentonite and minimally-desorbed HDTMA from the organo-bentonite are believed to contribute the increase in TCE concentration on iron surface so that more TCE could be available for reduction. Therefore, the incorporation of HDTMA-bentonite into ZVI not only can effectively retard the transport of chlorinated organic contaminants from landfill leachate or oil shock in subsurface environment, also can expedite the reduction rate of TCE.

摘要

本研究对使用脱氯和固定化的混合屏障去除三氯乙烯(TCE)进行了研究。在柱中模拟了铁屑与有机(十六烷基三甲基氯化铵,HDTMA)-膨润土的混合屏障,以评估混合屏障的性能。零价铁(ZVI)与HDTMA-膨润土混合物的TCE还原率比ZVI的还原率高约7倍,这表明当HDTMA-膨润土与ZVI混合时,TCE的还原加速。对于两层单独的铁和HDTMA-膨润土柱,TCE还原率与单独使用ZVI时几乎相似,但分配系数(Kd)比仅使用ZVI时高4.5倍。由于吸附作用,TCE在第一层被HDTMA-膨润土固定,然后在第二层由于铁屑的还原作用而脱氯。HDTMA-膨润土和从有机膨润土中微量解吸的HDTMA被认为有助于提高铁表面的TCE浓度,从而使更多的TCE可用于还原。因此,将HDTMA-膨润土掺入ZVI中不仅可以有效地延缓地下环境中来自垃圾渗滤液或油类冲击的氯代有机污染物的迁移,还可以加快TCE的还原速率。

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