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Degradation of Organochlorine Compounds Using Zero Valent Iron (ZVI) Nano Particles Impregnated in Hydrophobic Modified Bentonite

机译:零价铁(ZVI)纳米粒子浸渍疏水改性膨润土中降解有机氯化合物

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The degradation of perchloroethylene (PCE) adsorbed on hydrophobic modified bentonite was investigated. The degradation occurred via reduction of iron particles with zero valence (ZVI) incorporated in hydrophobic surface of bentonite. We compared two different systems, one containing ZVI and another without ZVI. The degradation of PCE was accompanied by decreasing concentrations of PCE and the increase of resulting compounds such as trichloroethylene (TCE), 1,2dichloroethylene, trans and cis forms, (1,2-cis-DCE and 1,2trans-DCE). The results show that the PCE is rapidly adsorbed and in contact with ZVI particles is degraded to less toxic compounds, while in the systems without ZVI no significant decrease of PCE was observed, clearly demonstrating that the degradation process occurs through the reduction with ZVI. The rate constant for the system containing ZVI was 0.215 h-1, while for the system without ZVI it was only 0.031 h-1. The results agree with other research, however the reaction was conducted in columns and the clay was zeolite. It can be concluded that the system impregnated with ZVI is extremely interesting as an alternative application for removal of organic compounds containing chlorine due to their persistence and toxic effect on the microorganisms. The system can also be applied as barrier content.
机译:研究了疏水改性膨润土上吸附的全氯乙烯(PCE)的降解。降解是通过还原掺入膨润土疏水表面的零价铁颗粒(ZVI)发生的。我们比较了两个不同的系统,一个包含ZVI,另一个不包含ZVI。 PCE的降解伴随着PCE浓度的降低和所生成化合物(例如三氯乙烯(TCE),1,2-二氯乙烯,反式和顺式)(1,2-顺式-DCE和1,2-反式-DCE)的增加。结果表明,PCE被快速吸附并与ZVI颗粒接触降解为毒性较小的化合物,而在没有ZVI的系统中,未观察到PCE的显着下降,这清楚地表明了降解过程是通过ZVI的还原而发生的。含ZVI的系统的速率常数为0.215 h-1,而不含ZVI的系统的速率常数仅为0.031 h-1。结果与其他研究一致,但是反应在柱中进行,并且粘土是沸石。可以得出结论,由于其持久性和对微生物的毒性作用,浸渍ZVI的系统作为去除含氯有机化合物的替代应用极为有趣。该系统还可以用作屏障内容。

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