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首页> 外文期刊>Chemosphere >Kinetic And Isotope Analyses Of Tetrachloroethylene And Trichloroethylene Degradation By Model Fe(ii)-bearing Minerals
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Kinetic And Isotope Analyses Of Tetrachloroethylene And Trichloroethylene Degradation By Model Fe(ii)-bearing Minerals

机译:含Fe(ii)的矿物模型降解四氯乙烯和三氯乙烯的动力学和同位素分析

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摘要

The kinetics and in some cases stable carbon isotope fractionation associated with abiotic reductive dechlorination of tetrachloroethylene (PCE) and trichloroethylene (TCE) by model Fe(II)-bearing minerals present in anaerobic soils were measured. The minerals studied were chloride green rust (GR-Cl), sulfate green rust (GR-SO_4), pyrite, magnetite, and adsorbed Fe(II) or FeS formed at the surface of goethite by treatment with dissolved Fe(II) or S(-II). We observed some abiotic transformation of PCE and TCE in every system studied, as evidenced by the presence of abiotic reaction products. Bulk enrichment factors (ε_(bulk) values) for TCE transformation by GR-Cl and pyrite were -23.0 ± 1.8‰ and -21.7 ± 1.0‰, respectively, which are more negative than reported values for microbial TCE dechlorination and could provide one means for distinguishing microbial from abiotic dechlorination of TCE in the environment. Considering the time scale of subsurface remediation technologies, including natural attenuation, minerals such as green rusts, pyrite, and magnetite have the potential to contribute to the transformation of PCE and TCE at contaminated sites.
机译:测量了存在于厌氧土壤中的模型Fe(II)矿物与四氯乙烯(PCE)和三氯乙烯(TCE)的非生物还原性脱氯相关的动力学和某些情况下稳定的碳同位素分馏。所研究的矿物为氯化物绿锈(GR-Cl),硫酸盐绿锈(GR-SO_4),黄铁矿,磁铁矿以及通过溶解的Fe(II)或S处理在针铁矿表面形成的吸附Fe(II)或FeS。 (-II)。我们在每个研究的系统中观察到PCE和TCE的一些非生物转化,这由非生物反应产物的存在证明。 GR-Cl和黄铁矿转化TCE的体积富集因子(ε_(bulk)值)分别为-23.0±1.8‰和-21.7±1.0‰,比微生物TCE脱氯的报道值更负,可以提供一种手段用于区分环境中TCE的微生物与非生物脱氯。考虑到包括自然衰减在内的地下修复技术的时标,矿物质(例如绿锈,黄铁矿和磁铁矿)有可能促进受污染场地的PCE和TCE转化。

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