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Reductive dechlorination of trichloroethene under different sulfate-reducing and electron donor conditions

机译:在不同的硫酸盐还原和电子给体条件下三氯乙烯的还原脱氯

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摘要

The effect of sulfate presence on reductive dechlorination of chlorinated ethenes has been a matter of conflict among the limited reports found in literature. This paper aims to clarify the misconceptions regarding the performance of trichloroethene biotransformation under sulfate reducing conditions by evaluating the effect of different sulfate concentrations on reductive dechlorination and to assess the influence of electron donor dose on dechlorination rate. To this end, batch experiments containing different sulfate and butyrate concentrations were conducted using trichloroethene-dechlorinating and sulfate-reducing parent cultures. Results demonstrated that if sufficient time and electron donor is provided, complete dechlorination can be achieved, even at up to 400 mg/L initial sulfate concentration. However, the rate of dichloroethene and vinyl chloride degradation is reduced as sulfide concentration increases. Moreover, the excess electron donor dose induced a slightly slower dechlorination rate. The findings of this paper present an explanatory framework for the dechlorination of TCE under sulfate reducing conditions and can contribute to the state-of-art bioremediation of contaminated sites.
机译:在文献中发现的有限报告中,硫酸根的存在对氯化乙烯的还原脱氯的影响一直是一个矛盾的问题。本文旨在通过评估不同浓度的硫酸盐对还原性脱氯的影响,并评估电子给体剂量对脱氯速率的影响,来澄清关于三氯乙烯在硫酸盐还原条件下生物转化性能的误解。为此,使用三氯乙烯脱氯和硫酸盐还原亲代培养物进行了包含不同硫酸盐和丁酸盐浓度的分批实验。结果表明,如果提供足够的时间和电子给体,即使在初始硫酸盐浓度高达400 mg / L的情况下,也可以实现完全脱氯。但是,随着硫化物浓度的增加,二氯乙烯和氯乙烯的降解速率降低。此外,过量的电子给体剂量引起脱氯速率稍慢。本文的研究结果为TCE在硫酸盐还原条件下的脱氯提供了一个解释性框架,并且可以促进对受污染场所的最新生物修复。

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