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微生物的脱氯活性在化学氧化剂处理期间和之后。

Microbial dechlorination activity during and after chemical oxidant treatment.

机构信息

Flemish Institute for Technological Research (VITO), Separation and Conversion Technology, Boeretang 200, 2400 Mol, Belgium; Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Coupure Links 653, 9000 Gent, Belgium.

出版信息

J Hazard Mater. 2013 Nov 15;262:598-605. doi: 10.1016/j.jhazmat.2013.09.003. Epub 2013 Sep 13.

Abstract

Potassium permanganate (PM) and sodium persulfate (PS) are used in soil remediation, however, their compatibility with a coinciding or subsequent biotreatment is poorly understood. In this study, different concentrations of PM (0.005-2g/L) and PS (0.01-4.52 g/L) were applied and their effects on the abundance, activity, and reactivation potential of a dechlorinating enrichment culture were investigated. Expression of the tceA, vcrA and 16S rRNA genes of Dehalococcoides spp. were detected at 0.005-0.01 g/L PM and 0.01-0.02 g/L PS. However, with 0.5-2g/L PM and 1.13-4.52 g/L PS no gene expression was recorded, neither were indicator molecules for total cell activity (Adenosine triphosphate, ATP) detected. Dilution did not promote the reactivation of the microbial cells when the redox potential was above -100 mV. Similarly, inoculated cells did not dechlorinate trichloroethene (TCE) above -100 mV. When the redox potential was decreased to -300 mV and the reactors were bioaugmented for a second time, dechlorination activity recovered, but only in the reactors with 1.13 and 2.26 g/L PS. In conclusion, our results show that chemical oxidants can be combined with a biotreatment at concentrations below 0.5 g/L PM and 1g/L PS.

摘要

高锰酸钾 (PM) 和过硫酸钠 (PS) 常用于土壤修复,但它们与同时或随后的生物处理的兼容性知之甚少。在这项研究中,应用了不同浓度的 PM(0.005-2g/L)和 PS(0.01-4.52g/L),并研究了它们对脱氯富集培养物的丰度、活性和再激活潜力的影响。检测到 Dehalococcoides spp. 的 tceA、vcrA 和 16S rRNA 基因在 0.005-0.01g/L PM 和 0.01-0.02g/L PS 下表达。然而,在 0.5-2g/L PM 和 1.13-4.52g/L PS 下没有记录到基因表达,也没有检测到总细胞活性(三磷酸腺苷,ATP)的指示分子。当氧化还原电位高于-100mV 时,稀释不会促进微生物细胞的再激活。同样,接种细胞在氧化还原电位高于-100mV 时不会脱氯三氯乙烯(TCE)。当氧化还原电位降低至-300mV 并再次进行生物增强时,脱氯活性恢复,但仅在 PS 浓度为 1.13 和 2.26g/L 的反应器中恢复。总之,我们的结果表明,在低于 0.5g/L PM 和 1g/L PS 的浓度下,化学氧化剂可以与生物处理相结合。

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