首页> 外文期刊>Journal of Contaminant Hydrology >Continuous-flow column study of reductive dehalogenation of PCE upon bioaugmentation with the Evanite enrichment culture
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Continuous-flow column study of reductive dehalogenation of PCE upon bioaugmentation with the Evanite enrichment culture

机译:依文石富集培养生物强化后PCE还原脱卤的连续流柱研究

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A continuous-flow anaerobic column experiment was conducted to evaluate the reductive dechlorination of tetrachloroethene (PCE) in Hanford aquifer material after bioaugmentation with the Evanite (EV) culture. An influent PCE concentration of 0.09 mM was transformed to vinyl chloride (VC) and ethene (ETH) within a hydraulic residence time of 1.3 days. The experimental breakthrough curves were described by the one-dimensional two-site-nonequilibrium transport model. PCE dechlorination was observed after bioaugmentation and after the lactate concentration was increased from 0.35 to 0.67 mM. At the onset of reductive dehalogenation, cis-dichloroethene (c-DCE) concentrations in the column effluent exceeded the influent PCE concentration indicating enhanced PCE desorption and transformation. When the lactate concentration was increased to 1.34 mM, c-DCE reduction to vinyl chloride (VC) and ethene (ETH) occurred. Spatial rates of PCE and VC transformation were determined in batch-incubated microcosms constructed with aquifer samples obtained from the column. PCE transformation rates were highest in the first 5 cm from the column inlet and decreased towards the column effluent. Dehalococcoides cell numbers dropped from ~ 73.5% of the total Bacterial population in the original inocula, to about 0.5% to 4% throughout the column. The results were consistent with estimates of electron donor utilization, with 4% going towards dehalogenation reactions.
机译:进行了连续流厌氧柱实验,以评估在伊万特(EV)培养液生物强化后汉福德含水层材料中四氯乙烯(PCE)的还原脱氯作用。在1.3天的水力停留时间内,进水浓度为0.09 mM的PCE转化为氯乙烯(VC)和乙烯(ETH)。用一维两点非平衡迁移模型描述了实验突破曲线。在生物增强后和乳酸浓度从0.35 mM增加到0.67 mM后,观察到PCE脱氯。在还原性脱卤作用开始时,柱流出物中的顺二氯乙烯(c-DCE)浓度超过了进水PCE浓度,表明PCE的解吸和转化增强。当乳酸浓度增加到1.34 mM时,c-DCE还原为氯乙烯(VC)和乙烯(ETH)。在用从色谱柱中获得的含水层样品构建的分批孵育的微观世界中,确定了PCE和VC转化的空间速率。 PCE转化速率在距色谱柱入口的前5 cm处最高,而向色谱柱流出物方向降低。 Dehaloccocoides细胞数从原始接种物中的细菌总数的约73.5%下降到整个色谱柱的约0.5%至4%。结果与估计的电子供体利用率一致,其中4%用于脱卤反应。

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