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Transport and activity of Desulfitobacterium dichloroeliminans strain DCA1 during bioaugmentation of 1,2-DCA-contaminated groundwater

机译:在1,2-DCA污染的地下水的生物强化过程中​​,二氯化铝脱硫杆菌菌株DCA1的转运和活性

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The transport and activity of Desulfitobacterium dichloroeliminans strain DCA1 in 1,2-dichloroethane (1,2-DCA)contaminated groundwater have been evaluated through an in situ bioaugmentation test at an industrial site ( Belgium). The migration of strain DCA1 was monitored from an injection well toward a monitoring well, and the effect of the imposed groundwater flow on its distribution was assessed by means of transport model MOCDENS3D. The results of the real-time PCR (16S rRNA gene) quantification downstream from the injection point were used to evaluate the bacterial distribution pattern simulated by MOCDENS3D. In the injection well, the 1,2-DCA concentration in the groundwater decreased from 939.8 to 0.9 AM in a 35 day time interval and in the presence of a sodium lactate solution. Moreover, analyses from the monitoring well showed that the cells were still active after transport through the aquifer, although biodegradation occurred to a lesser extent. This study showed that strain DCA1 can be successfully applied for the removal of 1,2-DCA under field conditions and that its limited retardation offers perspectives for large-scale cleanup processes of industrial sites.
机译:已通过工业现场的原位生物增强测试(比利时)对脱氯脱硫杆菌DCA1菌株在1,2-二氯乙烷(1,2-DCA)污染的地下水中的运输和活性进行了评估。监测了DCA1应变从注入井向监测井的迁移,并通过运输模型MOCDENS3D评估了施加的地下水流量对其分布的影响。注射点下游的实时PCR(16S rRNA基因)定量结果用于评估MOCDENS3D模拟的细菌分布模式。在注入井中,存在乳酸钠溶液的情况下,在35天的时间间隔内,地下水中的1,2-DCA浓度从939.8降至0.9 AM。此外,从监测井进行的分析表明,尽管通过生物降解的程度较小,但细胞在通过含水层运输后仍保持活性。这项研究表明,菌株DCA1可以成功地用于野外条件下的1,2-DCA去除,其有限的阻滞作用为工业现场的大规模净化过程提供了前景。

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