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Complete lab-scale detoxification of groundwater containing 1,2-dichloroethane

机译:完全实验室规模的含1,2-二氯乙烷的地下水排毒

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摘要

The suspected carcinogenic solvent 1,2-dichloroethane (1,2-DCA) is the most abundant chlorinated C-2 groundwater pollutant on earth. However, an efficient reductive in situ detoxification technology for this compound is not known. Detoxification results of 1,2-DCA with the recently isolated anaerobic bacterium Desulfitobacterium dichloroeliminans strain DCA1 are presented. First, it was verified that strain DCA1 could compete for nutrients in the presence of fast-growing Enterococcus faecalis; the latter was observed in the enrichment culture from which strain DCA1 was isolated. Subsequently, lab-scale bioaugmentation of the strain to groundwater containing 40 mg 1,2-DCA/l indicated that the bacterium has strong metabolic activity under prevailing environmental conditions, converting the pollutant into ethene. During exponential growth, the maximum 1,2-DCA dechlorination rate exceeded 350 nmol chloride released per min per mg total bacterial protein. Growth and dechlorination within the community with autochthonous bacteria indicated a high competitive strength of strain DCA1. Interestingly this dechlorination process does not produce any toxic byproducts, such as vinyl chloride. Furthermore, complete groundwater detoxification happens within a short time-frame (days) and is robust in terms of bacterial competition, oxygen tolerance, high ionic strength, and pH range. [References: 15]
机译:怀疑的致癌溶剂1,2-二氯乙烷(1,2-DCA)是地球上最丰富的氯化C-2地下水污染物。但是,该化合物的有效还原原位解毒技术尚不明确。介绍了最近分离出的厌氧细菌脱氯双歧杆菌DCA1对1,2-DCA的解毒结果。首先,证实了在快速生长的粪肠球菌存在下,菌株DCA1可以竞争营养。在富集培养中观察到了后者,从中分离出了DCA1菌株。随后,实验室规模的菌株对含有40 mg 1,2-DCA / l的地下水进行了生物强化,表明该细菌在主要环境条件下具有很强的代谢活性,从而将污染物转化为乙烯。在指数增长期间,最大的1,2-DCA脱氯速率超过每毫克总细菌蛋白每分钟释放的350 nmol氯化物。本地细菌中社区内的生长和脱氯表明菌株DCA1具有很高的竞争实力。有趣的是,该脱氯过程不会产生任何有毒的副产物,例如氯乙烯。此外,完全的地下水排毒可以在很短的时间内(数天)完成,并且在细菌竞争,耐氧性,高离子强度和pH范围方面都非常强大。 [参考:15]

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