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Cyanocobalamin Enables Activatedsludge Bacteria To Dechlorinate hexachloro-1,3 -butadiene To nonchlorinated Gases

机译:氰钴胺使活性污泥细菌能够将六氯-1,3-丁二烯脱氯成非氯化气体

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摘要

The ability of activated sludge obtained from a local wastewater treatment plant to dechlorinate hexachloro-l,3-butadiene (HCBD) in the presence of either acetate or lactate and cyanocobalamin was investigated. Results from headspace analysis indicated complete dechlorination of HCBD by the accumulation of fully dechlorinated C4 gases (l-buten-3-yne, 1,3-butadiene, and 1,3-butadiyne). Dechlorination products were not observed in the control cultures without cyanocobalamin. Examination of control cultures revealed that the disappearance of HCBD from the headspace was partly due to adsorption into the biomass. However, the key for dechlorination was the shuttle (cyanocobalamin) rather than specific microbial enzymatic activity. The hypothesis that the bacteria reduced cyanocobalamin, which in turn reductively dechlorinated HCBD, was supported by the finding that cyanocobalamin reduced by zero-valent zinc resulted in complete dechlorination. The significance of the findings is that, in contrast to prior work where specific anaerobic bacteria (enrichments or pure cultures) were believed to be necessary for dechlorination resulting in only partly dechlorinated products, the currect data show that nonspecific aerobic activated sludge bacteria can be employed for complete HCBD dechlorination at rates sufficiently high to be considered for bioremediation projects.
机译:研究了从当地废水处理厂获得的活性污泥在乙酸盐或乳酸盐和氰钴胺存在下对六氯-1,3-丁二烯(HCBD)进行脱氯的能力。顶空分析的结果表明,通过完全脱氯的C4气体(1-丁烯3-炔,1,3-丁二烯和1,3-丁二炔)的积累,六氯​​丁二烯完全脱氯。没有氰钴胺素的对照培养物中未观察到脱氯产物。对照培养物的检查表明,六氯丁二烯从顶空消失的部分原因是吸附到生物质中。但是,脱氯的关键是穿梭蛋白(氰钴胺)而不是特定的微生物酶活性。细菌还原氰钴胺素,然后还原性脱氯六氯丁二烯的假说得到了以下发现的支持,即氰钴胺素被零价锌还原导致完全脱氯。该发现的意义在于,与先前的工作相比,以前的工作认为特定的厌氧细菌(浓缩或纯培养物)对于脱氯是必需的,导致仅部分脱氯,而目前的数据表明可以使用非特异性的需氧活性污泥细菌。完全六氯丁二烯脱氯的速率要高到足以用于生物修复项目的水平。

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