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Effects of toxicity aeration and reductant supply on trichloroethylene transformation by a mixed methanotrophic culture.

机译:毒性曝气和还原剂供应对混合甲烷营养培养物中三氯乙烯转化的影响。

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摘要

The trichloroethylene (TCE) transformation rate and capacity of a mixed methanotrophic culture at room temperature were measured to determine the effects of time without methane (resting), use of an alternative energy source (formate), aeration, and toxicity of TCE and its transformation products. The initial specific TCE transformation rate of resting cells was 0.6 mg of TCE per mg of cells per day, and they had a finite TCE transformation capacity of 0.036 mg of TCE per mg of cells. Formate addition resulted in increased initial specific TCE transformation rates (2.1 mg/mg of cells per day) and elevated transformation capacity (0.073 mg of TCE per mg of cells). Significant declines in methane conversion rates following exposure to TCE were observed for both resting and formate-fed cells, suggesting toxic effects caused by TCE or its transformation products. TCE transformation and methane consumption rates of resting cells decreased with time much more rapidly when cells were shaken and aerated than when they remained dormant, suggesting that the transformation ability of methanotrophs is best preserved by storage under anoxic conditions.
机译:测量了三氯乙烯(TCE)的转化率和室温下混合甲烷营养培养物的容量,以确定没有甲烷的时间(静止),使用替代能源(甲酸盐),通气,三氯乙烯的毒性以及三氯乙烯的毒性及其转化产品。静息细胞的初始特定TCE转化率是每mg细胞每天0.6 mg TCE,它们具有的有限TCE转化能力是每mg细胞0.036 mg TCE。甲酸酯的添加导致初始特异性TCE转化率提高(每天2.1 mg / mg细胞)和转化能力提高(每mg细胞0.073 mg TCE)。静置和甲酸盐喂养的细胞暴露于三氯乙烯后甲烷转化率显着下降,表明三氯乙烯或其转化产物引起的毒性作用。摇动和充气后,静息细胞的TCE转化率和甲烷消耗率随时间的下降比保持休眠状态时快得多,这表明通过在缺氧条件下储存,甲烷营养菌的转化能力得到最好的保存。

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