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使用甲苯对三氯乙烯需氧共代谢进行的半连续微观研究。

Semicontinuous microcosm study of aerobic cometabolism of trichloroethylene using toluene.

作者信息

Han Y L, Kuo M C Tom, Tseng I C, Lu C J

机构信息

Department of Mineral and Petroleum Engineering, National Cheng Kung University, 1 University Avenue, Tainan 701, Taiwan.

出版信息

J Hazard Mater. 2007 Sep 30;148(3):583-91. doi: 10.1016/j.jhazmat.2007.03.013. Epub 2007 Mar 12.

Abstract

A semicontinuous slurry-microcosm method was applied to mimic trichloroethylene (TCE) cometabolic biodegradation field results at the Que-Jen in-situ pilot study. The microcosm study confirmed the process of aerobic cometabolism of TCE using toluene as the primary substrate. Based on the nucleotide sequence of 16S rRNA genes, the toluene-oxidizing bacteria in microcosms were identified, i.e. Ralstonia sp. P-10 and Pseudomonasputida. The first-order constant of TCE-degradation rate was 0.5 day(-1) for both Ralstonia sp. P-10 and P.putida. The TCE cometabolic-biodegradation efficiency measured from the slurry microcosms was 46%, which appeared pessimistic compared to over 90% observed from the in-situ pilot study. The difference in the TCE cometabolic-biodegradation efficiency was likely due to the reactor configurations and the effective time duration of toluene presence in laboratory microcosms (1 days) versus in-situ pilot study (3 days). The results of microcosm experiments using different toluene-injection schedules supported the hypothesis. With a given amount of toluene injection, it is recommended to maximize the effective time duration of toluene presence in reactor design for TCE cometabolic degradation.

摘要

采用半连续泥浆微宇宙法模拟了奎珍原位中试研究中三氯乙烯(TCE)共代谢生物降解的现场结果。微宇宙研究证实了以甲苯为主要底物时TCE的好氧共代谢过程。基于16S rRNA基因的核苷酸序列,鉴定了微宇宙中氧化甲苯的细菌,即罗尔斯通氏菌属P-10和恶臭假单胞菌。罗尔斯通氏菌属P-10和恶臭假单胞菌的TCE降解率一级常数均为0.5天-1。从泥浆微宇宙中测得的TCE共代谢生物降解效率为46%,与原位中试研究中观察到的90%以上相比,这一结果似乎不太乐观。TCE共代谢生物降解效率的差异可能是由于反应器配置以及实验室微宇宙(1天)与原位中试研究(3天)中甲苯存在的有效持续时间不同。使用不同甲苯注入时间表的微宇宙实验结果支持了这一假设。在给定甲苯注入量的情况下,建议在TCE共代谢降解的反应器设计中,最大限度地延长甲苯存在的有效持续时间。

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