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首页> 外文期刊>Applied Microbiology and Biotechnology >Effects of aeration and organic loading rates on degradation of trichloroethylene in a methanogenic-methanotrophic coupled reactor
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Effects of aeration and organic loading rates on degradation of trichloroethylene in a methanogenic-methanotrophic coupled reactor

机译:甲烷和甲烷营养耦合反应器中曝气和有机负荷率对三氯乙烯降解的影响

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摘要

The effects of four aeration and four organic loading (OLR) rates on trichloroethylene (TCE) degradation in methanogenic-methanotrophic coupled reactors were studied using ethanol as the carbon source for the methanogens. Microcosm and PCR studies demonstrated that methanotrophs capable of mineralizing TCE and methanogens were present in the biomass throughout the study. The gene for the particulate form of methane monooxygenase (pMMO) was detected by PCR, but not that for the soluble form (sMMO). TCE mineralization by methanotrophs was therefore due primarily to pMMO activity. Low TCE concentrations were measured in effluent and off-gas samples in all cases. Volatilization losses were 0–5%. Dichloroethylene (DCE) was also observed, but vinyl chloride and ethylene were never detected. Changes in the aeration rate had no effect on TCE removal, but did influence DCE degradation. Reductive dechlorination of TCE to DCE was favored at low and no-aeration conditions, and DCE accumulation occurred due to slow DCE degradation. Low DCE levels were observed at the higher aeration rates, which indicated that conditions in these reactors were amenable to the aerobic co-metabolism of TCE and DCE. The OLR did have an effect on TCE removal. TCE and DCE removal were negatively affected when the OLR was increased. An OLR of 0.3 g COD lrx −1day−1 or lower with an aeration rate of 3 lO2 lrx −1day−1 and higher is the recommended operating condition of a coupled reactor for removal of TCE.
机译:以乙醇为产甲烷菌的碳源,研究了产甲烷-甲烷营养耦合反应器中四种曝气和四种有机负荷(OLR)速率对三氯乙烯(TCE)降解的影响。缩影和PCR研究表明,在整个研究过程中,生物量中都存在能够矿化TCE和产甲烷菌的甲烷营养菌。通过PCR检测到的是甲烷单加氧酶(pMMO)颗粒形式的基因,但没有检测到可溶性形式(sMMO)的基因。因此,甲烷氧化菌对TCE的矿化作用主要归因于pMMO活性。在所有情况下,废水和废气样品中的TCE浓度均较低。挥发损失为0–5%。还观察到二氯乙烯(DCE),但从未检测到氯乙烯和乙烯。曝气速率的变化对TCE的去除没有影响,但是确实影响了DCE的降解。在低曝气和无曝气条件下,TCE还原性脱氯成为DCE是有利的,并且由于DCE降解缓慢而导致DCE积累。在较高的曝气速率下观察到较低的DCE水平,这表明这些反应器中的条件适合于TCE和DCE的有氧共代谢。 OLR确实对去除TCE有影响。当OLR增加时,TCE和DCE去除受到负面影响。 OLR为0.3 g COD lrx -1 day-1 或更低,曝气率为3 lO2 lrx -1 day-建议使用1 或更高的耦合反应器来去除TCE。

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  • 来源
    《Applied Microbiology and Biotechnology》 |2003年第3期|206-213|共8页
  • 作者

    D. Lyew; S. Guiot;

  • 作者单位

    Biotechnology Research Institute National Research Council Canada;

    Biotechnology Research Institute National Research Council Canada;

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  • 正文语种 eng
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