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Methanotrophic Biodegradation of Trichloroethylene in a Hollow Fiber Membrane Bioreactor

机译:中空纤维膜生物反应器中三氯乙烯的甲烷氧化生物降解

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Biodegradation of trichloroethlyene (TCE) in a hollow fiber membrane bioreactor was investigated using a mutant of the methanotrophic bacteria, Methylosinus trichosporium OB3b. Contaminated water flowed through the lumen (i.e., fiber interior), and the bacteria circulated through the shell side of the membrane module and an external growth reactor. In mass transfer studies with a radial cross-flow membrane module, 78.3-99.9% of the TCE was removed from the lumen at hydraulic residence times of 3-15 min in the lumen and the shell. In biodegradation experiments, 80-95% of the TCE was removed from the lumen at hydraulic residence times of 5-9 min in the lumen. The TCE transferred to the shell was rapidly biodegraded, with rate constants ranging from 0.16 to 0.9 L (mg of TSS)~(-1) day~(-1). Radiochemical data showed that over 75% of the transferred TCE was biodegraded in the shell, with the byproducts being approximately equally divided between carbon dioxide and nonvolatiles. This study shows that a hollow fiber membrane bioreactor system coupled with the mutant strain PP358 of M. trichosporium 0B3b is a very promising technology for chlorinated solvent biodegradation.
机译:中空纤维膜生物反应器中的三氯乙烯(TCE)的生物降解研究使用甲烷营养细菌的突变体,Methylosinus trichosporium OB3b。污染的水流过内腔(即纤维内部),细菌循环通过膜组件的壳侧和外部生长反应器。在使用径向错流膜组件的传质研究中,在腔体和外壳中的水力停留时间为3-15分钟时,从腔体中除去了78.3-99.9%的三氯乙烯。在生物降解实验中,在管腔中的水力停留时间为5-9分钟时,从管腔中去除了80-95%的三氯乙酸。转移到壳中的三氯乙烯被快速生物降解,速率常数范围为0.16至0.9升(毫克TSS)〜(-1)天〜(-1)。放射化学数据显示,超过75%的已转移三氯乙烯在壳中被生物降解,副产物在二氧化碳和非挥发性物质之间平均分配。这项研究表明,中空纤维膜生物反应器系统与毛孢霉0B3b的突变菌株PP358结合使用是一种非常有前途的氯化溶剂生物降解技术。

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