首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Methanotrophic biodegradation of cis-1,2-dichloroethylene in a continuously fed fixed-film bioreactor
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Methanotrophic biodegradation of cis-1,2-dichloroethylene in a continuously fed fixed-film bioreactor

机译:在连续进料的固定膜生物反应器中甲烷营养降解顺式1,2-二氯乙烯

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Co-metabolic biodegradation of cis-dichloroethylene (cis-DCE) was investigated in a bench-scale fixed-film bioreactor inoculated with a mixed culture of methane oxidising bacteria. The aim of this work was to identify factors that affect the cis-DCE biodegradation. It was observed that the presence of methane was necessary to enhance the biodegradation of cis-DCE, but an excess of methane inhibited the cis-DCE removal. cis-DCE did not inhibit the methane biodegradation at concentrations up to 300 μg/L. Maximum cis-DCE removal was observed with a methane bulk concentration ranging from 0.2 to 0.7 mg/L. It was found that the activity of the biofilm was located in the upper 100 μm of the biofilm. On the basis of this study it is concluded that careful control of the oxygen and methane concentrations as well as of the biofilm thickness is necessary in order to optimise the biodegradation of cis-DCE in fixed film bioreactors.
机译:在台规模固定膜生物反应器中接种甲烷氧化细菌的混合培养物,研究了顺二氯乙烯(cis-DCE)的共代谢生物降解。这项工作的目的是确定影响顺式DCE生物降解的因素。观察到甲烷的存在对于增强顺式-DCE的生物降解是必要的,但是过量的甲烷抑制了顺式-DCE的去除。当浓度高达300μg/ L时,顺式DCE不会抑制甲烷的生物降解。在甲烷体积浓度为0.2至0.7 mg / L的情况下,观察到最大的顺式-DCE去除。发现生物膜的活性位于生物膜的上部100μm中。根据该研究得出结论,为了优化固定膜生物反应器中顺式-DCE的生物降解,必须仔细控制氧和甲烷的浓度以及生物膜的厚度。

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