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Social microbial inocula confer functional stability in a methyl tert- butyl ether extractive membrane biofilm bioreactor

机译:社会微生物接种物在甲基叔丁基醚萃取膜生物膜生物反应器中赋予功能稳定性

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摘要

Methyl tert-butyl ether (MTBE) degradation technologies based on two-phase partitioning systems such as extractive membrane biofilm reactors (EMBFR) permit separation of biological and contaminant compartments, thus allowing optimization of the biological section. In this study, we set-up an EMBFR with three MTBE-degrading and cooperating strains (termed social biofilm: Agrobacterium sp. MS2, Paenibacillus etheri SH7(T) and Rhodococcus ruber EE6). The removal efficiency of the social-biofilm EMBFR was 80%, and functional stability was observed in the reactor, i.e. more efficient than previous studies (single-strain inoculated EMBFR, 50% removal efficiency and unstable function). Metabolite tert-butyl alcohol was not observed, and the EC50 values were higher than those observed in single-strain EMBFRs. Comparative analysis of the MTBE enzymatic pathway and the social-biofilm was performed, where the mechanism of cooperation observed within the social-biofilm is likely due to enzymatic redundancy. Functional outcomes were equal to previous batch tests, hence 100% scalability was obtained. Overall, higher functional and stability outcomes are obtained with the use of the social-biofilm in an MTBE-EMBFR. (C) 2018 Elsevier Ltd. All rights reserved.
机译:基于两相分配系统的甲基叔丁基醚(MTBE)降解技术,例如萃取膜生物膜反应器(EMBFR),可以分离生物区室和污染物室,从而优化生物区。在这项研究中,我们建立了一个带有三个MTBE降解和协同菌株的EMBFR(称为社会生物膜:农杆菌MS2,以太尼氏芽孢杆菌SH7(T)和红球菌EE6)。社交生物膜EMBFR的去除效率为80%,并且在反应器中观察到功能稳定性,即比以前的研究更有效(单株接种EMBFR,去除率<50%和功能不稳定)。未观察到代谢物叔丁醇,其EC50值高于单株EMBFR中观察到的值。进行了MTBE酶促途径与社会生物膜的比较分析,其中在社会生物膜内观察到的合作机制可能是由于酶的冗余。功能结果与以前的批处理测试相同,因此获得了100%的可伸缩性。总体而言,在MTBE-EMBFR中使用社交生物膜可获得更高的功能和稳定性结果。 (C)2018 Elsevier Ltd.保留所有权利。

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