School of Chemical and Biological Engineering, Seoul National University, Seoul 151-744, Republic of Korea.
Environ Sci Technol. 2012 May 1;46(9):4877-84. doi: 10.1021/es204312u. Epub 2012 Apr 11.
Recently, enzymatic quorum quenching has proven its potential as an innovative approach for biofouling control in the membrane bioreactor (MBR) for advanced wastewater treatment. However, practical issues on the cost and stability of enzymes are yet to be solved, which requires more effective quorum quenching methods. In this study, a novel quorum quenching strategy, interspecies quorum quenching by bacterial cell, was elaborated and proved to be efficient and economically feasible biofouling control in MBR. A recombinant Escherichia coli which producing N-acyl homoserine lactonase or quorum quenching Rhodococcus sp. isolated from a real MBR plant was encapsulated inside the lumen of microporous hollow fiber membrane, respectively. The porous membrane containing these functional bacteria (i.e., "microbial-vessel") was put into the submerged MBR to alleviate biofouling on the surface of filtration membrane. The effect of biofouling inhibition by the microbial-vessel was evaluated over 80 days of MBR operation. Successful control of biofouling in a laboratory scale MBR suggests that the biofouling control through the interspecies quorum quenching could be expanded to the plant scale of MBR and various environmental engineering systems with economic feasibility.
最近,酶法群体感应淬灭已被证明是一种用于先进废水处理膜生物反应器(MBR)中生物污垢控制的创新方法。然而,酶的成本和稳定性等实际问题仍有待解决,这需要更有效的群体感应淬灭方法。在本研究中,阐述了一种新型的群体感应淬灭策略,即通过细菌细胞进行种间群体感应淬灭,并证明其在 MBR 中是一种高效且经济可行的生物污垢控制方法。将产 N-酰基高丝氨酸内酯酶的重组大肠杆菌或从实际 MBR 工厂中分离得到的群体感应淬灭罗氏菌分别包封在微孔中空纤维膜的内腔中。将含有这些功能细菌的多孔膜(即“微生物容器”)放入浸没式 MBR 中,以减轻过滤膜表面的生物污垢。通过 80 天的 MBR 运行,评估了微生物容器对生物污垢抑制的效果。在实验室规模的 MBR 中成功控制生物污垢表明,通过种间群体感应淬灭进行的生物污垢控制可以扩展到 MBR 的工厂规模和具有经济可行性的各种环境工程系统。