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Novel low-fouling membrane bioreactor (MBR) for industrial wastewater treatment

机译:用于工业废水处理的新型低污染膜生物反应器(MBR)

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摘要

A novel antifouling coating of ultrafiltration (UF) commercial membranes, based on a polymerisable bicontinuous microemulsion (PBM) technique, was developed and tested for the first time in a membrane bioreactor (MBR) using an artificial model textile dye wastewater and compared with a commercial uncoated UF membrane. The results showed that the commercial MBR module faced severe fouling problems whereas the novel coated PBM MBR module reduced the fouling significantly. The analysis of fouling rate using a resistance model confirms that PBM coated membrane has a higher antifouling effect. The antimicrobial properties of the PBM membrane contributed by polymerisable cationic surfactant acryloyloxyundecyltriethylammonium bromide (AUTEAB) guaranteed an anti-biofouling effect preventing the growth of microorganisms on the membrane surface. In addition, the PBM MBR module showed 10±1% higher blue dye removal efficiency and a similar rate of COD removal efficiency of about 95±1% compared to commercial module. However, water permeability was slightly lower due to extra resistance of the PBM coating. Root mean squared (RMS) roughness measurement and analysis of AFM images confirmed that the stable novel membrane coating still existed and showed antimicrobial effect even after 105 days of operation. The results obtained demonstrated the potential of the low fouling PBM membrane.
机译:基于可聚合双连续微乳液(PBM)技术的新型超滤(UF)商业膜新型防污涂料,是在膜生物反应器(MBR)中首次使用人工模型纺织染料废水开发和测试的,并与商业未涂覆的超滤膜。结果表明,商用MBR模块面临严重的结垢问题,而新型涂层PBM MBR模块显着减少了结垢。使用阻力模型对结垢率的分析证实,涂有PBM的膜具有较高的结垢效果。可聚合的阳离子表面活性剂溴化丙烯酰氧基十一烷基三乙铵(AUTEAB)有助于PBM膜的抗菌性能,确保了防污垢作用,可防止微生物在膜表面生长。此外,与商用模块相比,PBM MBR模块的蓝染料去除效率高10±1%,COD去除效率的比率约为95±1%。但是,由于PBM涂层的额外阻力,透水性略低。根均方根(RMS)粗糙度测量和AFM图像分析证实,即使在手术105天后,仍存在稳定的新型膜涂层并显示出抗菌效果。获得的结果证明了低结垢的PBM膜的潜力。

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