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Development and application of a procedure for evaluating the long-term integrity of membranes for the anaerobic fluidized membrane bioreactor (AFMBR)

机译:厌氧流化膜生物反应器(AFMBR)膜的长期完整性评估程序的开发和应用

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摘要

A bench-scale short-term test, developed to predict the long-term integrity of membranes with potential for use in anaerobic fluidized-bed membrane bioreactors, was used to evaluate several commercial hollow-fiber membranes. It was found that membrane performance varied widely, some membranes failing much more rapidly than others. Also found was that larger sizes of the fluidized media, in this case granular activated carbon (GAC), severely affected membrane structural integrity more than did smaller sizes, as did the method used for membrane attachment. Within the limits studied, the GAC packing ratio had only a minor impact. A decrease in membrane permeability that sometimes resulted during the testing and was caused by the deposition of fine GAC particles could be eliminated without membrane damage through simultaneous chemical cleaning and sonication. This new testing procedure should be useful for selecting membranes and reactor operating conditions to better ensure long-term operating performance of anaerobic fluidized-bed membrane bioreactors.
机译:进行了一项台式规模的短期试验,该试验用于预测具有厌氧流化床膜生物反应器潜力的膜的长期完整性,用于评估几种商用中空纤维膜。发现膜的性能变化很大,某些膜的破坏速度比其他膜要快得多。还发现,较大尺寸的流态化介质(在这种情况下为颗粒状活性炭(GAC))比较小尺寸的流化介质对薄膜结构完整性的影响更大,这与用于膜附着的方法一样。在所研究的范围内,GAC填充率仅产生很小的影响。通过同时进行化学清洗和超声处理,可以消除有时在测试过程中引起的,由细小的GAC颗粒沉积引起的膜渗透性降低,而不会造成膜损坏。这种新的测试程序对于选择膜和反应器的运行条件应该是有用的,以更好地确保厌氧流化床膜生物反应器的长期运行性能。

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