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Reduced membrane fouling in a novel bio-entrapped membrane reactor for treatment of food and beverage processing wastewater

机译:在新型生物截留膜反应器中减少膜结垢,用于处理食品和饮料加工废水

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A novel Bio-Entrapped Membrane Reactor (BEMR) packed with bio-ball carriers was constructed and investigated for organics removal and membrane fouling by soluble microbial products (SMP). An objective was to evaluate the stability of the nitration process in membrane bioreactors through backwashing and chemical cleaning. The novel BEMR was compared to a conventional membrane bioreactor (CMBR) on performance, with both treating identical wastewater from a food and beverage processing plant. The new reactor has a longer sludge retention time (SRT) and lower mixed liquor suspended solids (MLSS) content than does the conventional. Three different hydraulic retention times (HRTs) of 6, 9, and 12 h were studied. The results show faster rise of the transmembrane pressure (TMP) with decreasing hydraulic retention time (HRT) in both reactors, where most significant membrane fouling was associated with high SMP (consisting of carbohydrate and protein) contents that were prevalent at the shortest HRT of 6 h. Membrane fouling was improved in the new reactor, which led to a longer membrane service period with the new reactor. Rapid membrane fouling was attributed to increased production of biomass and SMP, as in the conventional reactor. SMP of 10-100 kDa from both MBRs were predominant with more than 70% of the SMP <100 kDa. Protein was the major component of SMP rather than carbohydrate in both reactors. The new reactor sustained operation at constant permeate flux that required seven times less frequent chemical cleaning than did the conventional reactor. The new BEMR offers effective organics removal while reducing membrane fouling.
机译:构造了一种新型生物包裹膜反应器(BEMR),该反应器装有生物球载体,并研究了可溶性微生物产物(SMP)对有机物的去除和膜污染。目的是通过反洗和化学清洗来评估膜生物反应器中硝化过程的稳定性。将新型BEMR与常规膜生物反应器(CMBR)的性能进行了比较,两者均处理了食品和饮料加工厂的相同废水。与常规反应器相比,新反应器具有更长的污泥保留时间(SRT)和更低的混合液悬浮固体(MLSS)含量。研究了6、9和12小时的三种不同的水力停留时间(HRT)。结果表明,两个反应堆中的跨膜压力(TMP)均随着水力停留时间(HRT)的减少而更快地升高,其中最明显的膜污染与高SMP(碳水化合物和蛋白质组成)含量有关,而SMP的最短HRT普遍存在。 6小时新反应器中的膜结垢得到了改善,这导致新反应器的膜使用时间更长。像常规反应器一样,膜的快速结垢归因于生物质和SMP产量的增加。来自两个MBR的10-100 kDa的SMP占主导地位,超过70%的SMP <100 kDa。在两个反应器中,蛋白质都是SMP的主要成分,而不是碳水化合物。新的反应器在恒定的渗透通量下可持续运行,与常规反应器相比,其化学清洗频率减少了七倍。新型BEMR可有效去除有机物,同时减少膜污染。

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