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Analysis of submerged membrane for a sludge-bed anaerobic membrane bioreactor treating prehydrolysis liquor

机译:污泥床厌氧膜生物反应器处理预水解液的浸没膜分析

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An analysis of foulants and the performance of membranes in innovative sludge-bed anaerobic membrane bioreactors (SB-AnMBRs) were evaluated at mesophilic (35 degrees C for approx. 400 days) followed by thermophilic (55 degrees C for approx. 400 days) temperatures while treating the prehydrolysis liquor (PHL) waste stream from a dissolving pulp production plant. The membrane fouling of SB-AnMBR was analyzed for 0.1, 0.15 and 0.2 m(3)/m(2)/d flux conditions. Physico-chemical analyses of the membrane showed that the combination of 5% citric acid, 0.5% NaOCl and 2% NaOH solutions was effective in achieving more than 80% recovery of membrane flux. Chemical characterization of foulants showed that proteins were more predominant in membrane fouling than carbohydrates. Sugars and lignin contribution were negligible as compared to proteins in the total organic carbon content of the foulant. Membrane fouling occurred through a biofilm-dominated process and organic fouling. Combination of cleaning chemicals which included 0.5% NaClO and 2% NaOH solutions was most effective in the removal of the organic foulants. SEM analysis showed the pictorial evolution of the impact of fouling on the pore openings and the effect of cleaning on the membrane surface.
机译:在中温(35摄氏度,约400天),然后在高温(55摄氏度,约400天)温度下,对创新污泥床厌氧膜生物反应器(SB-AnMBR)中的污垢和膜性能进行分析。同时处理来自溶解纸浆生产厂的预水解液(PHL)废液。分析了SB-AnMBR的膜污染情况,分析了0.1、0.15和0.2 m(3)/ m(2)/ d的通量条件。膜的理化分析表明,5%柠檬酸,0.5%NaOCl和2%NaOH溶液的组合可有效实现80%以上的膜通量回收率。污垢物的化学特性表明,膜污垢中的蛋白质比碳水化合物更重要。与蛋白质相比,糖和木质素的贡献可以忽略不计。膜污染是通过生物膜为主的过程和有机污染发生的。包含0.5%NaClO和2%NaOH溶液的清洁化学品的组合对去除有机污垢最有效。 SEM分析显示了结垢对孔开口的影响以及膜表面清洁效果的图形演变。

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