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Influence of Mg2+ catalyzed granular sludge on flux sustainability in a sequencing batch membrane bioreactor system

机译:Mg2 +催化的颗粒污泥对连续膜生物反应器系统通量可持续性的影响

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The present study was designed to achieve steady state high membrane flux values by controlling the organic and inorganic foulants during MBR operation. Three granular sludge sequencing batch membrane bioreactors, namely, R-1, R-2 and R-3, were run at a constant flux of 40 LMH for 90 days. R-1 was operated without the addition of Mg2+, R-2 with a continuous dosage of 50 mg/L Mg2+, whereas R-3 was run with stoichiometric amounts of Mg2+ (18-22 mg/L) in correlation with SMP contents. The particle sizes of aerobic granules were approximately 725 and 600 mu m in R-2 and R-3, respectively, compared with 250 mu m in R-1. The ratios of EPS proteins/polysaccharides in R-1, R-2 and R-3 were 1.63, 3.90 and 3.76, respectively, whereas the SMP concentrations in R-1, R-2 and R-3 were 40, 5 and 5 mg/L, respectively. The results highlighted that in R-3, the controlled addition of Mg2+ along with the emergence of aerobic granules tremendously increased the membrane permeability, which was approximately 6 and 3 times higher than R-1 and R-2, respectively. In R-3, a molar ratio of 1:2 between Mg2+ and SMP was found to be optimal for the successful sustainability of high flux values during the long term membrane treatment. FTIR, SEM and ICP spectroscopic investigations revealed that the deposition of fine sludge flocs and high amounts of proteins and polysaccharides on the membrane surface in R-1 and Mg2+ in R-2 were mainly responsible for their low permeability. (C) 2015 Elsevier B.V. All rights reserved.
机译:本研究旨在通过控制MBR操作过程中的有机和无机污垢来达到稳态高膜通量值。三个颗粒污泥测序批膜生物反应器,即R-1,R-2和R-3,以40 LMH的恒定流量运行90天。 R-1在不添加Mg2 +的情况下运行,R-2的连续剂量为50 mg / L Mg2 +,而R-3在与SMP含量相关的化学计量的Mg2 +(18-22 mg / L)下运行。 R-2和R-3中好氧颗粒的粒径分别约为725和600μm,而R-1中则为250μm。 R-1,R-2和R-3中EPS蛋白/多糖的比例分别为1.63、3.90和3.76,而R-1,R-2和R-3中SMP的浓度分别为40、5和5毫克/升。结果表明,在R-3中,Mg2 +的受控添加以及好氧颗粒的出现极大地提高了膜的渗透性,分别约为R-1和R-2的6倍和3倍。在R-3中,发现Mg2 +与SMP之间的摩尔比为1:2对于长期膜处理过程中成功维持高通量值是最佳的。 FTIR,SEM和ICP光谱研究表明,R-1和R-2中Mg2 +的细污泥絮凝物和大量蛋白质和多糖在膜表面的沉积是其低渗透性的主要原因。 (C)2015 Elsevier B.V.保留所有权利。

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