Division of Environmental Engineering, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan.
Division of Environmental Engineering, Graduate School of Engineering, Hokkaido University, Sapporo 060-8628, Japan.
Water Res. 2012 Nov 1;46(17):5725-5734. doi: 10.1016/j.watres.2012.08.004. Epub 2012 Aug 11.
Membrane fouling remains a major obstacle for wider application of membrane bioreactors (MBRs) to wastewater treatment. Polysaccharides in mixed liquor suspensions in the reactors are thought to be mainly responsible for the evolution of membrane fouling in MBRs. However, details of polysaccharides causing membrane fouling in MBRs are still unknown. In this study, polysaccharides in a mixed liquor suspension of a pilot-scale MBR treating municipal wastewater were fractionated by using lectins, special proteins that bind to specific polysaccharides depending on their properties. Fouling potentials of the fractionated polysaccharides were assessed by bench-scale dead-end filtration tests. It was clearly shown that the degrees of fouling caused by fractionated polysaccharides were significantly different. The amounts of polysaccharides in each fraction could not explain the variations in the fouling, indicating the presence of polysaccharides with high specific fouling potentials. To investigate structures and origins of the polysaccharides with high fouling potentials, matrix-assisted laser desorption/ionization (MALDI)-time of flight (TOF)/mass spectrometry (MS) analysis was applied to the fractionated polysaccharides after partial hydrolysis. Several mass peaks obtained could be assigned to fragments of structures of polysaccharides (i.e., oligosaccharides) reported in a database/literature. This is the first report showing the plausible structures of polysaccharides in MBRs based on MS. A deeper understanding and effective control of membrane fouling in MBRs could be achieved with information obtained by the approach used in this study.
膜污染仍然是膜生物反应器(MBR)在废水处理中广泛应用的主要障碍。反应器中混合液悬浮液中的多糖被认为是导致 MBR 中膜污染演变的主要原因。然而,MBR 中导致膜污染的多糖的细节仍不清楚。在这项研究中,通过使用凝集素将处理城市污水的中试规模 MBR 中的混合液悬浮液中的多糖进行分级,凝集素是根据其特性与特定多糖结合的特殊蛋白质。通过台式死端过滤测试评估分级多糖的污染潜力。显然,分级多糖引起的污染程度有显著差异。每个级分中的多糖量不能解释污染的变化,表明存在具有高特定污染潜力的多糖。为了研究具有高污染潜力的多糖的结构和来源,对部分水解后的分级多糖进行了基质辅助激光解吸/电离(MALDI)-飞行时间(TOF)/质谱(MS)分析。获得的几个质量峰可以分配给数据库/文献中报道的多糖(即寡糖)结构的片段。这是首次根据 MS 报告 MBR 中多糖的可能结构的报告。通过本研究中使用的方法获得的信息,可以更深入地了解和有效控制 MBR 中的膜污染。