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Hydraulic performance and fouling characteristics of a membrane sequencing batch reactor (MSBR) for landfill leachate treatment under various operating conditions

机译:各种操作条件下垃圾渗滤液(MSBR)膜测序批量反应器(MSBR)的液压性能和污垢特性

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This study investigates the hydraulic performance and the fouling characteristics of a bench-scale membrane sequencing batch reactor (MSBR), treating mature landfill leachate under various time-based operating conditions. The MSBR system operated initially under a high-flux condition (Period 1) which resulted in a rapid trans-membrane pressure (TMP) rise due to intense fouling. Following the characterization of Period 1 as super-critical, the system was subsequently operated under a near-critical condition (Period 2). The overall filtration resistance analysis showed that cake layer formation was the dominant fouling mechanism during Period 1, contributing to 85.5% of the total resistance. However, regarding the MSBR operation during Period 2, adsorption was found to also be a dominant fouling mechanism (Days 1 to 47), contributing to 29.1% of the total resistance. Additionally, the irregular total resistance variation, which was observed during the subsequent operation (Days 48 to 75), and the respective filtration resistance analysis suggested also the formation of an initial sludge cake layer on the membrane surface, contributing to the 47.7% of the total resistance.
机译:本研究调查了液压性能和稳压膜测序批量反应器(MSBR)的污垢特性​​,在各种基于时间的操作条件下处理成熟垃圾填埋液。最初在高通量条件下操作的MSBR系统(期间1),导致由于强烈的污垢而导致快速的跨膜压力(TMP)上升。在将时段1的表征为超关键之后,随后在近乎临界条件下操作系统(时间2)。整体过滤抗性分析表明,滤饼层形成是在1期间的主要污垢机制,有助于总抗性的85.5%。然而,关于期间2期间的MSBR操作,发现吸附也是主要的污垢机制(第1至47天),有助于总抗性的29.1%。另外,在随后的操作期间观察到的不规则总电阻变化(第48至75天),并且各自的过滤性分析也表明了膜表面上的初始污泥蛋糕层的形成,有助于47.7%总阻力。

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