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Novel filtration mode for fouling limitation in membrane bioreactors

机译:限制膜生物反应器中结垢的新型过滤模式

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A novel filtration mode is presented to reduce fouling propensity in membrane bioreactors (MBR). During this mode, an elevated high instantaneous flux (60 L m~(-2) h~(-1)) is initially applied for a short time (120 s), followed by a longer filtration (290 s) at lower flux (10.3 L m~(-2) h~(-1)) and a backwash in each filtration cycle. The mixed mode is expected to limit irreversible fouling as the reversible fouling created during the initial stage appears to protect the membrane. Hydraulic performance and the components of foulants were analyzed and compared with conventional continuous and backwash modes. It was found that the mixed mode featured lower trans-membrane pressure (TMP) after 24 h of filtration when compared to other modes. The mixed mode was effective in preventing soluble microbial products (SMP) attaching directly onto the membrane surface, keeping the cake layer weakly compressed, and reducing the mixed liquor suspended solids (MLSS) accumulation on the membrane. This strategy reduced the resistances of both the cake layer and the gel layer. A factorial experimental design was carried out for eight runs with different conditions to identify the major operational parameters affecting the hydraulic performances. The results showed that the value of the flux in the initial high-flux period had the most effect on the performance of the mixed mode: high initial flux (60 L m~(-2) h~(-1)) led to improved performance.
机译:提出了一种新颖的过滤模式,以减少膜生物反应器(MBR)的结垢倾向。在此模式下,首先在短时间内(120 s)施加较高的高瞬时通量(60 L m〜(-2)h〜(-1)),然后在较低通量下进行较长时间的过滤(290 s)。在每个过滤循环中用10.3 L m〜(-2)h〜(-1))进行反冲洗。混合模式有望限制不可逆的结垢,因为在初始阶段产生的可逆结垢似乎可以保护膜。分析了水力性能和污垢成分,并与常规连续和反洗模式进行了比较。发现与其他模式相比,混合模式在过滤24小时后具有较低的跨膜压力(TMP)。混合模式可有效防止可溶性微生物产物(SMP)直接附着在膜表面上,保持滤饼层微弱压缩,并减少混合液悬浮固体(MLSS)在膜上的积聚。这种策略降低了滤饼层和凝胶层的电阻。针对八种不同条件的运行进行了析因实验设计,以确定影响液压性能的主要操作参数。结果表明,高通量初始阶段的通量值对混合模式的性能影响最大:高初始通量(60 L m〜(-2)h〜(-1)导致改善性能。

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