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Influence of floc structure on membrane permeability in the coagulation-MF process

机译:絮凝-MF过程中絮体结构对膜通透性的影响

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The relation between floc structure and membrane permeability was studied in a coagulation-MF hybrid process. The floc structure changed with operating parameters in the coagulation process and was quantified with fractal dimension (dF). The concentration ratio between suspended colloids and injected coagulant had an essential effect on dF of coagulated flocs. Larger flocs with low fractal dimension were produced for ALT (aluminum ion concentration dosed/suspended particle concentration) between 0.4 and 0.8. Flocs maintained stable characteristics at the coagulation period of over 20 minutes. Membrane permeability was improved with coagulated flocs of lower fractal dimension, which tend to have higher porosity and aggregate relatively loosely. These more porous flocs reduce specific resistance of coagulated flocs. The relation between membrane filterability and fractal dimension of flocs was explored in a submerged MF hybrid system as well as in a batch unstirred cell filtration.
机译:在混凝-MF混合工艺中研究了絮体结构与膜渗透性之间的关系。在絮凝过程中,絮体结构随操作参数而变化,并用分形维数(dF)进行定量。悬浮胶体与注入的凝结剂之间的浓度比对凝结后的絮凝物的dF具有重要影响。对于0.4(0.8至0.8)的ALT(铝离子浓度剂量/悬浮颗粒浓度),产生了具有低分形维数的较大絮凝物。絮凝物在超过20分钟的凝结时间内保持稳定的特性。分形维数小的絮凝絮凝物提高了膜的渗透性,絮凝物的孔隙率较高,聚集相对较松散。这些更多的多孔絮状物降低了凝结絮状物的比电阻。在淹没式MF杂交系统中以及在未搅拌的间歇式细胞过滤中,探索了膜过滤性与絮凝物分形维数之间的关系。

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