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Fouling Mechanisms Analysis via Combined Fouling Models for Surface Water Ultrafiltration Process

机译:表面用水超滤过程中污垢模型进行污垢机制分析

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摘要

Membrane fouling is still the bottleneck affecting the technical and economic performance of the ultrafiltration (UF) process for the surface water treatment. It is very important to accurately understand fouling mechanisms to effectively prevent and control UF fouling. The rejection performance and fouling mechanisms of the UF membrane for raw and coagulated surface water treatment were investigated under the cycle operation of constant-pressure dead-end filtration and backwash. There was no significant difference in the UF permeate quality of raw and coagulated surface water. Coagulation mainly removed substances causing turbidity in raw surface water (including most suspended particles and a few organic colloids) and thus mitigated UF fouling effectively. Backwash showed limited fouling removal. For the UF process of both raw and coagulated surface water, the fittings using single models showed good linearity for multiple models mainly due to statistical illusions, while the fittings using combined models showed that only the combined complete blocking and cake layer model fitted well. The quantitative calculations showed that complete blocking was the main reason causing flux decline. Membrane fouling mechanism analysis based on combined models could provide theoretical supports to prevent and control UF fouling for surface water treatment.
机译:膜污染仍然是影响表面水处理超滤(UF)过程的技术和经济性能的瓶颈。准确理解结垢机制,有效预防和控制UF污染是非常重要的。在恒压死端过滤和反冲洗的循环操作下研究了用于原料和凝固表面水处理的UF膜的抑制性能和污垢机制。未经凝固的地表水的UF渗透质量没有显着差异。凝血主要取出原始地表水中浊度(包括最悬浮颗粒和少数有机胶体)的物质,从​​而有效地减补UF污染。反洗表明脱污染有限。对于原料和凝固的地表水的UF过程,使用单一模型的配件显示出多种型号的良好线性,主要是由于统计幻觉,而使用组合模型的配件显示,只有合并的完整堵塞和蛋糕层模型很好地安装了。定量计算表明,完全阻断是导致助焊剂下降的主要原因。基于组合模型的膜污垢机制分析可以提供理论上的支持,以防止和控制UF用于地表水处理的污垢。

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