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The effect of NOM characteristics and membrane type on microfiltration performance

机译:NOm特征和膜类型对微滤性能的影响

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摘要

Efforts to understand and predict the role of different organic fractions in the fouling of low-pressure membranes are presented. Preliminary experiments with an experimental apparatus that incorporates automatic backwashing and filtration over several days has shown that microfiltration of the hydrophilic fractions leads to rapid flux decline and the formation of a cake or gel layer, while the hydrophobic fractions show a steady flux decline and no obvious formation of a gel or cake layer. The addition of calcium to the weakly hydrophobic acid (WHA) fraction led to the formation of a gel layer from associations between components of the WHA. The dominant foulants were found to be the neutral and charged hydrophilic compounds, with hydrophobic and small pore size membranes being the most readily fouled. The findings suggest that surface analyses such as FTIR will preferentially identify hydrophilic compounds as the main foulants, as these components form a gel layer on the surface while the hydrophobic compounds adsorb within the membrane pores. Furthermore, coagulation pre-treatment is also likely to reduce fouling by reducing pore constriction rather than the formation of a gel layer, as coagulants remove the hydrophobic compounds to a large extent and very little of the hydrophilic neutral components.
机译:提出了努力理解和预测不同有机组分在低压膜结垢中的作用。使用结合了几天的自动反冲洗和过滤功能的实验设备进行的初步实验表明,亲水性组分的微滤会导致通量快速下降并形成饼状或凝胶层,而疏水性组分却显示出稳定的通量下降且没有明显的变化。形成凝胶或蛋糕层。向弱疏水性酸(WHA)馏分中添加钙会导致WHA组分之间缔合而形成凝胶层。发现主要的污垢是中性和带电的亲水性化合物,最容易结垢的是疏水性和小孔径的膜。研究结果表明,诸如FTIR之类的表面分析将优先确定亲水性化合物为主要污垢,因为这些组分在表面上形成凝胶层,而疏水性化合物则吸附在膜孔中。此外,凝结预处理还可能通过减少孔收缩而不是形成凝胶层来减少结垢,因为凝结剂会在很大程度上除去疏水性化合物,而亲水性中性成分极少。

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