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Effect of membrane character and solution chemistry on microfiltration performance

机译:膜特性和溶液化学性质对微滤性能的影响

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To help understand and predict the role of natural organic matter (NOM) in the fouling of low-pressure membranes, experiments were carried out with an apparatus that incorporates automatic backwashing and long filtration runs. Three hollow fibre membranes of varying character were included in the study, and the filtration of two different surface waters was compared. The hydrophilic membrane had greater flux recovery after backwashing than the hydrophobic membranes, but the efficiency of backwashing decreased at extended filtration times. NOM concentration of these waters (7.9 and 9.1 mg/L) had little effect on the flux of the membranes at extended nitration times, as backwashing of the membrane restored the flux to similar values regardless of the NOM concentration. The solution pH also had little effect at extended filtration times. The backwashing efficiency of the hydrophilic membrane was dramatically different for the two waters, and the presence of colloid NOM alone could not explain these differences. It is proposed that colloidal NOM forms a filter cake on the surface of the membranes and that small molecular weight organics that have an adsorption peak at 220 nm but not 254 nm were responsible for "gluing" the colloids to the membrane surface. Alum coagulation improved membrane performance in all instances, and this was suggested to be because coagulation reduced the concentration of "glue" that holds the organic colloids to the membrane surface.
机译:为了帮助理解和预测天然有机物(NOM)在低压膜结垢中的作用,使用了结合了自动反冲洗和长时间过滤运行的设备进行了实验。研究中包括三种不同特性的中空纤维膜,并比较了两种不同地表水的过滤情况。亲水膜反冲洗后的通量回收率比疏水膜大,但反冲洗的效率随着过滤时间的延长而降低。在延长的硝化时间下,这些水的NOM浓度(7.9和9.1 mg / L)对膜通量的影响很小,因为膜的反冲洗使通量恢复到相似的值,而与NOM浓度无关。溶液的pH值在延长的过滤时间也几乎没有影响。两种水的亲水性膜的反冲洗效率显着不同,仅胶体NOM的存在不能解释这些差异。提出胶体NOM在膜的表面上形成滤饼,并且具有在220nm处而非254nm处的吸附峰的小分子量有机物负责将胶体“胶粘”到膜表面。明矾凝结在所有情况下都改善了膜的性能,这被认为是因为凝结降低了将有机胶体保持在膜表面的“胶”的浓度。

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