膜污染
陶瓷膜
结垢
膜
过滤(数学)
陶瓷
错流过滤
化学工程
材料科学
色谱法
凝结
化学
复合材料
数学
工程类
精神科
统计
生物化学
心理学
作者
Xiaoman Liu,Chang Tian,Yanxia Zhao,Weiying Xu,Dehua Dong,Kaimin Shih,Tao Yan,Wen Song
标识
DOI:10.1007/s11783-022-1531-x
摘要
Application of ceramic membrane (CM) with outstanding characteristics, such as high flux and chemical-resistance, is inevitably restricted by membrane fouling. Coagulation was an economical and effective technology for membrane fouling control. This study investigated the filtration performance of ceramic membrane enhanced by the emerging titanium-based coagulant (polytitanium chloride, PTC). Particular attention was paid to the simulation of ceramic membrane fouling using four widely used mathematical models. Results show that filtration of the PTC-coagulated effluent using flat-sheet ceramic membrane achieved the removal of organic matter up to 78.0%. Permeate flux of ceramic membrane filtration reached 600 L/(m2 · h), which was 10-fold higher than that observed with conventional polyaluminum chloride (PAC) case. For PTC, fouling of the ceramic membrane was attributed to the formation of cake layer, whereas for PAC, standard filtration/intermediate filtration (blocking of membrane pores) was also a key fouling mechanism. To sum up, cross-flow filtration with flat-sheet ceramic membranes could be significantly enhanced by titanium-based coagulation to produce both high-quality filtrate and high-permeation flux.
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