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首页> 外文期刊>Journal of the European Ceramic Society >Application of asymmetric Si3N4 hollow fiber membrane for cross-flow microfiltration of oily waste water
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Application of asymmetric Si3N4 hollow fiber membrane for cross-flow microfiltration of oily waste water

机译:非对称Si3N4中空纤维膜在油含量废水的交叉流动微滤中的应用

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摘要

The asymmetric morphology of silicon nitride (Si3N4) ceramic hollow fiber membrane with a selective spongiform outer layer was optimized by the air gap distance and the internal rate of coagulate for oil/water emulsion microfiltration. The effect of trans-membrane pressure (TMP), feed flow rate (FFR), and pH of the feeding emulsion on the separation performance were determined experimentally. Membrane fouling has increased by dissociation of oil droplets during filtration at high TMP and FFR values. Fouling phenomena were studied based on standard pore blocking model. The pH by affecting the surface charge of the Si3N4 hollow fibers and zeta potential of the feed emulsion has also been introduced as a prominent influential factor on separation efficiency. The highest values of permeate flux (390 Lm(-2) h(-1)) and oil rejection (95%) were recorded in alkaline pH. The fabricated Si3N4 ceramic membranes were completely recovered (= 99%) by simple thermal treatment at 400 degrees C.
机译:通过气隙距离和内部凝聚速率优化了具有选择性海绵状外层的氮化硅(Si3N4)陶瓷中空纤维膜的不对称形态,以实现油/水乳液微滤。实验测定了跨膜压力(TMP)、进料流速(FFR)和进料乳状液pH值对分离性能的影响。在高TMP和FFR值的过滤过程中,油滴离解增加了膜污染。基于标准孔隙堵塞模型研究了污垢现象。通过影响Si3N4中空纤维的表面电荷和进料乳液的zeta电位,pH值也是影响分离效率的重要因素。在碱性pH条件下,渗透通量(390 Lm(-2)h(-1))和油截留率(95%)的最高值被记录下来。通过在400℃下进行简单的热处理,所制备的Si3N4陶瓷膜完全恢复(;=99%)。

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