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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Effect of polydopamine deposition conditions on polysulfone ultrafiltration membrane properties and threshold flux during oil/water emulsion filtration
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Effect of polydopamine deposition conditions on polysulfone ultrafiltration membrane properties and threshold flux during oil/water emulsion filtration

机译:聚多巴胺沉积条件对油/水乳液过滤过程中聚砜超滤膜性能和阈值通量的影响

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Surface modification of porous membranes for water filtration has been extensively reported in the literature to improve fouling resistance. However, surface modification can significantly change the membrane filtration properties, sometimes resulting in more severe fouling than with the original, unmodified membrane. This study focused on demonstrating surface modification strategies and membrane comparison strategies to better understand the complex, competing phenomena occurring when membranes are surface modified. Polysulfone ultrafiltration membranes were modified with polydopamine (PDA) at different initial dopamine concentrations and deposition times. Membrane properties, including surface hydrophilicity, roughness, and zeta potential, were characterized. PDA coatings significantly increased surface hydrophilicity, but they did not markedly change the surface roughness or zeta potential. The threshold flux during oil/water emulsion filtration was determined and used as a fouling parameter for membranes modified with PDA at various modification conditions. The threshold flux increased when PDA was deposited at low initial dopamine concentrations or short coating times. However, PDA deposition at high initial dopamine concentrations or long coating times decreased the threshold flux, suggesting that a tradeoff exists between increased hydrophilicity and reduced pore size due to surface modification. An increase in membrane surface hydrophilicity was observed at all PDA deposition conditions, which tends to reduce foulant adhesion and increase threshold flux. However, extensive PDA coating significantly decreased membrane pure water permeance, suggesting that some membrane pores may have been narrowed or blocked, increasing local permeate flux through the remaining pores in the PDA-modified membranes. This higher local flux would exacerbate fouling and decrease threshold flux. Comparing unmodified and PDA-modified membranes having similar pure water permeance values, the PDA-modified membranes had higher threshold fluxes than the unmodified membranes. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在文献中已经广泛报道了用于水过滤的多孔膜的表面改性,以提高耐污垢性。但是,表面改性会显着改变膜的过滤性能,有时会导致比原始的未改性膜更严重的结垢。这项研究的重点是展示表面改性策略和膜比较策略,以更好地理解膜表面改性时发生的复杂竞争现象。用聚多巴胺(PDA)在不同的初始多巴胺浓度和沉积时间下修饰聚砜超滤膜。表征膜性质,包括表面亲水性,粗糙度和ζ电位。 PDA涂层显着提高了表面亲水性,但它们并未显着改变表面粗糙度或Zeta电位。确定油/水乳液过滤过程中的阈值通量,并将其用作在各种改性条件下用PDA改性的膜的结垢参数。当以低初始多巴胺浓度或较短的涂覆时间沉积PDA时,阈值通量增加。但是,在高的初始多巴胺浓度或较长的涂覆时间下PDA沉积会降低阈值通量,这表明在亲水性增加和由于表面改性而导致的孔径减小之间存在折衷。在所有PDA沉积条件下均观察到膜表面亲水性增加,这往往会降低污垢附着力并增加阈值通量。但是,大量的PDA涂层会显着降低膜的纯水渗透率,这表明某些膜孔可能已变窄或堵塞,从而增加了通过PDA改性膜中其余孔的局部渗透通量。这种较高的局部通量将加剧结垢并降低阈值通量。比较具有相似纯净水渗透率值的未改性膜和PDA改性膜,与未改性膜相比,PDA改性膜具有更高的阈值通量。 (C)2016 Elsevier Ltd.保留所有权利。

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