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The effects of intermittent permeate flow and crossflow on membrane coalescence of oil-in-water emulsions

机译:间歇渗透流动和横流对油包水乳液膜聚结的影响

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Membrane coalescence is a chemical-free technique for breaking stable oil-in-water emulsions. In this work the effect of oil droplet residence time within the membrane porous matrix was investigated and a novel process is proposed based on intermittent permeate flow (flow or no flow) at 0.01 Hz. Polytetrafluoroethylene membranes with 0.45 and 1.20 μm nominal average pore size were used to coalesce emulsions with an average 1.5 μm droplet diameter. Experiments were carried out in a crossflow filtration cell and crossflow velocities were varied from 0.07 to 0.28 ms~(-1). Fluxes were found to increase with crossflow although oil rejection was zero, implying no concentration polarization. Results also demonstrated an improvement in coalescence performance during intermittent operation at low crossflow velocities. Under some conditions intermittent permeate flow operation produced higher permeate fluxes than without intermittent operation and is a potential novel process for membrane coalescence.
机译:膜聚结是一种用于破坏稳定的水包油乳液的无化学技术。在这项工作中,研究了油液滴停留时间在膜多孔基质内的影响,并且基于0.01Hz的间歇渗透物流(流动或流动)提出了一种新方法。具有0.45和1.20μm的聚四氟乙烯膜标称平均孔径将含有平均1.5μm液滴的乳液。在十字流过滤细胞中进行实验,并且横流速度从0.07〜0.28ms变化〜(-1)。发现助熔剂随着辐射零射流而增加,呈零,暗示无浓度极化。结果还证明了在低交叉流速间歇性操作期间的聚结性能的改善。在某些条件下,间歇渗透物流动操作产生较高的渗透助熔剂,而不是间歇运行,并且是膜聚结的潜在新方法。

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