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MicrofiIt ration of Deforming Droplets

机译:形成液滴的微细比例

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摘要

Control of permeate flux is important in micro-filtration processes as it influences trans-membrane pressure and fouling of a membrane. Particles of vegetable oil ranging from 1 to 15 μm were passed through a 4 μm slotted pore membrane at various flux rates. Various intensities of shear were applied parallel to the membrane by vibrating the membrane at different frequencies. At the lowest permeate flux rate (200 lm~(-2) hr~(-1)) the membrane fouled because the drag force was too low to squeeze the deformable oil droplets through the membrane. At higher flux rates the drag force over the oil droplets increased and deformation, and passage, of oil droplets into the permeate was possible. Without any applied shear highest trans-membrane pressure was observed due to fouling, which could be modelled by a pore blocking model. A positive displacement pump was used in experiments which maintained nearly constant flow of permeate. Flux rates varied from 200 up to 1200 lm~(-2) hr~(-1), and the highest shear rate used was 8,000 s~(-1). The experimental system provided a simple technique for assessing the behaviour of the microfilter during the filtration of these deforming particles.
机译:控制渗透物的控制在微过滤过程中是重要的,因为它影响膜压力和膜的污垢。在各种助焊剂速率下通过1至15μm的植物油颗粒通过4μm开槽的孔膜。通过在不同频率下振动膜并平行于膜施加各种剪切强度。在最低渗透助焊剂速率下(200 LM〜(-2)HR〜(-1))膜被污染,因为拖曳力太低而无法通过膜挤压可变形的油滴。在较高的助焊器速率下,油滴上的拖曳力增加和变形,并通过渗透物中的油滴。由于污垢,没有任何施加的剪切最高的跨膜压力,这可以通过孔阻挡模型进行建模。在实验中使用正排量泵,其保持几乎恒定流动的渗透物。磁通率从200多达1200升〜(-2)HR〜(-1)变化,使用的最高剪切速率为8,000 s〜(-1)。实验系统提供了一种简单的技术,用于评估在这些变形颗粒的过滤期间微过滤器的行为。

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