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Liquid-liquid coalescence filtration.

机译:液-液合并过滤。

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Coalescence filtration is very effective for the separation of secondary emulsions that contain water droplets with diameters less than 50 micron. The factors that control the performance of coalescer filter media are fiber size and wettability. High wettability materials for water-in-oil dispersion promote coalescence. In this paper, new experimental results investigating the performance non-woven filter media glass fiber augmented with polymer nanofiber are presented in relation to the relevant parameters (amount of polymer nanofiber, fiber size, and wettability). A number of factors influence the efficiency and the economics of the separation of dispersed liquid drops in an immiscible liquid-liquid mixture.; The first and second objective of this work is to determine the effect of quantity of polymer nanofiber and the effect of fiber diameter in the liquid-liquid coalescence system.; One of the important factors that control the performance of filter media in the separation is the fiber size. As the fiber diameter is decreased, separation efficiency is increased. The experimental results in this work show that adding nanofibers to conventional micron sized fibrous filter media improves the separation efficiency of the filter media but also increases the pressure drop.; The third objective of this work is to determine the effect of the wettability on the coalescence mechanism. Experimental results from tests on coated glass rods are presented. Three different silanes are deposited on the glass rod surfaces to change the surface wettability. Flow of water-in-oil emulsion past the glass rods are observed.
机译:聚结过滤对于分离包含直径小于50微米的水滴的辅助乳液非常有效。控制聚结器过滤介质性能的因素是纤维尺寸和润湿性。用于油包水分散的高润湿性材料可促进聚结。在本文中,针对相关参数(聚合物纳米纤维的数量,纤维尺寸和润湿性),提出了研究用聚合物纳米纤维增强性能的非织造过滤介质玻璃纤维的新实验结果。许多因素影响在不混溶的液-液混合物中分离分散液滴的效率和经济性。这项工作的第一个和第二个目的是确定聚合物纳米纤维数量的影响以及液-液聚结系统中纤维直径的影响。控制分离过程中过滤介质性能的重要因素之一是纤维尺寸。随着纤维直径的减小,分离效率提高。这项工作的实验结果表明,将纳米纤维添加到常规的微米级纤维状过滤介质中不仅可以提高过滤介质的分离效率,还可以增加压降。这项工作的第三个目标是确定润湿性对聚结机理的影响。给出了在涂层玻璃棒上进行测试的实验结果。三种不同的硅烷沉积在玻璃棒表面以改变表面润湿性。观察到油包水乳液流过玻璃棒。

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