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Combined Wettable/Non-wettable Filter for Mist Purification

机译:可与水混合的组合/ Non-wettable雾过滤器净化

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摘要

Previous studies byAgranovski and Braddock [1] show that wettable filters are very efficient at collecting small liquid aerosols. However, a major problem associated with wettable filters is the breakthrough process associated with the destruction of film covering the fibres, and the removal of relatively large droplets by the carrier gas passing through the rear surface of the filter. A non-wettable filter is relatively efficient at collecting large droplets and discarding them down its front face [2]. These two types of filters can be combined in layers to make use of these distinctive properties. The best arrangement is where the carrier gas passes first through the wettable filter, and then through the non-wettable filter. Where there is a contact between the two filters, interface effects assist the filtration and filter system drainage. The filtration mechanisms are enhanced when the filter box is tilted so that gravity partially opposes the drag forces on the liquid in the filter. In the current paper, the results of experimental analysis of combined filtration systems are presented, and further steps towards industrial design are discussed.
机译:先前的研究byAgranovski和布拉多克[1]显示,可与水混合的过滤器是非常有效的收集小液体气溶胶。主要问题与可与水混合的过滤器突破过程相关薄膜覆盖在纤维的破坏,相对较大的水滴的载气通过后的表面过滤器。有效地收集大水滴丢弃了其正面[2]。两种类型的过滤器可以组合成层利用这些独特的性质。最好的安排是载气通过的地方首先通过可与水混合的过滤器,然后通过non-wettable过滤器。接触这两个过滤器,接口协助过滤和过滤系统的影响排水。当过滤箱倾斜,这样重力部分反对的阻力作用的液体在过滤器。结合过滤的实验分析系统介绍和进一步的步骤工业设计进行了讨论。

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