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Improving the separation efficient of particles smaller than 2.5 micrometer by combining ultrasonic agglomeration and swirling flow techniques

机译:通过组合超声波附聚和旋流流动技术,改善小于2.5微米的颗粒的分离效率

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摘要

The method for increasing the separation efficiency of particles smaller than 2.5 micrometers by combined ultrasonic agglomeration and swirling flow technique is proposed in the article. The swirling flow creates areas with an increased concentration of particles on the outer radius of the vortex. The ultrasonic exposure on these areas leads to more efficient agglomeration and the formation of agglomerates of many times larger than the original particles. The resulting agglomerates are easily separated from the gas flow. The design of the agglomerator was developed. The vortex velocity is determined, at which ultrasonic exposure on the swirling flow increases the average particle size d32 = 2.5 micrometer to 4.5 times. The ultrasonic exposure on a rectilinear flow can increase the particle size no more than 1.6 times for comparison. The proposed method is compared with inertial gas clearing in a cyclone. It was found that the proposed combined method allows increasing the cleaning efficiency from 46% to 85% at ultrasonic exposure on the swirling flow in the agglomerator and cyclone.
机译:在制品中提出了通过组合的超声波附聚和旋转流动技术提高小于2.5微米的颗粒分离效率的方法。旋转流动在涡旋的外半径上产生具有增加的颗粒浓度增加的区域。在这些区域上的超声波暴露导致更有效的附聚和形成比原始颗粒大的次聚集物的形成。所得附聚物容易与气流分离。开发了附聚物的设计。确定涡流速度,在旋流上的超声波暴露在其上增加了平均粒径D32 = 2.5微米至4.5倍。超声波暴露在直线流动上可以增加粒径不超过1.6倍。将该方法与旋风分离器中的惯性气体进行比较。发现该组合方法允许在超声波暴露于附聚机和旋风中的旋转流动时将清洁效率从46%增加到85%。

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