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Minimum Particle Size for Cyclone Dust Separator

机译:旋风除尘器的最小粒度

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摘要

Perkins technology wish to separate small soot particles from exhaust gases, and the question posed to the study group was to determine the feasibility of using a cyclone separator to remove these particles. Soot is mostly composed of polycyclicaromatic compounds and results from the incomplete combustion of the diesel fuel in the engine. The average size of the particles formed in the engine is in the range 3 to 10 nm in diameter, but this is known to increase within the exhaust system.ududIn the first part of this report we determine the minimum particle size that can be removed by centrifugal separation. udThe second part discusses the mechanisms for particle growth within the exhaust system in order to estimate the particle growth rate.ududIn section two we estimate the minimum particle diameter that can be removed by a cyclone separator is around one micron. This estimate is consistent with current applications of hydrocyclones. The particle size measurements by Perkins Technology together with our estimates from section three, suggest that the soot particles are an order of magnitude smaller than this. Although it may be possible to remove some particles less than one micron in diameter with a well designed high-speed cyclone, we do not think it will be possible to remove a substantial proportion of 100 nm or smaller particles.ududThe growth rate of the particles increases if the particles volume fraction or the polydispersity is increased. Therefore aggregation could be enhanced by the addition of larger particles (d > 1 µm) or water droplets (provided the water does not all vapourise) to the exhaust gas.
机译:珀金斯(Perkins)技术希望从废气中分离出细小的烟尘颗粒,研究小组面临的问题是确定使用旋风分离器去除这些颗粒的可行性。烟灰主要由多环芳族化合物组成,是由于发动机中柴油燃料不完全燃烧而产生的。发动机中形成的颗粒的平均尺寸在直径3到10 nm的范围内,但是已知在排气系统中会增加。 ud ud在本报告的第一部分中,我们确定了可以通过离心分离除去。第二部分讨论了排气系统中颗粒生长的机理,以便估计颗粒的生长速率。第二部分,我们估计旋风分离器可以去除的最小颗粒直径约为1微米。该估计与水力旋流器的当前应用相一致。珀金斯技术公司对颗粒尺寸的测量以及我们对第三部分的估计表明,烟灰颗粒比这个小一个数量级。尽管使用精心设计的高速旋风分离器可以去除直径小于1微米的某些颗粒,但我们认为不可能去除大部分100 nm或更小的颗粒。 ud ud如果增加颗粒的体积分数或多分散性,则颗粒的“ A”增加。因此,可以通过向排气中添加较大的颗粒(d> 1 µm)或水滴(前提是水不全部汽化)来增强聚集。

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