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The Predictive Method for the Submicron and Nano-Sized Particle Collection Efficiency of Multipoint-to-Plane Electrostatic Precipitators

机译:多点到平面静电除尘器的亚微米和纳米级颗粒收集效率的预测方法

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The multipoint-to-plane electrostatic precipitator (ESP) is one type of ESP devices used for the sampling and control of nanoparticles and sub-micron particles, with the advantage of a low pressure drop and high particle collection efficiency. Several empirical equations for predicting the particle collection efficiency are available in the literature, but most of them are only applicable to wire-in-plate ESPs. For ESPs with different discharge electrodes, the empirical equations are different since the ion concentration and electric fields are different. In this paper, a predictive method is developed to calculate the particle migration velocity and the particle collection efficiency equation η(%) of multipoint-to-plane ESPs in the form of η(%) = {1 – exp{–[β1(NDeβ2) + β3(NDe) + β4]}} × 100%, in which β1, β2, β3 and β4 are regression coefficients and NDe is the Deutsch number determined by the particle migration velocity. Good agreement is obtained between the present model predictions and the experimental particle collection efficiencies obtained from the literature. It is expected that the present model can be used to facilitate the design of efficient multipoint-to-plane ESPs for nanoparticle and sub-micron particles removal in the future.
机译:多点对平面静电除尘器(ESP)是一种用于对纳米颗粒和亚微米颗粒进行采样和控制的ESP设备,具有低压降和高颗粒收集效率的优点。文献中提供了几个预测颗粒收集效率的经验公式,但其中大多数仅适用于线对板ESP。对于具有不同放电电极的ESP,由于离子浓度和电场不同,因此经验公式也不同。本文提出了一种预测方法,以η(%)= {1 – exp {– [β1( NDeβ2)+β3(NDe)+β4]}}×100%,其中β1,β2,β3和β4是回归系数,NDe是由粒子迁移速度确定的Deutsch数。当前的模型预测与从文献中获得的实验粒子收集效率之间取得了很好的一致性。可以预期的是,当前的模型可以用来促进未来纳米颗粒和亚微米颗粒去除的高效多点平面ESP设计。

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