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Superposition of DC voltage and submicrosecond impulses for energization of electrostatic precipitators

机译:直流电压和亚微秒脉冲的叠加,为静电除尘器通电

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摘要

This paper discusses the development of an impulsive microelectrostatic precipitation technology, which uses superposition of submicrosecond high-field pulses and dc electric field. Short impulses allow the application of higher voltages to the ionization electrodes of a precipitation system without the initiation of breakdown. These higher levels of electric field generate higher ionic concentrations, resulting in more efficient charging of the airborne particles, and can potentially improve precipitation efficiency. This work is focused on the analysis of the behavior of impulsive positive corona discharges in a coaxial reactor designed for precipitation studies. The efficiency of precipitation of coarse and fine particles has been investigated using different dc and impulse voltage levels in order to establish optimal energization modes.
机译:本文讨论了一种脉冲微​​静电沉淀技术的发展,该技术利用了亚微秒高场脉冲和直流电场的叠加。短脉冲允许在不引发击穿的情况下将更高的电压施加到沉淀系统的电离电极上。这些较高水平的电场会产生较高的离子浓度,从而使空气中的颗粒更有效地带电,并有可能提高沉淀效率。这项工作的重点是分析用于降水研究的同轴反应器中脉冲正电晕放电的行为。为了建立最佳的通电模式,已经使用不同的直流和脉冲电压水平研究了粗大颗粒和细小颗粒的沉淀效率。

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