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Enhanced Collection Efficiency of Nanoparticles by Electrostatic Precipitator with Needle-Cylinder Configuration

机译:针筒式静电除尘器提高了纳米颗粒的收集效率

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Nanoparticles produced in industrial processes are conventionally removed by electrostatic precipitators (ESPs). These ESPs usually have an electrode-collector with a wire-cylinder or wire-plate configuration. We designed an ESP with a needle-cylinder configuration and compared its collection performance with that of a conventional ESP. Our ESP exhibited a corona inception voltage of around 3 to 4 kV, which was significantly lower than that of the conventional ESP. The efficiency with which it could collect NaCl particles, which were used as model nanoparticles, was 98% at -5 kV. Unlike with a conventional ESP, soft X-ray irradiation reduced the collection efficiency, probably as a result of the recombination of the positive and negative ions. The corona power ratio was 0.024 W/lpm at a collection efficiency of 98%, showing that our new design produced an extremely efficient ESP. An ESP with a needle-cylinder configuration could be used to collect nanoparticles from a wide range of processes.
机译:工业过程中产生的纳米颗粒通常通过静电除尘器(ESP)去除。这些ESP通常具有带有电极筒或电极板构造的电极集电器。我们设计了具有针筒配置的ESP,并将其收集性能与常规ESP进行了比较。我们的ESP表现出的电晕起始电压约为3-4 kV,大大低于传统的ESP。在-5 kV时,其收集用作模型纳米颗粒的NaCl颗粒的效率为98%。与传统的ESP不同,软X射线辐照降低了收集效率,这可能是正负离子复合的结果。电晕功率比为0.024 W / lpm,收集效率为98%,这表明我们的新设计产生了极为高效的ESP。具有针筒配置的ESP可用于收集来自各种工艺的纳米颗粒。

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