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Experimental study on the removal of fine particles using hole-slotted collectors in wet electrostatic precipitators

机译:湿静电除尘器中孔开槽收集器去除细颗粒的实验研究

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摘要

The fine particles are considered a significant environmental pollution problem. The wet electrostatic precipitators (ESPs) are now used most widely among the advanced fine particle removal technologies. The rigid glass fiber reinforced plastics (FRP) collectors modified with hole-slotted structures were used to enhance the water film distribution over their surfaces. This paper experimentally investigated the effects of the hole-slot patterns and the operating parameters on the particle removal performance in wet ESPs using the hole-slot-structured collector. The voltage-current characteristics and the energy consumption among the different pattern collectors were discussed. Besides, the effects of the water film on the particle number concentration classification and the effects of the applied voltage and the specific collecting electrode areas (SCA) on the relative collection efficiency (RCE) were investigated and discussed. The experiment results show that the corona current of three hole-slot structured FRP collectors was higher than that of the conventional rigid collectors (CRC) at the same voltage. Using the FRP collectors with circular holes and horizontal slots could decrease the energy consumption and using the FRP collectors with vertical slots increases the energy consumption compared with the CRC when the collection efficiency was lower than 92.5%. The water film could increase the collection efficiency of the fine particles and prevent the fine particles cross through the holes and the slots. The hole-slot-structured FRP collectors were appropriate for the working conditions of high SCA and long residence time. When the water film in the hole and slotted structures was incomplete, the fine particles could pass through the collector plate to form secondary back-mixing.
机译:细颗粒被认为是一个重要的环境污染问题。湿静电除尘器(ESP)现在在先进的细颗粒去除技术中广泛使用。用空穴开槽结构改性的刚性玻璃纤维增​​强塑料(FRP)收集器用于增强其表面上的水膜分布。本文通过空穴结构集电体采用了孔槽图案和操作参数对湿差差的颗粒去除性能的影响。讨论了不同图案收集器之间的电压电流特性和能量消耗。此外,研究了研究水膜对粒子数浓度分类的影响和施加电压和特定收集电极区域(SCA)对相对收集效率(RCE)的影响。实验结果表明,三个孔隙结构FRP收集器的电晕电流高于相同电压的传统刚性收集器(CRC)的电晕电流。使用具有圆孔和水平槽的FRP收集器可以降低能量消耗,并且使用具有垂直槽的FRP收集器可以增加与CRC相比的能量消耗,而当收集效率低于92.5%时。水膜可以增加细颗粒的收集效率,并防止细颗粒通过孔和槽。孔隙结构的FRP收集器适用于高SCA的工作条件和长期停留时间。当孔和开槽结构中的水膜不完全时,细颗粒可以通过集电极板以形成二次背部混合。

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    Faculty of Metallurgical and Energy Engineering Kunming University of Science and Technology Kunming Yunnan People's Republic of China;

    Faculty of Metallurgical and Energy Engineering Kunming University of Science and Technology Kunming Yunnan People's Republic of China;

    School of Environmental Science and Engineering Shandong University Qingdao Shandong People's Republic of China;

    Technology Development Department SanRong Environmental Protection Company Jinan Shandong People's Republic of China;

    Faculty of Metallurgical and Energy Engineering Kunming University of Science and Technology Kunming Yunnan People's Republic of China;

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  • 入库时间 2022-08-19 02:02:14

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