Recent advances in electrostatic precipitation of particles from flue gases generated by domestic heating appliances. A brief outlook

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Anatol Jaworek, Artur Marchewicz, Arkadiusz T. Sobczyk, Andrzej Krupa, Tadeusz Czech
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Abstract

Winter season is the time of increased emission of exhaust gases from household heating appliances containing particulate matter (PM) and other noxious contaminants. Many old buildings and single houses, particularly at rural and small town regions, still use stoves, fireplaces or ovens to flat heating. Besides qualified fuels like coal or biomass pellets, all kinds of wastes are also burned in many cases, producing not only mineral particles but also toxic volatile organic compounds or other carcinogenic species. To solve the problem of high level of emission of solid particles and organic-compound molecules different constructions of electrostatic precipitators, which can remove such particles, have been developed in last two decades, which were designed to operate downstream of small domestic boilers. Such electrostatic precipitator must comply with the ECODESIGN emission limits, which set the emission level at 20 mg/m3, for biomass. The mass collection efficiency should be higher than 95 % to obtain this emission level. This brief review presents different constructions of electrostatic precipitators designed to be used for the removal of fly ash particles from domestic heating appliances.

从家用取暖设备产生的烟气中静电析出微粒的最新进展。简要展望
冬季是家用取暖设备废气排放增加的季节,废气中含有颗粒物(PM)和其他有害污染物。许多老式建筑和独栋房屋,特别是在农村和小城镇地区,仍然使用炉灶、壁炉或烤箱取暖。除了煤或生物质颗粒等合格燃料外,很多情况下还燃烧各种废弃物,不仅产生矿物质颗粒,还产生有毒的挥发性有机化合物或其他致癌物质。为了解决大量排放固体颗粒和有机化合物分子的问题,在过去二十年中开发出了不同结构的静电除尘器,可以去除这些颗粒,这些静电除尘器是为在小型家用锅炉下游运行而设计的。这种静电除尘器必须符合 ECODESIGN 排放限值,其中规定生物质的排放水平为 20 mg/m3。要达到这一排放水平,质量收集效率应高于 95%。本文简要介绍了用于去除家用加热设备中飞灰颗粒的静电除尘器的不同结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Electrostatics
Journal of Electrostatics 工程技术-工程:电子与电气
CiteScore
4.00
自引率
11.10%
发文量
81
审稿时长
49 days
期刊介绍: The Journal of Electrostatics is the leading forum for publishing research findings that advance knowledge in the field of electrostatics. We invite submissions in the following areas: Electrostatic charge separation processes. Electrostatic manipulation of particles, droplets, and biological cells. Electrostatically driven or controlled fluid flow. Electrostatics in the gas phase.
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