燃烧空气预热加湿提高热水锅炉效率

Q2 Engineering
Anastasija Zeiza-Seleznova, Raimonds Bogdanovičs, Aleksandrs Zajacs
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引用次数: 0

摘要

能源效率是当今最紧迫的话题之一。随着生活水平的提高,能源消耗也在增加。高效的产热,即能源的高效利用,是在最佳锅炉负荷下实现的。第二个紧迫的问题是保护环境免受污染。燃烧不同类型的燃料以产生热量或能量的过程会产生排放物,对环境产生负面影响。改善空气质量的解决方案之一是减少供热设备在生产过程中的排放。该科学论文考虑了对燃烧空气系统进行预热和加湿的可能性,以提高锅炉的效率并减少烟道气中有害排放物的数量。在安装燃烧空气预热加湿系统前后计算锅炉效率值,并使用Testo 350烟气分析仪进行烟气分析测量。烟气分析的计算和测量表明,燃烧空气预热加湿系统使锅炉房效率提高了15%,氮氧化物排放量减少了70%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preheating and Humidification of the Combustion Air to Increase the Hot Water Boiler Efficiency
Energy efficiency is one of the most pressing topics now. Energy consumption in-creases as living standards rise. Efficient heat production, i.e. efficient use of energy, is achieved with optimal boiler load. The second pressing issue is the protection of the environment from pollution. The process of burning different types of fuels to produce heat or energy results in emissions that can have negative impacts on the environment. One of the solutions to improve air quality is to reduce emissions from heating plants during their production. The scientific paper considers the possibility of a preheating and humidification for combustion air system to increase the efficiency of the boiler and reduce the amount of harmful emissions in flue gases. The boiler efficiency values were calculated before and after the installation of the preheating and humidification system for the combustion air, and measurements of the flue gas analysis were carried out using a Testo 350 flue gas analyzer. Calculations and measurements for flue gas analysis have shown that the combustion air preheating and humidification system increases the boiler house efficiency by 15 % and re-duces nitrogen oxide emissions by 70 %.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
21
审稿时长
12 weeks
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