Low NOx, high-efficiency multistaged burner: fuel-oil results

J. Mulholland, R. Srivastava
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引用次数: 4

Abstract

This paper discusses the fuel-oil portion of an evaluation, utilizing a multistaged combustion burner designed for in-furnace NOx control and high combustion efficiency, for high nitrogen-content fuel and waste-incineration application in a 0.6-MW package boiler simulator. A low-NOx precombustion chamber burner was reduced in size by about a factor of two (from 600 to 250 ms first-stage residence time) and coupled with (1) air staging, resulting in a three-stage configuration, and (2) natural gas fuel staging, yielding up to four stoichiometric zones. Natural gas, doped with ammonia to yield a 5.8% fuel nitrogen content, and distillate fuel oil, doped with pyridine to yield a 2% fuel nitrogen content, were used to simulate high nitrogen content fuel/waste mixtures. The multistaged burner reduced NO emissions by 85% from emission levels from a conventional unstaged burner mounted on a commercial package boiler. A minimum NO emission level of 110 ppm was achieved in the fuel-oil tests, from a level of 765 ppm for conventional firing.
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低氮氧化物,高效多级燃烧器:燃油效果
本文讨论了燃油部分的评价,利用多级燃烧燃烧器设计的炉内NOx控制和高燃烧效率,高含氮燃料和垃圾焚烧应用在0.6 mw包式锅炉模拟器。低氮氧化物预燃室燃烧器的尺寸减少了大约两倍(第一级停留时间从600毫秒减少到250毫秒),并加上(1)空气分级,形成三级配置,(2)天然气燃料分级,产生多达四个化学计量区。用掺氨的天然气和掺吡啶的馏分燃料油来模拟高氮含量的燃料/废物混合物,天然气的燃料氮含量为5.8%,馏分燃料油的燃料氮含量为2%。多级燃烧器比安装在商业锅炉上的传统无级燃烧器的排放水平减少了85%的NO排放。在燃油测试中达到了110 ppm的最低NO排放水平,而传统燃烧的水平为765 ppm。
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