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Experimental study on combustion, flame and NOx emission of pulverized coal preheated by a preheating burner

机译:预热燃烧器预热煤粉燃烧,火焰和NOx排放的实验研究

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Experimental researches on combustion characteristics of pulverized Ningdong bitumite preheated by a preheating burner were carried out in a 0.2 MW coal preheating combustion test rig, and the effects of preheating temperature, secondary air equivalence ratio and the positions of tertiary air nozzles on combustion, flame and NOx emissions of preheated fuels were studied. The results showed that the 0.2 MW coal preheating combustion test rig can operate stably and the combustion efficiency can be higher than 97% while the NOx emissions are lower than 100 mg/Nm(3). With the increase of preheating temperature, NOx emissions increase, and the combustion efficiency does not change obviously. With the increase of secondary air equivalence ratio, the combustion efficiency increases, and NOx emissions increase as well. With the increase of the distance between the tertiary air nozzle and the preheated fuel nozzle, NOx emissions decrease, and the combustion efficiency decreases as well. The flame characteristic is not sensitive to preheating temperature, but closely related to the air distribution of down-fired combustor. With reasonable air supply positions, flameless combustion can be realized.
机译:在0.2MW煤预热燃烧试验台中进行预热燃烧器预热的粉碎宁东比基石燃烧特性的实验研究,以及预热温度,二级空气等效比和燃烧,火焰和燃烧研究了预热燃料的NOx排放。结果表明,0.2MW煤预热燃烧试验台可以稳定运行,燃烧效率可以高于97%,而NOx排放低于100mg / nm(3)。随着预热温度的增加,NOx排放增加,燃烧效率不会显而易见。随着二级空气等效率的增加,燃烧效率增加,也增加了NOx排放量。随着叔空气喷嘴和预热燃料喷嘴之间的距离的增加,NOx排放减少,并且燃烧效率也降低。火焰特性对预热温度不敏感,但与下燃烧燃烧器的空气分布密切相关。通过合理的空气供应位置,可以实现无毛燃烧。

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