崔名双, 王圣烨, 牛芳, 王建朋, 刘鹏中. 平焰燃烧器煤氨火焰气固相组成实验研究[J]. 中国电机工程学报, 2025, 45(5): 1818-1825. DOI: 10.13334/j.0258-8013.pcsee.231958
引用本文: 崔名双, 王圣烨, 牛芳, 王建朋, 刘鹏中. 平焰燃烧器煤氨火焰气固相组成实验研究[J]. 中国电机工程学报, 2025, 45(5): 1818-1825. DOI: 10.13334/j.0258-8013.pcsee.231958
CUI Mingshuang, WANG Shengye, NIU Fang, WANG Jianpeng, LIU Pengzhong. Experimental Study on the Solid and Gas Phase Composition of Coal-ammonia Flame in Flat Flame Burner[J]. Proceedings of the CSEE, 2025, 45(5): 1818-1825. DOI: 10.13334/j.0258-8013.pcsee.231958
Citation: CUI Mingshuang, WANG Shengye, NIU Fang, WANG Jianpeng, LIU Pengzhong. Experimental Study on the Solid and Gas Phase Composition of Coal-ammonia Flame in Flat Flame Burner[J]. Proceedings of the CSEE, 2025, 45(5): 1818-1825. DOI: 10.13334/j.0258-8013.pcsee.231958

平焰燃烧器煤氨火焰气固相组成实验研究

Experimental Study on the Solid and Gas Phase Composition of Coal-ammonia Flame in Flat Flame Burner

  • 摘要: 将氨作为燃料部分或全部替代化石燃料是二氧化碳减排的有效途径之一。该文基于平焰燃烧器,利用热重分析仪、单反相机等检测仪器研究掺氨比对煤氨火焰中飞灰特性与气相组分的影响。结果表明:煤氨射流中,掺氨增强了对流传热作用及对煤粉的预热效果,使火焰温度与掺氨比正相关;掺氨改变了煤氨混燃中焦炭破碎应力的大小及均匀性,随着掺氨比增加(掺氨比大于20%,飞灰颗粒呈狭长状且破碎程度增加,小粒径颗粒数量增加,飞灰残炭率降低。同时,由于小粒径颗粒更高的燃烧反应速率,在热重反应第二阶段,失重速率峰从单峰转变为双峰、峰值增加,峰值所对应的温度向低温移动;随着掺氨比增加,煤氨火焰中O2、CO、CO2浓度均降低,而NOx浓度大幅增加,且其生成量受焦炭/CO/氨自由基所形成的还原体系的影响。结果可知,掺氨加剧了焦炭的破碎,降低煤氨混燃中NOx的排放仍是未来的研究重点。

     

    Abstract: Partial or completely replacing fossil fuels with ammonia as a fuel is one of the effective ways to reduce CO2 emissions. In this paper, based on the flat-flame burner, the effect of ammonia mixing ratio on the fly ash characteristics and gas phase composition in the coal ammonia flame is studied by using thermogravimetric analyzer, SLR camera and other detection instruments. The results show that ammonia doping enhances the convective heat transfer and preheating effect of pulverized coal in the coal ammonia jet, which positively correlates the flame temperature with the ammonia mixing ratio. The magnitude and uniformity of coke crushing stress in the coal-ammonia co-combustion are changed by mixing ammonia. With the increase of ammonia mixing ratio (ammonia mixing ratio is greater than 20%), the fly ash particles are narrowed and elongated, the degree of crushing increases, the number of small particles increases, and the carbon residue rate of fly ash decreases. At the same time, due to the higher combustion reaction rate of small particle size, the peak of weight loss rate changes from single peak to double peak, the peak value increases, and the temperature corresponding to the peak shifts to a lower range during the second stage of the thermogravimetric reaction. With the increase of ammonia mixing ratio, the concentrations of O2, CO and CO2 in the coal ammonia flame decrease, while the concentration of NOx increases significantly, and its formation is affected by the reduction system formed by coke/CO/ammonia radicals. In conclusion, ammonia mixing aggravates the crushing of coke, and the reduction of NOx emission in coal- ammonia co-combustion remains a key focus for future research.

     

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