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NO emissions under pulverized char combustion in O_2/CO_2/H_2O preheated by a circulating fluidized bed

机译:循环流化床预热的O_2 / CO_2 / H_2O煤粉燃烧中NO排放

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The char combustion characteristics and NO emission characteristics of O-2/CO2/H2O preheated by a circulating fluidized bed were studied; such analysis can simulate the actual wet flue gas recirculation process in the preheating combustion process. The study was divided into two parts: the preheating characteristics and the combustion characteristics. During preheating, the preheating temperature decreased as the steam concentration increased. In addition, both CO2 and H2O reacted with char in the gasification reactions, and the steam shift reaction occurred, so the CO concentration decreased and the H-2 concentration increased. As the steam concentration increased, the reduction ratio of fuel-nitrogen to N-2 decreased, indicating that steam hindered the nitrogen reduction process during preheating. During combustion, as the steam concentration increased, the combustion temperature variation in the region near the down-fired combustion chamber (DFC) inlet decreased, while the combustion temperature variation in the region away from the DFC inlet increased. The steam shift reaction was weakened along the path of the DFC. The NO emissions gradually increased as the steam concentration increased because the content of unstable nitrogenous compounds from the pre-circulating fluidized bed (PCFB) participating in the chemical reactions in the DFC increased. Under these conditions, the combustion efficiencies were all above 99.0%.
机译:研究了循环流化床预热的O-2 / CO2 / H2O的焦炭燃烧特性和NO排放特性。这样的分析可以模拟在预热燃烧过程中实际的湿烟气再循环过程。研究分为两部分:预热特性和燃烧特性。在预热期间,随着蒸汽浓度的增加,预热温度降低。另外,CO 2和H 2 O在气化反应中均与焦炭反应,发生蒸汽变换反应,因此CO浓度降低,H-2浓度升高。随着蒸汽浓度的增加,燃料氮与N-2的还原率降低,这表明蒸汽阻碍了预热过程中的氮还原过程。在燃烧期间,随着蒸汽浓度的增加,向下燃烧燃烧室(DFC)入口附近区域的燃烧温度变化减小,而远离DFC入口的区域中的燃烧温度变化增加。沿着DFC的路径,蒸汽变换反应减弱。随着蒸汽浓度的增加,NO排放逐渐增加,这是因为参与DFC中化学反应的预循环流化床(PCFB)中不稳定的含氮化合物的含量增加了。在这些条件下,燃烧效率均高于99.0%。

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