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Numerical Simulation of Single Coal Char Particle Combustion with the Overall Gas-Phase Reaction

机译:整体气相反应的单煤焦颗粒燃烧数值模拟

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摘要

The quasi-steady state heat and mass transfer around a single coal char particle with and without CO oxidation was numerically analyzed to investigate the effect of CO oxidation on the reaction process of char. With CO oxidation, the gas temperature around the particle is increased by the exothermic heat of CO oxidation, and the particle itself also experiences a temperature increase due to the heat transfer between high-temperature gas and the particle. In addition, the generation of additional CO_(2) by CO oxidation promotes the CO_(2) gasification of char, whereas the consumption of O_(2) suppresses the char oxidation. As a result of balancing among these factors, the net reaction rate of char, which is the sum of the partial oxidation rate and CO_(2) gasification rate, with CO oxidation became larger than that without CO oxidation. Under conditions of a higher temperature and larger particle size, the net reaction rate with CO oxidation was larger than that without CO oxidation, though the partial oxidation rate with CO oxidation was smaller than that without CO oxidation because of the promoted consumption of O_(2) by CO oxidation. This result indicates that CO_(2) gasification compensates for the decrease in the net reaction rate due to the suppression of char oxidation. Therefore, CO oxidation should greatly affect the heterogeneous reaction rates of char, especially CO_(2) gasification, through changes in the temperature and compositions of the gas-phase near a coal char particle.
机译:数值分析了单个煤焦颗粒在有或没有CO氧化的情况下的准稳态传热传质,研究了CO氧化对炭反应过程的影响。对于CO氧化,由于CO氧化的放热,使颗粒周围的气体温度升高,并且由于高温气体与颗粒之间的热传递,颗粒本身也经历了温度升高。另外,通过CO氧化产生额外的CO_(2)促进了焦炭的CO_(2)气化,而消耗O_(2)抑制了焦炭氧化。由于这些因素之间的平衡,在CO氧化作用下,焦炭的净反应速率(即部分氧化速率与CO_(2)气化速率之和)的净反应速率变得比未进行CO氧化时的高。在较高温度和较大粒径的条件下,尽管由于提高了O_(2)的消耗,但CO氧化的净反应速率要比不使用CO氧化的净反应速率要大,尽管CO氧化的部分氧化速率要比不使用CO氧化的部分氧化速率要小。 )被一氧化碳氧化。该结果表明,由于抑制了焦炭氧化,CO_(2)气化补偿了净反应速率的降低。因此,CO氧化应通过改变煤焦颗粒附近气相的温度和组成来极大地影响炭的非均相反应速率,尤其是CO_(2)气化。

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