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Pyrolysis Model of Single Biomass Pellet in Downdraft Gasifier

机译:气流法气化炉中单一生物质颗粒的热解模型

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By coupling the heat transfer equation with semi-global chemical reaction kinetic equations, a one-dimensional, unsteady mathematical model is developed to describe the pyrolysis of single biomass pellet in the pyrolysis zone of downdraft gasifier. The simulation results in inert atmosphere and pyrolysis zone agree well with the published experimental results. The pyrolysis of biomass pellets in pyrolysis zone is investigated, and the results show that the estimated convective heat transfer coefficient and emissivity coefficient are suitable. The mean pyro-lysis time is 15.22%, shorter than that in inert atmosphere, and the pellet pyrolysis process in pyrolysis zone belongs to fast pyrolysis. Among the pyrolysis products, tar yield is the most, gas the second, and char the least. During pyrolysis, the temperature change near the center is contrary to that near the surface. Pyrolysis gradually moves inwards layer by layer. With the increase of pyrolysis temperature and pellet diameter, the total pyrolysis time, tar yield, char yield and gas yield change in different ways. The height of pyrolysis zone is calculated to be 1.51—3.51 times of the characteristic pellet diameter.
机译:通过将传热方程与半全局化学反应动力学方程耦合,建立了一维非稳态数学模型来描述单个生物质颗粒在下行气流气化炉热解区中的热解。在惰性气氛和热解区的模拟结果与已发表的实验结果吻合良好。对生物质颗粒在热解区的热解进行了研究,结果表明,估计的对流换热系数和发射系数是合适的。平均热解时间为15.22%,比惰性气氛下的热解时间短,热解区的颗粒热解过程属于快速热解。在热解产物中,焦油产率最高,气体次之,焦炭最少。在热解过程中,中心附近的温度变化与表面附近的温度变化相反。热解逐渐向内移动。随着热解温度和颗粒直径的增加,总热解时间,焦油收率,焦炭收率和气体收率以不同的方式变化。热解区的高度经计算为特征粒料直径的1.51-3.51倍。

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