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Euler-Lagrange Modeling of entrained flow gasification of coke-biomass slurry mixture

机译:焦炭-生物质浆液混合气流床气化的Euler-Lagrange模型

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An Euler-Lagrange CFD method for co-gasification simulation of slurry mixture of pulverized petroleum coke and up to 20% biomass (wheat straw) in a pressurized entrained flow gasifier is proposed to increase the biomass contribution to green electricity generation. The gas phase is modeled as a continuum and the solid phase is modeled by a Discrete Phase Modeling (DPM) using a soft sphere approach for the particle collision dynamic. The model takes into account detailed gas phase chemistry, modeling of the pyrolysis and gasification of each individual particle, particle shrinkage, and heat and mass-transfer between the gas phase and the dispersed phase. The coke was blended with 5-20% wheat straw on mass basis. The effect of the percentage of biomass blended with coke on the flow field, gas and temperature distribution, syngas composition and particles trajectories are presented. Most important result is the quality and quantity of syngas produced when blended up to 20% biomass is similar to that of coke gasification. Additional observation is that the reactivity of coke was greatly improved by the presence of biomass. The overall conclusion of this his study is that co-gasification is possible provided that operation is properly adapted.
机译:提出了一种Euler-Lagrange CFD方法,用于在加压气流床气化炉中对气化的石油焦和不超过20%的生物质(小麦秸秆)的混合气进行气化模拟,以增加生物质对绿色发电的贡献。气相被建模为连续体,而固相则通过离散相建模(DPM)使用软球体方法对粒子碰撞动力学进行建模。该模型考虑了详细的气相化学,每个单独颗粒的热解和气化,颗粒收缩以及气相和分散相之间的传热传质建模。按质量计,将焦炭与5-20%的小麦秸秆混合。提出了生物质与焦炭混合的百分比对流场,气体和温度分布,合成气组成和颗粒轨迹的影响。最重要的结果是,当混合的生物质含量高达20%时,生成的合成气的质量和数量与焦化气化相似。另外的观察结果是,生物质的存在极大地提高了焦炭的反应性。他的研究的总体结论是,只要操作适当,就可以进行共气化。

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