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首页> 外文期刊>The Korean journal of chemical engineering >Modeling Percolative Fragmentation during Conversion of Entrained Char Particles
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Modeling Percolative Fragmentation during Conversion of Entrained Char Particles

机译:在夹带炭颗粒转化过程中模拟渗透性破碎

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摘要

A numerical model of carbonaceous particle conversion under chemical and external diffusion control is proposed. The model accounts for different classes of particles which undergo chemical conversion in parallel with percolative fragmentation. It applies to typical conditions of entrained flow reactors. The system of algebraic and differential equations has been numerically solved. Results include the total carbon conversion as well as the determination of particle properties along the reactor. The model correctly predicts the change of the conversion rate at varying temperature, initial oxidant concentration and excess oxidant ratio. The influence of percolation parameters is also relevant and claims further investigations for more accurate determination. A comparison with experimental data available in literature is also provided.
机译:建立了化学和外部扩散控制下碳质颗粒转化的数值模型。该模型解释了不同类别的颗粒,这些颗粒经历了与渗透性破碎同时发生的化学转化。它适用于气流床反应器的典型条件。代数和微分方程组已得到数值求解。结果包括总碳转化率以及沿着反应器的颗粒性质的确定。该模型可以正确预测在不同温度,初始氧化剂浓度和过量氧化剂比下转化率的变化。渗透参数的影响也很重要,要求进一步研究以更准确地确定。还提供了与文献中可用的实验数据的比较。

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