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Physicomathematical Modeling of Ignition of a Heterogeneous Mixture of Methane, Hydrogen, and Coal Microparticles

机译:甲烷,氢气和煤微粒异质混合物点火的物理化学建模

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摘要

A physicomathematical model is developed for ignition and combustion of a methane-air mixture containing coal microparticles. The model takes into account the detailed kinetics of oxidation of the gaseous methane-hydrogen-air mixture and the processes of thermal destruction of coal particles with release of volatiles (methane and hydrogen) to the gas phase, ignition and combustion of these volatiles in the gas phase, and heterogeneous reaction of carbon oxidation. It is demonstrated that addition of coal particles to the methane-air mixture in the temperature interval from 900 to 1450 K reduces the ignition delay time. Moreover, addition of coal particles to the methane-air mixture leads to shifting of the ignition limit of the gas mixture toward lower temperatures. The calculated delay time of coal ignition in the air-coal mixture and the predicted delay times of methane and coal ignition in the methane-air-coal mixture are found to be in reasonable agreement with experimental data obtained in a rapid compression machine.
机译:开发了含煤微粒的甲烷 - 空气混合物的点火和燃烧的物理化学模型。该模型考虑了气态甲烷 - 氢气混合物的氧化的详细动力学和煤颗粒的热破坏过程,释放挥发物(甲烷和氢气),对气相,点火和燃烧这些挥发物气相,碳氧化的异质反应。证明,在900至1450k的温度间隔中向甲烷 - 空气混合物中加入煤颗粒降低了点火延迟时间。此外,向甲烷 - 空气混合物中加入煤颗粒导致气体混合物对较低温度的点火极限的移位。发现空气 - 煤混合物中煤燃烧的延迟时间和甲烷 - 空气 - 煤混合物中的甲烷和煤火点的预测延迟时间,与在快速压缩机中获得的实验数据合理一致。

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