A Numerical Study of the Influence of Process Parameters on the Efficiency of Staged Coal Gasification Using Mixtures of Oxygen and Carbon Dioxide

I. Donskoy
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引用次数: 1

Abstract

The paper considers a staged conversion process of pulverized coal fuel in the MHPS-type gasifier, which uses mixtures of oxygen and carbon dioxide as a gasifying agent instead of air. Similar conversion processes can be applied in the process diagrams with the capture and disposal of carbon dioxide. The research tool is a reduced-order mathematical model of coal particles' conversion in a reacting gas flow. Replacement of nitrogen with carbon dioxide leads to significant changes in the gasification process characteristics: the average reaction temperature decreases, but this decrease is partially compensated by an increase in the concentration of gaseous reactants. Thus, the gasification process efficiency and the fuel conversion degree increase. Calculations make it possible to identify a range of parameters with the highest cold gas efficiency values. The influence of oxygen concentration is estimated, the dependence of the fuel conversion degree on the reaction temperature is analyzed.
工艺参数对混合氧-二氧化碳分阶段气化效率影响的数值研究
本文研究了煤粉燃料在mhps型气化炉中的分级转化过程,该气化炉使用氧气和二氧化碳的混合物作为气化剂,而不是空气。类似的转化过程可以应用于二氧化碳的捕获和处理的工艺图中。研究工具是煤颗粒在反应气流中转化的降阶数学模型。用二氧化碳代替氮气导致气化过程特性的显著变化:平均反应温度降低,但这种降低部分由气态反应物浓度的增加来补偿。从而提高了气化过程效率和燃料转化率。通过计算,可以确定一系列具有最高冷气效率值的参数。估计了氧浓度对反应的影响,分析了燃料转化率对反应温度的依赖关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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