Numerical Model of a Heterogeneous Pyrolysis Reactor of Methane

IF 0.9 Q4 ENERGY & FUELS Thermal Engineering Pub Date : 2025-01-16 DOI:10.1134/S0040601524700630
L. B. Direktor, V. A. Sinelshchikov
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Abstract

A mathematical model of a high-temperature cylindrical reactor for heterogeneous pyrolysis of methane during its filtration through a moving layer formed by granules of carbonized wood is presented. The carbon matrix was modeled by spheres of the same diameter with a simple cubic packing. The carbon matrix was heated through the reactor wall. Preheated methane was fed into the lower part of the reactor. The process of pyrocarbon formation as a result of heterogeneous pyrolysis of methane was described by one gross reaction taking into account hydrogen inhibition and changes in the reaction surface. It was assumed that the rate of pyrocarbon deposition is directly proportional to the partial pressure of methane. The system of two-dimensional, nonstationary differential equations describing the operation of the reactor in a cyclic mode with periodic unloading of a portion of carbon–carbon composite and synchronous loading of carbonized wood granules was solved numerically using the DIFSUB algorithm. The reactor radius and operating parameters (specific mass flow rate of methane, carbon composite unloading frequency) were varied in calculations. Based on the obtained results, the dependences of the quality of the carbon–carbon composite (average density and maximum density spread), the composition of the hydrogen-containing gas mixture at the reactor outlet, the degree of methane conversion, the reactor productivity for carbon composite and hydrogen on the operating parameters, and the reactor radius were analyzed. Data are provided on energy consumption for heating methane and carbonized granules loaded into the reactor as well as for compensation of the endothermic effect accompanying methane pyrolysis.

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甲烷非均相热解反应器的数值模型
建立了甲烷在炭化木材颗粒形成的移动层中过滤过程的高温圆柱形反应器的数学模型。碳基体是由相同直径的球体和简单的立方填充来模拟的。碳基体通过反应器壁加热。预热过的甲烷被送入反应器的下部。考虑氢的抑制作用和反应表面的变化,用一个总反应来描述甲烷非均相热解生成焦碳的过程。假设热炭沉积速率与甲烷的分压成正比。采用DIFSUB算法对描述反应器周期性卸载部分碳-碳复合材料和同步加载炭化木粒的二维非平稳微分方程组进行了数值求解。反应器半径和运行参数(甲烷比质量流量、碳复合材料卸载频率)在计算中有所不同。在此基础上,分析了碳-碳复合材料的质量(平均密度和最大密度分布)、反应器出口含氢气体混合物的组成、甲烷转化率、碳-碳复合材料和氢的反应器生产率对操作参数的依赖关系以及反应器半径。提供了装载在反应器内的甲烷和碳化颗粒的加热能耗以及甲烷热解的吸热效应补偿的数据。
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CiteScore
1.30
自引率
20.00%
发文量
94
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