用麻风树植物油对逆流反应器进行油脂蒸馏处理的 cfd 建模与模拟

Pablo Vizguerra Morales, Fabian S. Mederos Nieto
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引用次数: 0

摘要

在这项工作中,对微型逆流反应器进行了 CFD 分析和模拟,并将结果与 CMP+L 研究中心的排水床反应器(TBR)进行了比较。这项研究的重要意义在于找到逆流反应器的数学模型,以便从麻风树植物油中生产清洁燃料,并在未来将其推广到工业水平。在加氢处理过程中,使用了商用 CoMo/γ-Al2O3 催化剂,并以麻风树植物油为原料。CFD 模拟考虑的操作条件为温度 380 °C、压力 8 MPag、LHSV 8.0 h-1。反应器模型考虑了 13 种甘油三酯加氢裂化反应生成可再生燃料的反应机理。在 Fluent 18.2 中进行了瞬态三维 CFD 模拟,考虑了标准 k-ϵ 湍流模型、欧拉多相模型和多孔介质模型,得到的结果与实验结果非常相似,甘油三酯的转化率为 0.996%,液体温度的停留时间为 169 秒,而在模拟中为 200 秒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CFD MODELING AND SIMULATION OF A COUNTERCURRENT REACTOR OF HIDROTREATMENT PROCESS WITH JATROPHA CURCAS L. VEGETABLE OIL
In this work, a microscale countercurrent reactor was analyzed and simulated in CFD, and the results were compared with a drained bed reactor (TBR) which is held in the CMP+L research center. The importance of this study is to find the mathematical model of the countercurrent reactor to produce clean fuels from Jatropha Curcas L. vegetable oil and in the future scale it to an industrial level. For the hydrotreatment process, a commercial CoMo/γ-Al2O3 catalyst was used, and Jatropha Curcas L vegetable oil was used as raw material. The operating conditions that were considered for the CFD simulation were temperature 380 °C, pressure 8 MPag, LHSV 8.0 h−1. The reactor model considers a reaction mechanism 13 hydrocracking reactions of triglycerides towards renewable fuels. The CFD simulation was carried out in Fluent 18.2 in a transient state and in 3 dimensions, considering the standard k-ϵ turbulence model, the Eulerian multiphase model and the porous medium model, obtaining results very similar to the experimental ones, with a conversion of triglycerides of 0.996% and the retention time of the liquid temperature was 169 seconds and in the simulation is 200 seconds, the molar concentration profiles of the products were obtained whereby this model can be applied to the industrial scale.
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