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Application of a Continuous Kinetic Model for the Hydrocracking of Vacuum Gas Oil

机译:连续动力学模型在减压粗柴油加氢裂化中的应用

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摘要

Hydrocracking is one of the most versatile petroleum refining processes for production of valuable products including gasoline, gas oil, and jet fuel. In this paper, a five-parameter continuous lumping model was used for kinetic modeling of hydrocracking of vacuum gas oil (VGO). The model parameters were estimated from industrial data obtained from a fixed bed reactor operating at an average temperature of 400 degrees C and residence time of 0.3 h. Product distributions were obtained in terms of the weight fraction of various boiling point cuts. The model parameters were estimated using the Nelder-Mead optimization procedure and were correlated with temperature. Comparison of experimental and predicted product distributions indicated that the model was successful in predicting the products from hydrocracking reactions.
机译:加氢裂化是生产有价值的产品(包括汽油,粗柴油和喷气燃料)的最通用的石油精制工艺之一。本文采用五参数连续集总模型对真空瓦斯油(VGO)加氢裂化进行动力学建模。根据从固定床反应器获得的工业数据估算模型参数,该固定床反应器的平均温度为400摄氏度,停留时间为0.3小时。根据各种沸点馏分的重量分数获得产物分布。使用Nelder-Mead优化程序估算模型参数,并将其与温度相关联。实验和预测产物分布的比较表明,该模型成功地预测了加氢裂化反应的产物。

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