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Modeling, operability analysis and optimization of isooctane production over solid catalyst

机译:固体催化剂中异辛烷产量的建模,可操作性分析与优化

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The main object of this study is modeling and simulation of isooctane production through isobutane alkylation in a multi stage fixed bed reactor at steady state condition. A heterogeneous one-dimensional model is developed based on the mass and energy conservation laws to calculate optimal operating condition of the reactors based on a multi objective optimization model. The simulation results show that there is an optimum value for olefin concentration in the feed stream to maximize process selectivity and isooctane production capacity. Then, the optimum butene concentration is calculated by TOPSIS decision-making method based on developed Pareto front. In addition, the performance of alkylation process to produce isooctane is analyzed, and the predicted component molar flow rate, conversion, temperature, and selectivity are presented.
机译:本研究的主要目的是在多段固定床反应器中,对稳态条件下异丁烷烷基化生产异辛烷的过程进行建模和模拟。基于质量和能量守恒定律,建立了一个非均质一维模型,用于计算基于多目标优化模型的反应器最佳操作条件。模拟结果表明,为了最大限度地提高工艺选择性和异辛烷生产能力,进料流中的烯烃浓度存在一个最佳值。然后,基于发展的帕累托前沿,采用TOPSIS决策方法计算丁烯的最佳浓度。此外,还对烷基化法生产异辛烷的性能进行了分析,给出了预测的组分摩尔流量、转化率、温度和选择性。

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