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Efficiency improvement of the light gasoline fractions isomerization by mathematical modeling

机译:数学建模轻质汽油馏分异构化的效率提高

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Optimization and forecasting of light gasoline fractions isomerization is a complex technological issue, as it includes a variety of factors and independent parameters. The most effective solution is to use the mathematical modeling method of physical and chemical laws of the process. In this paper, we propose a method of intensification of the combined fractionation and isomerization processes of pentane-hexane fraction with the aim to improve the service durability of the catalyst SI-2 on the L-35-11 / 300 production unit. The developed complex mathematical model takes into account the influence of the feedstock composition, allows for assessment of the catalyst current activity and it is also a powerful optimization tool. According to the survey results the optimizing the feedstock composition will increase the octane number of the isomerate at 1.6-2.2 points.
机译:光汽油馏分异构化的优化和预测是一种复杂的技术问题,因为它包括各种因素和独立参数。最有效的解决方案是使用该过程的物理和化学定律的数学建模方法。在本文中,我们提出了一种强化戊烷 - 己烷级分的组合分馏和异构化方法的方法,其目的是改善L-35-11 / 300生产单元对催化剂Si-2的施用耐久性。开发的复杂数学模型考虑了原料组合物的影响,允许评估催化剂电流活性,并且它也是一种强大的优化工具。根据调查结果,优化原料组合物将使辛烷值增加在1.6-2.2点。

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