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Improving gasoline quality produced from MIDOR light naphtha isomerization unit

机译:提高MIDOR轻石脑油异构化装置生产的汽油质量

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Isomerization process became one of the best gasoline production sources, as it gives a high octane product while saving environment from pollution impacts. This paper presents a practical study that aims to improve the gasoline quality and economic income of an existing light naphtha isomerization unit used for octane improvement. The study included selecting the optimum combination of isomerization unit equipment that gives better product specifications for a specified feed. Eight scenarios were studied and simulated to predict the product specs. The original studied unit is MIDOR light naphtha isomerization unit at Alexandria-Egypt that recycles the unconverted hexane (C6). The other studied scenarios were adding fractionators for separating feed iso-pentanes, and recycling unconverted pentanes, hexanes and/or combinations of these fractionators. The results show a change in octane number of gasoline product for a specific feed. Once through process with no extra fractionators has lower octane number of 81 while that with de-iso-pentanizer–de-pentanizer and de-hexanizer produces gasoline with 92.3 octane number. Detailed economic study was done to calculate the return on investment “ROI” for each process option based on equipment, utilities, feed and product prices. Once through simple isomerization unit had the lowest ROI of 14.3% per year while the combination of De-iso-pentanizer with the De-hexanizer had the best ROI of 26.6% per year.
机译:异构化工艺成为最好的汽油生产来源之一,因为它可以提供高辛烷值的产品,同时又可以保护环境免受污染的影响。本文提出了一项旨在提高汽油质量和现有辛烷值改良用轻石脑油异构化装置的经济收入的实践研究。研究包括选择异构化装置的最佳组合,从而为指定的进料提供更好的产品规格。对八个场景进行了研究和仿真,以预测产品规格。最初研究的单元是亚历山大-埃及的MIDOR轻石脑油异构化单元,该单元可回收未转化的己烷(C6)。其他已研究的方案是添加用于分离进料异戊烷的分馏塔,以及回收未转化的戊烷,己烷和/或这些分馏塔的组合。结果表明,特定进料的汽油产品的辛烷值发生了变化。一旦通过过程,不使用额外的分馏塔,则辛烷值较低,而脱异戊烷-脱戊烷和脱己烷的辛烷值较低,而辛烷值为92.3。进行了详细的经济研究,以根据设备,公用事业,饲料和产品价格计算每个工艺选项的投资回报率“ ROI”。一旦通过简单异构化单元,每年的最低ROI为14.3%,而去异戊烷与脱己烯的组合的最佳ROI为每年26.6%。

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