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Simulation, exergy analysis and application of diabatic distillation to a tertiary amyl methyl ether production unit of a crude oil refinery

机译:绝热蒸馏的模拟,火用分析及在原油精炼厂叔戊基甲基醚生产装置中的应用

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This paper presents the results of a detailed exergy analysis of a tertiary amyl methyl ether (TAME) unit of a crude oil refinery and the application of diabatic distillation to the depentanizer tower of the unit. Diabatic distillation is a separation process in which heat is not only supplied to the reboiler and extracted from the condenser [as in a conventional (adiabatic) distillation column], but is also transferred inside the column. The process enables operation to approach equilibrium conditions, thus reducing exergy losses and increasing exergy effectiveness. In a TAME unit of a refinery, isoamylenes are converted to TAME. Before transforming the isoamylenes in the reactors, it is necessary to recover them from a catalytic gasoline stream by a depentanization process. The exergy losses of this depentanization process represent about 70% of the total exergy losses of the unit. The results of the exergy analysis of the TAME unit are presented and a detailed exergy analysis of the conventional adiabatic depentanizer column is conducted for comparison purposes. Then, the application of diabatic distillation to the system is evaluated by using cooling water circulating in series from tray to tray in the rectification section and by making the steam emanating from the reboiler circulate in series from tray to tray in the stripping section. The results in terms of the reduction of exergy losses, heating and cooling media flow rates, and cost effectiveness of the diabatic option for the depentanizer section of the plant are compared to the original adiabatic system, and the effect of the diabatization on the overall exergy performance parameters of the depentanizer section and on the whole TAME unit, are presented in this paper.
机译:本文介绍了对原油精炼厂叔戊基甲基醚(TAME)装置进行详细的火用分析的结果,以及将非绝热蒸馏在该装置的脱戊烷塔中的应用。绝热蒸馏是一种分离过程,其中不仅将热量提供给再沸器并从冷凝器中提取热量(如在常规(绝热)蒸馏塔中一样),而且还将热量传递到塔内。该过程使操作能够接近平衡条件,从而减少了火用损失并提高了火用效率。在精炼厂的TAME单元​​中,异戊烯转化为TAME。在将异戊烯在反应器中转化之前,有必要通过脱戊烷工艺从催化汽油流中回收它们。该脱戊烷过程的本能损失约占该装置总本能损失的70%。介绍了TAME装置的火用分析结果,并进行了常规绝热脱戊烷塔的详细火用分析,以进行比较。然后,通过使用在精馏区中从塔盘到塔盘串联循环的冷却水,并通过使从再沸器发出的蒸汽在塔顶分离器中从塔盘到塔盘串联循环,来评估非绝热蒸馏在系统中的应用。在减少了火用损失,加热和冷却介质流速以及将工厂的脱戊烷塔部分的非绝热选件的成本效益方面的结果与原始绝热系统进行了比较,并且进行了绝热对总体火用的影响本文介绍了脱戊烷塔部分以及整个TAME单元​​的性能参数。

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