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Optimization of MTO Olefins Separation Process

机译:优化MTO烯烃分离过程

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摘要

The separation process and the utility were considered simultaneously in order to reduce the cooling capacity of the propylene refrigeration system, and even to completely remove it. Two new types of heat pump distillation processes were proposed. The software Aspen Plus was used to simulate different heat pump distillation processes of ethylene and propylene to determine operating parameters and the best separation processes. The results show that the cold and hot utility would be reduced by 44.30% and 70.64% respectively when B-type and A-type heat pump distillation processes were used for ethylene and propylene separately. Furthermore, the temperature difference between hot and cold streams decreases after optimization by analyzing the T-H diagram. The energy has been more reasonably used, which proves the proposed processes are appropriate and effective.
机译:同时考虑分离过程和本实用程序,以降低丙烯制冷系统的冷却能力,甚至完全取出它。提出了两种新型的热泵蒸馏过程。软件Aspen Plus用于模拟乙烯和丙烯的不同热泵蒸馏过程,以确定操作参数和最佳分离过程。结果表明,当B型和型热泵蒸馏过程分别用于乙烯和丙烯时,冷热效用分别减少44.30%和70.64%。此外,通过分析T-H图来优化后,热流和冷流之间的温差降低。能量更合理地使用,这证明了所提出的过程是合适的和有效的。

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