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Methodology Development for Designing Energy Efficient Distillation Column Systems

机译:设计节能蒸馏塔系统的方法学发展

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摘要

Distillation is the primary separation process widely used in the industrial chemical processing. Although it has many advantages, the main drawback is its large energy requirement, which can significantly influence the overall plant profitability. However, the large energy requirement of these processes can be systematically reduced by using driving force and energy integration methods. This paper presents a methodology development for designing energy efficient distillation column systems based on those two methods. Accordingly, the proposed methodology consists of four hierarchical steps. In the first step, the system of distillation column for multicomponent separation is designed based on the conventional distillation column design method. Then, the conventional distillation columns systems design is improved in terms of energy saving by using driving force method in the second step. It is expected in the third step that the distillation columns systems design can be further improved in terms of energy saving by using energy integration method. Finally, the distillation column systems design is evaluated in in terms of economic performance. By applying the proposed methodology, it is possible to make an early assumption on sequence of distillation column systems that is the best in terms of energy saving.
机译:蒸馏是工业化学过程中广泛使用的主要分离工艺。尽管它具有许多优点,但主要缺点是需要大量能源,这可能会严重影响整个工厂的盈利能力。但是,可以通过使用驱动力和能量集成方法来系统地减少这些过程的大量能源需求。本文介绍了基于这两种方法设计节能蒸馏塔系统的方法学发展。因此,所提出的方法包括四个分层步骤。第一步,基于常规蒸馏塔设计方法设计用于多组分分离的蒸馏塔系统。然后,在第二步骤中通过使用驱动力方法在节能方面改进了常规蒸馏塔系统的设计。在第三步骤中,期望通过使用能量集成方法在节能方面可以进一步改善蒸馏塔系统的设计。最后,根据经济性能评估蒸馏塔系统的设计。通过应用所提出的方法,可以对节能方面最好的蒸馏塔系统顺序进行早期假设。

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