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Higher energy saving with new heat integration arrangement in heat-integrated distillation column

机译:在热集成蒸馏塔中采用新的热集成装置,可进一步节省能源

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In conventional heat-integrated distillation columns (HIDiCs), the internal heat exchange is executed between the pressurized rectifying section and the stripping section, which are located at the same elevation. In such a structure, the amount of heat exchanged between two sections depends on the temperature profile of both sections. The resulting enthalpy profile inside the column departs from that in reversible distillation, which is the ideal distillation operation in view of energy conservation. More energy saving may be achieved by providing appropriate arrangement of heat exchanges between sections. The interactive graphical design method to determine the appropriate heat exchange arrangement in a previous paper was developed for a binary system. The design method was extended and applied to a multicomponent system by adopting the idea of a quasi-binary system. Also, a new HIDiC structure that can realize the outcomes of the proposed design method was developed. The economics of the proposed structure was precisely evaluated through a case study of a commercial scale column. It demonstrated that the proposed structure has attractive economics. (c) 2015 American Institute of Chemical Engineers AIChE J, 61: 3479-3488, 2015
机译:在常规的热集成蒸馏塔(HIDiC)中,内部热交换在位于相同高度的加压精馏段和汽提段之间进行。在这种结构中,两个部分之间的热交换量取决于两个部分的温度曲线。塔内产生的焓分布不同于可逆蒸馏中的焓分布,考虑到节能,这是理想的蒸馏操作。通过提供各部分之间的热交换的适当安排,可以实现更多的节能效果。针对二进制系统,开发了交互式图形设计方法来确定适当的热交换布置。通过采用准二进制系统的思想,将设计方法扩展并应用于多组件系统。此外,开发了一种新的HIDiC结构,可以实现所提出的设计方法的结果。通过商业规模色谱柱的案例研究,精确评估了所提议结构的经济性。它证明了所提出的结构具有吸引人的经济学。 (c)2015年美国化学工程师学会AIChE J,61:3479-3488,2015

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