首页> 外文期刊>Journal of Chemical Engineering of Japan >Improvement of the Deethanizing and Depropanizing Fractionation Steps in NGL Recovery Process Using Dividing Wall Column
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Improvement of the Deethanizing and Depropanizing Fractionation Steps in NGL Recovery Process Using Dividing Wall Column

机译:使用分隔壁塔改进NGL回收过程中的脱乙烷和脱丙烷分馏步骤

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摘要

In this work, our aim is to utilize a dividing wall column to improve the performance of the deethanizing and depropanizing fractionation steps in natural gas liquid processing. Starting from an initial conventional column sequence, the initial designs of the conventional dividing wall column and a top dividing wall column are obtained by maintaining the number of trays. In succession, they are optimized to reduce the energy consumption using factorial design. The results show that the conventional dividing wall column and the top dividing wall column can offer many benefits to the system, e.g., curbing the operating cost including refrigeration cost, and minimizing the reboiler and condenser duty. Furthermore, by using a dividing wall column, both the purity of ethane and its recovery rate are increased. The influence of utility prices on the operating cost saving of the conventional and the top dividing wall columns is also investigated. In addition, to further enhance the dividing wall column performance, heating is integrated on the top and an interreboiling system is installed at the bottom section of the dividing wall column.
机译:在这项工作中,我们的目标是利用分隔壁塔来提高天然气液体加工中脱乙烷和脱丙烷分馏步骤的性能。从最初的常规塔顺序开始,通过保持塔板数来获得常规分隔壁塔和顶部分隔壁塔的初始设计。继而,使用析因设计对它们进行了优化以降低能耗。结果表明,传统的分隔壁塔和顶部分隔壁塔可为系统提供许多好处,例如,减少包括制冷成本在内的运行成本,并最大程度地减少再沸器和冷凝器的负荷。此外,通过使用隔壁塔,乙烷的纯度及其回收率均提高。还研究了公用事业价格对传统隔墙和顶部隔墙塔节省运营成本的影响。另外,为了进一步提高分隔壁塔的性能,在顶部集成了加热装置,在分隔壁塔的底部安装了互沸系统。

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