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Optimal design of cryogenic distillation columns with side heat pumps for the propylene/propane separation

机译:带有侧热泵的低温蒸馏塔用于丙烯/丙烷分离的优化设计

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摘要

Propylene is one of the most important products in the petrochemical industry, which is used as raw material for a wide variety of products. The propylene/propane separation is a very energy-intensive process because their boiling points are quite similar. In addition, at atmospheric conditions, their boiling points are -47.6°C and -42.1 °C, respectively. To separate this mixture conventional columns which operate at high pressure and cryogenic distillation columns which operate at low pressure have been used, however, this approaches are still energy-intensive. This work presents energy-efficient and intensified distillation columns which are adiabatic such as the vapor recompression column (VRC) or diabatic such as columns with heat-integrated stages. A design and optimization procedure, which minimizes the energy consumption in the propylene/propane separation is presented. Conceptual design, superstructure representation, rigorous simulations and mathematical programming techniques are effectively combined to assess all the candidate distillation structures, refrigeration cycles, and heat integration possibilities simultaneously. Results showed that VRC and diabatic distillation columns with heat-integrated stages can reduce the energy consumption between 58 and 75% when compared with conventional distillation at high pressure. Furthermore, the proposed synthesis procedure derived simplified optimal distillation structures with few heat-integrated stages and still attained important energy savings.
机译:丙烯是石化工业中最重要的产品之一,被用作各种产品的原料。丙烯/丙烷分离是一个非常耗能的过程,因为它们的沸点非常相似。另外,在大气条件下,它们的沸点分别为-47.6℃和-42.1℃。为了分离这种混合物,已经使用了在高压下运行的常规塔和在低压下运行的低温蒸馏塔,但是,这种方法仍然是能源密集型的。这项工作提出了高能效的强化蒸馏塔,这些塔是绝热的,例如蒸气再压缩塔(VRC)或非绝热的,例如具有热集成级的塔。提出了一种设计和优化程序,可将丙烯/丙烷分离中的能耗降至最低。概念设计,上部结构表示,严格的模拟和数学编程技术有效地结合在一起,可以同时评估所有候选蒸馏结构,制冷循环和热集成的可能性。结果表明,与传统的高压蒸馏相比,VRC和具有热集成级的非绝热蒸馏塔可将能耗降低58%至75%。此外,所提出的合成程序获得了简化的最佳蒸馏结构,几乎没有热集成阶段,并且仍然节省了大量能源。

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