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A novel cryogenic air separation process based on self-heat recuperation

机译:基于自热回收的新型低温空气分离工艺

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摘要

In this paper, a novel cryogenic air separation process that reduces energy consumption by self-heat recuperation is proposed. In the proposed cryogenic air separation process, heat from the top vapor stream of the column is recuperated and exchanged with heat in the bottom liquid and feed streams, using self-heat recuperation technology. As a result, not only the latent heat but also the sensible heat of the process stream is circulated in the process. Furthermore, the pressure in the column can be decreased compared with the high pressure part of a conventional cryogenic air separation system, in which high and low pressure columns are combined to exchange nitrogen latent heat with oxygen latent heat. Thus, the energy input to the main compressor located before the column can be dramatically reduced. A simulation demonstrated that the energy consumption of the proposed cryogenic air separation process with self-heat recuperation decreased by more than 36% compared with the conventional cryogenic air separation process, when producing 99.99 mol% oxygen from air.
机译:本文提出了一种新型的低温空气分离工艺,该工艺可通过自热回收减少能耗。在建议的低温空气分离工艺中,使用自热回收技术将塔顶部蒸气流中的热量回收并与底部液体和进料流中的热量进行交换。结果,在过程中不仅循环潜热,而且循环显热。此外,与传统的低温空气分离系统的高压部分相比,该塔中的压力可以降低,在传统的低温空气分离系统中,高压和低压塔相结合以将氮潜热与氧潜热交换。因此,可以大大降低输入到位于塔之前的主压缩机的能量。仿真表明,与传统的低温空气分离工艺相比,从空气中产生99.99 mol%的氧气时,所提出的具有自热回收功能的低温空气分离工艺的能耗降低了36%以上。

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