Absorption-compression hybrid refrigeration analysis and application for energy conservation of cryogenic separation in propane dehydrogenation

IF 3.9 2区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computers & Chemical Engineering Pub Date : 2023-09-01 DOI:10.1016/j.compchemeng.2023.108336
Wenjing Li, Yang Yang, Qiao Zhang, Xiao Feng
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Abstract

Cryogenic separation is an energy extensive process in chemical industries and compression refrigeration (CR) is the most common refrigeration technology with huge energy consumption and carbon emission. Based on the principle and thermodynamic analysis of absorption refrigeration (AR) and CR, this paper puts forward serial AR-CR combined absorption-compression hybrid refrigeration (ACHR) technology as a substitution for traditional CR to conserve both power consumption and carbon emission. Industrial propane dehydrogenation is employed and the ACHR is introduced to accomplish the cryogenic separation by refrigerating temperature and load division. The phase transition of refrigerated streams encompassed by AR is crucial to the performance of ACHR. When the inter-connected temperature is determined to be 6 °C, the optimal refrigeration scenario is obtained. Through partial substitution of AR driven by waste heat for CR, the results show that the hybrid refrigeration can save 48.73% of power consumption and 110.8 GW h of energy per year, which is equivalent to the annual reduction of 39.8 kt standard coal and 0.12 Mt carbon emission. This work demonstrated that absorption-compression hybrid refrigeration is prospective in energy consumption and emission reduction industrially.

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吸收-压缩复合制冷分析及在丙烷脱氢低温分离中的节能应用
低温分离是化工行业中耗能较大的过程,压缩制冷是最常用的制冷技术,能耗大、碳排放大。在对吸收式制冷(AR)和CR的原理和热力学分析的基础上,提出了系列AR-CR组合吸收-压缩混合制冷(ACHR)技术,以替代传统的CR,达到节能减排的目的。采用工业丙烷脱氢,并引入ACHR,通过制冷温度和负荷划分实现低温分离。被AR包围的冷冻流的相变对ACHR的性能至关重要。当互联温度确定为6℃时,可得到最优制冷场景。通过余热驱动的AR部分替代CR,结果表明,混合制冷每年可节电48.73%,节能110.8 GW h,相当于每年减少39.8 kt标准煤,减少碳排放0.12 Mt。研究结果表明,吸收-压缩混合制冷在工业节能减排方面具有广阔的应用前景。
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来源期刊
Computers & Chemical Engineering
Computers & Chemical Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
14.00%
发文量
374
审稿时长
70 days
期刊介绍: Computers & Chemical Engineering is primarily a journal of record for new developments in the application of computing and systems technology to chemical engineering problems.
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