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Performance analysis of R1234yf/ionic liquid working fluids for single-effect and compression-assisted absorption refrigeration systems

机译:用于单效和压缩辅助吸收制冷系统的R1234YF /离子液体工作流体的性能分析

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摘要

Due to the disadvantages of conventional working pairs (NH3/H2O and H2O/LiBr) in the absorption-refrigeration cycles, 2,3,3,3-Tetrafluoroprop-1-ene(R1234yf)/ionic liquid (IL), which possessed of remarkable properties, has received more and more attention. In this work, the thermodynamic performance of single-effect and compression-assisted absorption refrigeration cycles were analyzed using R1234yf as refrigerant and ILs (including [emim][BF4], [hmim][BF4], [omim][BF4], [hmim][Tf2N], [hmim][PF6] and [hmim][TfO]) as absorbent, the thermodynamic properties of working pairs was estimated by the NRTL model. The effects of generation, evaporation, condensation and absorption temperature as well as compression ratio on the cooling performance and circulation ratio were studied in various working conditions. Compared to the single-effect cycle, the compression-assisted cycle effectively improves the cooling performance, reduces the circulation ratio and extends the operation range of generation, evaporation and absorption temperatures. At the same working condition, [hmim][Tf2N] performs the best while [emim][BF4] has the lowest COP, the cooling performance of [hmim][BF4], [omim][BF4], [hmim][TfO] and [hmim][PF6] is similar. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:由于常规工作对(NH3 / H2O和H2O / LIB)的缺点,吸收 - 制冷循环,2,3,3,3-四氟丙烯-1-烯(R1234YF)/离子液体(IL)具有卓越的财产,已经获得了越来越多的关注。在这项工作中,使用R1234YF作为制冷剂和ILS(包括[emim] [Hmim] [Hmim] [Bf4],[OMIM] [BF4],分析单效和压缩辅助吸收制冷循环的热力学性能和压缩辅助吸收制冷循环的热力学性能HMIM] [TF2N],[HMIM] [PF6]和[HMIM] [TFO]作为吸收剂,通过NRTL模型估计工作对的热力学性质。在各种工作条件下,研究了生成,蒸发,冷凝和吸收温度以及压缩比对冷却性能和循环比的影响。与单效周期相比,压缩辅助周期有效地提高了冷却性能,降低了循环比率,并延伸了产生,蒸发和吸收温度的操作范围。在相同的工作条件下,[HMIM] [TF2N]执行最佳的同时[emim] [BF4]具有最低的COP,[HMIM] [BF4],[OMIM] [BF4],[HMIM] [TFO [hmim] [pf6]是相似的。 (c)2019年Elsevier Ltd和IIR。版权所有。

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