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Predictions of the vapor-liquid equilibrium data for low-GWP Hydrofluorocarbons + polyethylene-glycol dimethylether solvents by modified UNIFAC model

机译:通过改进的UNIFAC模型预测低GWP氢氟烃+聚乙二醇二甲醚溶剂的蒸汽液平衡数据

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The working fluids are crucial for developing the absorption refrigeration system. Our previous work has proposed three novel working pairs, which uses the low-GWP HFCs (R32, R152a and R161) as the refrigerants and the polyethylene-glycol dimethylether solvent DMETEG as the absorbent. To explore the VLE behaviors of HFCs in other longer chain structures of polyethylene-glycol dimethylether solvents, the modified UNIFAC (Dortmund) model was applied for prediction. The previous binary parameters showed large deviations from the experimental data. Then the new binary parameters were obtained by regression. For R32+DMEDEG and R152a/R161+DMETrEG, the prediction ARAD results were reduced from 17.13%, 24.06% and 12.48% to 3.71%, 2.61% and 6.86%, respectively. Finally, the VLE data of R161 + PGDE at the temperatures of 293.15-343.15K were predicted.
机译:工作流体对于开发吸收制冷系统是至关重要的。 我们以前的工作已经提出了三种新颖的工作对,它使用低GWP HFC(R32,R152A和R161)作为制冷剂和聚乙二醇二甲醚溶剂DETEG作为吸收剂。 为了探讨聚乙二醇二甲醚溶剂的其他更长链结构中HFC的VLE行为,施加改性的Unifac(多特蒙德)模型进行预测。 以前的二进制参数显示了与实验数据的大偏差。 然后通过回归获得新的二进制参数。 对于R32 + DMEDEG和R152A / R161 + DMetreg,预测法律程度结果分别从17.13%,24.06%和12.48%降至3.71%,2.61%和6.86%。 最后,预测了293.15-343.15K温度下R161 + PGDE的VLE数据。

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