顺式-1,1,1,4,4,4-六氟丁烯 [R-1336mzz(Z)] + 反式-1,2-二氯乙烯 [R-1130(E)] 混合物的气泡点测量值

IF 2.5 4区 工程技术 Q3 CHEMISTRY, PHYSICAL
Aaron J. Rowane, Stephanie L. Outcalt
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引用次数: 0

摘要

在 265 K 至 360 K 的温度范围内测量了纯 R-1336mzz(Z) 和 R-1130(E)的饱和压力以及三种 R-1336mzz(Z)/1130(E) 混合物的气泡点压力。总共获得了 100 个独特的状态点。目前,还没有针对 R-1130(E)的亥姆霍兹能量显式状态方程 (EoS)。虽然 R-1130(E)的扩展相应状态 EoS 可用于估算 R-1336mzz(Z)/1130(E) 混合物的特性,但该模型无法解决混合物的共沸行为。因此,我们使用扰动链统计关联流体理论 (PC-SAFT) EoS 来模拟 R-1336mzz(Z)/1130(E) 混合物的汽液平衡。报告了 PC-SAFT 模型参数,并通过与实验数据的偏差对模型的整体性能进行了描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bubble Point Measurements of cis-1,1,1,4,4,4-Hexafluorobutene [R-1336mzz(Z)] + trans-1,2-Dichloroethene [R-1130(E)] mixtures

Bubble Point Measurements of cis-1,1,1,4,4,4-Hexafluorobutene [R-1336mzz(Z)] + trans-1,2-Dichloroethene [R-1130(E)] mixtures

Saturation pressures of pure R-1336mzz(Z) and R-1130(E) and bubble point pressures of three R-1336mzz(Z)/1130(E) blends were measured from 265 K to 360 K. For each pure refrigerant or refrigerant blend, a total of twenty unique saturation pressures or bubble points were measured. In total 100 unique state points were obtained. Presently, no Helmholtz-energy-explicit type equation of state (EoS) is available for R-1130(E). While an extended corresponding states EoS for R-1130(E) is available to estimate the properties of the R-1336mzz(Z)/1130(E) blend, this model does not resolve the azeotropic behavior of the mixture. Therefore, the perturbed-chain statistical-associating fluid theory (PC-SAFT) EoS is used to model the vapor–liquid equilibria of the R-1336mzz(Z)/1130(E) blend. PC-SAFT model parameters are reported, and the overall performance of the model is characterized by deviations from the experimental data.

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来源期刊
CiteScore
4.10
自引率
9.10%
发文量
179
审稿时长
5 months
期刊介绍: International Journal of Thermophysics serves as an international medium for the publication of papers in thermophysics, assisting both generators and users of thermophysical properties data. This distinguished journal publishes both experimental and theoretical papers on thermophysical properties of matter in the liquid, gaseous, and solid states (including soft matter, biofluids, and nano- and bio-materials), on instrumentation and techniques leading to their measurement, and on computer studies of model and related systems. Studies in all ranges of temperature, pressure, wavelength, and other relevant variables are included.
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