Molecular simulation data for the vapor-liquid phase equilibria of binary mixtures of HFO-1123 with R-32, R-1234yf, R-1234ze(E), R-134a and CO2 and their modelling by the PCP-SAFT equation of state

Molecular simulation data for the vapor-liquid phase equilibria of binary mixtures of HFO-1123 with R-32, R-1234yf, R-1234ze(E), R-134a and CO2 and their modelling by the PCP-SAFT equation of state
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HFO-1123 与 R-32、R-1234yf、R-1234ze(E)、R-134a 和 CO2 的二元混合物的汽液相平衡的分子模拟数据及其通过 PCP-SAFT 状态方程进行的建模

DOI:
10.1016/j.dib.2019.104014
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发表时间:
2019
期刊:
影响因子:
1.2
通讯作者:
G. Raabe
G. Raabe
中科院分区:
--
文献类型:
--
作者:
G. Raabe

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在这篇数据简介文章中,我们提出了HFO-1123与R-32,HFO-1234 yf,HFO-1234 ze(E),R-134 a和CO2的二元混合物的汽液平衡的预测数据。然后用PCP-SAFT状态方程模拟二元混合物的汽液平衡。因此,我们确定了纯HFO化合物的PCP-SAFT参数以及所有混合物的二元相互作用参数。模拟数据和PCP-SAFT建模在相关研究文章中进行了讨论(Raabe,2019)。
In this Data in Brief article, we present predictive data for the vapor-liquid equilibria of the binary mixtures of HFO-1123 with R-32, HFO-1234yf, HFO-1234ze(E), R-134a and CO2from molecular simulation. The VLE in the binary mixtures are then modeled by the PCP-SAFT equation of state. Therefore we determined PCP-SAFT parameters for the pure HFO compounds as well as binary interaction parameters for all mixtures. The simulation data and the PCP-SAFT modelling are discussed in a related research article (Raabe, 2019).