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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Phase Equilibria for 1,1,1,2,3,4,4,5,5,5,-Decafluoropentane + 2-Methylfuran, 2-Methylfuran + Oxolane, and 1,1,1,2,3,4,4,5,5,5-Decafluoropentane + 2 - Methylfuran + Oxolane at 35 kPa
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Phase Equilibria for 1,1,1,2,3,4,4,5,5,5,-Decafluoropentane + 2-Methylfuran, 2-Methylfuran + Oxolane, and 1,1,1,2,3,4,4,5,5,5-Decafluoropentane + 2 - Methylfuran + Oxolane at 35 kPa

机译:1,1,1,2,3,4,4,5,5,5,-十氟戊烷+ 2-甲基呋喃,2-甲基呋喃+环氧丙烷和1,1,1,2,3,4,4的相平衡35 kPa时的,5,5,5-十氟戊烷+ 2-甲基呋喃+环氧烷

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Vapor-liquid equilibrium data at 35 kPa have been determined for the ternary ssytem 1,1,1,2,3,4,4,5,5,5-decafluoropentate (HFC-4310mee) + 2-methylfuran + oxolane, and for their constituent binaries HFC-4310mee + 2 - methylfuran and 2-methylfuran + oxolane, in the temperature range 297 to 310 K. Vapor pressure of 2-methylfuran have also been measured in the range of boiling temperatures of the mixture. Depending on the concentration range, the ternary system exhibits positive to negative deviations from ideal behavior and no ternary azeotrope has been detected. The binary system HFC-4310mee (1) + 2-methylfuran (2) exhibits positive deviations form ideal behavior and a minimum temeprature azeotrope at a composition rich in HFC-4310 mee (x_1 approx = 0.561, T approx = 297.55 K). The binary system 2-methylfuran (2) + oxolane (3) exhibits negative deviations form ideal behavior and a maximum temperature azeotrope at a composition rich in oxolane (x_2 approx = 0.310, T approx = 309.95 K). The vapor-liquid equilibrium data of the binary mixtures were correlated with the Redlich-Kister model and were used to predict the equilibrium properties of the ternary mixture. In addition, a model-free approach that is applicable to ternary mixtures has been used to analyze the properties of the ternary mixture.
机译:已确定三元体系1,1,1,2,3,4,4,5,5,5,5-十氟戊酸酯(HFC-4310mee)+ 2-甲基呋喃+环氧丙烷的35 kPa气液平衡数据它们的组成二元化合物HFC-4310mee + 2-甲基呋喃和2-甲基呋喃+环氧烷,在297至310 K的温度范围内。还已在混合物的沸腾温度范围内测量了2-甲基呋喃的蒸气压。根据浓度范围,三元体系与理想行为之间存在正负偏差,并且未检测到三元共沸物。二元体系HFC-4310mee(1)+ 2-甲基呋喃(2)在富含HFC-4310 mee的组成下(x_1约等于0.561,T约等于297.55 K)表现出理想行为的正偏差和最小替米索共沸物。二元系统2-甲基呋喃(2)+环氧丙烷(3)在富含环氧丙烷的组成下(x_2大约= 0.310,T大约= 309.95 K)表现出理想行为的负偏差和最高温度共沸物。二元混合物的气液平衡数据与Redlich-Kister模型相关,并用于预测三元混合物的平衡性质。另外,已经使用了适用于三元混合物的无模型方法来分析三元混合物的性质。

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