首页> 外文会议>International Conference on Industrial Technology and Management Science >Isobaric Vapor-Liquid Equilibrium of Binary Systems {Hexamethyl Disiloxane + Butyl Acetate} and {Hexamethyl Disiloxane + Isobutyl Acetate} at 101.3kPa
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Isobaric Vapor-Liquid Equilibrium of Binary Systems {Hexamethyl Disiloxane + Butyl Acetate} and {Hexamethyl Disiloxane + Isobutyl Acetate} at 101.3kPa

机译:二元体系的等因素蒸气液平衡{六甲基二氧硅氧烷+乙酸丁酯}和{六甲基二硅氧烷+异丁酯乙酸乙酯}在101.3kpa时

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Vapor-liquid equilibrium (VLE) data of hexamethyl disiloxane (HMDSO, 1) + butyl acetate (BAC, 2), HMDSO + isobutyl acetate (IBAC, 3) systems were measured by using the double circulating VLE still at 101.3kPa. The thermodynamic consistencies of the VLE data were examined by the Herrington method. Experimental data were correlated by the Wilson, nonrandom two-liquid (NRTL), and universal quasichemical activity coefficient (UNIQUAC) parameter models. All of the models were satisfactorily correlated with the VLE data. The result showed that the UNIQUAC model was the most suitable one to represent experimental data for HMDSO + BAC system, and the NRTL model was the most suitable one for HMDSO + IBAC system. The two systems had no azeotropic phenomenon.
机译:通过使用仍在101.3KPa的双循环VLE测量乙酸六甲基二硅氧烷(HMDSO,1)+乙酸丁酯(BAC,2),HMDSO +异丁基丁酯(IBAC,3)系统的蒸气液平衡(VLE)数据。通过赫雷特顿法检测了VLE数据的热力学常规。实验数据由威尔逊,非谐波二液(NRTL)和通用的QuiChemical活性系数(Uniquac)参数模型相关。所有模型与VLE数据都令人满意地相关。结果表明,Uniquac模型是最合适的模型代表HMDSO + BAC系统的实验数据,NRTL模型是HMDSO + IBAC系统最适合的。这两种系统没有共沸现象。

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