首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Isothermal Vapor-Liquid Equilibrium Measurements for Alcohol plus Water/n-Hexane Azeotropic Systems Using Both Dynamic and Automated Static-Synthetic Methods
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Isothermal Vapor-Liquid Equilibrium Measurements for Alcohol plus Water/n-Hexane Azeotropic Systems Using Both Dynamic and Automated Static-Synthetic Methods

机译:使用动态和自动化静态合成方法的酒精加水/正己烷共沸系统等温蒸汽液平衡测量

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Isothermal vapor liquid equilibrium measurements (pressure-temperature liquid and vapor composition) were conducted for water (1) + propan-1-ol (2), n-hexane (1) + butan-2-ol (2), and n-hexane (1) + 2-methyl-propan-1-ol (2) at three temperatures, each using a dynamic moderate pressure equilibrium still. Additionally, pressure temperature-overall composition measurements for the first two systems were conducted for the intermediate temperatures using a newly automated static-synthetic apparatus to confirm the operability of the automation scheme and to compare the model predictions of the vapor-phase compositions from the processed pressure temperature liquid composition data by the static-synthetic method with the experimental vapor compositions measured by the dynamic method. The automation scheme was developed and implemented on the original static total pressure vapor liquid equilibrium apparatus of Raal et al. (Fluid Phase Equilib. 2011, 310, 156-165) using the LabVIEW graphical programming language. In comparison to the manual operating mode, this scheme improved the efficiency of operation by reducing the man-hours involved and minimized the associated uncertainty with the measurement procedure with respect to liquid composition. Once executed, the control scheme requires approximately 2 days to produce a single 40-data point (pressure-temperature liquid-composition) isotherm and minimizes human intervention to 2-3 h in comparison to a 2-week long measurement procedure in the nonautomated operating mode and in excess of 3 weeks using the dynamic method with analysis by gas chromatography. All experimental data were modeled using the gamma-Phi approach with the NRTL and UNIQUAC activity coefficient models and the virial equation of state with the Hayden and O'Connell correlation. For the pressure temperature liquid and vapor composition data measured, thermodynamic consistency testing was performed. The data sets passed the point test with 0.01 tolerance and the area test with 10% tolerance. Experimental vapor-phase compositions obtained by phase sampling in the dynamic method compared reasonably well with the predictions from the pressure temperature liquid composition data measured by the automated static-synthetic method.
机译:对水(1)+丙酮-1-醇(2),正己烷(1)+ Butan-2-Ol(2)进行等温蒸汽液体平衡测量(压力 - 温度液体和蒸气组合物),和N-己烷(1)+ 2-甲基 - 丙烷-1-醇(2)在三个温度下,每个使用动态中等压力平衡静止。另外,使用新自动化的静电合成装置对前两个系统进行压力温度 - 总体组成测量,以确认自动化方案的可操作性,并比较从加工的气相组合物的模型预测压力温度液体组合数据通过静合成法与实验蒸气组合物通过动态法测定。在Raal等人的原始静态总压力蒸气液平衡装置上开发和实施自动化方案。 (流体相位平衡。2011,310,156-165)使用LabVIEW图形编程语言。与手动操作模式相比,该方案通过减少所涉及的人间,提高了操作效率,并最小化了与液体组合物的测量过程相关的不确定性。一旦执行,控制方案需要大约2天,以产生单个40数据点(压力 - 温度液体组合物)等温,并且与非自动化操作中的2周的长测量程序相比,将人类干预最小化为2-3小时使用气相色谱法分析的动态方法,多种模式和超过3周。所有实验数据都是使用γ-PHI方法进行建模,与NRTL和Uniquac活动系数模型和Hayden和O'Connell相关性的状态的病毒方程。对于测量的压力温度液体和蒸气组成数据,进行热力学稠度测试。数据集通过了测试点与0.01公差,并用10%的容差的区域测试。通过通过自动静合成方法测量的压力温度液体组合数据的预测相比,通过动态方法通过相位采样获得的实验气相组合物。

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