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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Pressure-Drop Method for Detecting Bubble and Dew Points of Multicomponent Mixtures at Temperatures of up to 573 K
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Pressure-Drop Method for Detecting Bubble and Dew Points of Multicomponent Mixtures at Temperatures of up to 573 K

机译:用于检测多组分混合物的气泡和露点在高达573k的温度下检测泡沫和露点的方法

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摘要

Filled or empty tubular reactors have been at the heart of many chemical processes in academia and industry. Understanding the phase behavior in such reactors is essential to improving the conversion and selectivity of a given chemical transformation and to minimizing energy consumption. This study shows that the pressure-drop method is a simple and effective technique for measuring vapor liquid phase equilibria at temperatures of up to 573 K. The basis of the pressure-drop method is flowing the fluid through a capillary with a relatively small inner diameter. The pressure drop between the inlet and outlet of the capillary depends on the phase state of the fluid (gas and/or vapor). In this article, pure propan-2-ol and the binary system propan-2-ol + water have been investigated to validate the method at high temperatures for these fluids. The binary system water + acetonitrile was then measured to demonstrate that the phase equilibrium of a thermally reactive mixture can also be determined by using the pressure-drop method. We have modeled the experimental pipeline pressure-drop results with the Process Systems Enterprise gPROMS ProcessBuilder 1.1.0 modeling environment using the Peng-Robinson equation of state and the superTRAPP algorithm for transport properties, and we find that the theoretical calculations are in good agreement with the experimental results.
机译:填充或空管状反应器一直处于学术界和工业中许多化学过程的核心。理解这种反应器中的相位行为对于提高给定化学转化的转化和选择性并最小化能量消耗至关重要。该研究表明,压力下降方法是在高达573k温度下测量蒸汽液相平衡的简单且有效的技术。压力下降方法的基础通过具有相对较小的内径的毛细管流过毛细管的基础。毛细管的入口和出口之间的压降取决于流体的相位状态(气体和/或蒸气)。在本文中,研究了纯ProPan-2-OL和二元体系Propan-2-OL +水,以在这些流体的高温下验证该方法。然后测量二元系统水+乙腈,以证明通过使用压降法测定热反应混合物的相平衡。我们使用彭 - 罗宾逊方程和运输属性的超特拉姆算法进行了模拟了实验管道压力下降结果1.1.0建模环境,并发现理论计算与之吻合良好实验结果。

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