首页> 外文学位 >MULTIPHASE BEHAVIOR IN TERNARY FLUID MIXTURES (BEHAVIOR, EQUATION OF STATE, PHASE STABILITY, EQUILIBRIUM, SUPERCRITICAL EXTRACTION).
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MULTIPHASE BEHAVIOR IN TERNARY FLUID MIXTURES (BEHAVIOR, EQUATION OF STATE, PHASE STABILITY, EQUILIBRIUM, SUPERCRITICAL EXTRACTION).

机译:三元流体混合物中的多相行为(行为,状态方程,相稳定性,平衡,超临界萃取)。

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摘要

Phase equilibria involving three and four fluid phases were studied for isopropanol-water-carbon dioxide mixtures at temperatures and pressures near the critical point of carbon dioxide. The complex multiphase behavior exhibited by this system has important process implications for supercritical-fluid solvent extractions. The multiphase equilibria can pose difficulties when operating continuous extraction processes; alternatively the phenomenon can be used to achieve desired separations using different processing techniques.;Three-phase liquid-liquid-gas and liquid-liquid-liquid equilibria and four-phase liquid-liquid-liquid-gas equilibrium compositions were measured at 40(DEGREES)C, 50(DEGREES)C, and 60(DEGREES)C over pressures ranging from 1000 psig to 2000 psig. A new experimental technique was developed for obtaining accurate measurements of both phase compositions and molar volumes. The experimental technique allows the phase compositions to be determined from visual measurements only; no sampling is required. Gas-liquid and liquid-liquid critical endpoints bounding the multiphase behavior were also observed.;The Peng-Robinson cubic equation of state was used to describe both three-phase and four-phase behavior observed experimentally, and to predict global multiphase behavior for the isopropanol-water-carbon dioxide system. Binary mixture three-phase equilibria and limiting critical phenomena, such as tricritical points and multiphase critical endpoints were identified. Multiphase equilibria for the ethanol-water-carbon dioxide system were also examined using the equation of state. Significant differences in phase behavior were discovered for these two ternary systems. These differences were shown to be related to limiting constituent binary liquid-liquid-gas equilibrium.
机译:研究了在接近二氧化碳临界点的温度和压力下,异丙醇-水-二氧化碳混合物涉及三个和四个流体相的相平衡。该系统表现出的复杂的多相行为对超临界流体溶剂萃取具有重要的工艺意义。在连续萃取过程中,多相平衡可能会遇到困难。可以使用不同的处理技术将该现象用于实现所需的分离。;在40(DEGREES)下测量三相液-液-气和液-液-液平衡以及四相液-液-液-气平衡组成C,50(DEGREES)C和60(DEGREES)C在1000 psig至2000 psig的压力范围内。为了获得相组成和摩尔体积的准确测量结果,开发了一种新的实验技术。实验技术只允许通过目测确定相组成。无需采样。还观察到了限制多相行为的气-液和液-液临界端点。;使用Peng-Robinson立方状态方程描述了实验观察到的三相和四相行为,并预测了该相的整体多相行为。异丙醇-水-二氧化碳系统。确定了二元混合物的三相平衡和极限临界现象,例如三相临界点和多相临界终点。使用状态方程还检查了乙醇-水-二氧化碳系统的多相平衡。发现这两个三元系统在相行为方面存在显着差异。这些差异被证明与限制组分二元液-液-气平衡有关。

著录项

  • 作者

    DIANDRETH, JAMES RICHARD.;

  • 作者单位

    University of Delaware.;

  • 授予单位 University of Delaware.;
  • 学科 Chemical engineering.
  • 学位 Ph.D.
  • 年度 1985
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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