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Equipment using a 'static-analytic' method for solubility measurements in potentially hazardous binary mixtures under cryogenic temperatures

机译:使用“静态分析”方法的设备,用于在低温下测量潜在危险的二元混合物中的溶解度

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摘要

A new apparatus designed to study, at cryogenic temperatures, thermodynamic equilibria of potentially explosive binary systems such as hydrocarbon-oxygen mixtures is described herein. This equipment has an equilibrium cell which was especially designed to minimize hazards while allowing accurate phase equilibrium measurements. Reliability of results, obtained with this equipment has been verified by working on the nitrogen-propane system, for which data are already available in literature, over a large range of compositions and at various temperatures. Four isothermal curves describing liquid phase compositions at 109.98,113.77, 119.75 and 125.63 K have been determined. Our experimental data are represented within 2% in compositions and in pressures through the Peng-Robinson equation of state implying Mathias-Copeman alpha function and Huron-Vidal mixing rule. Comparisons to literature allow pointing out: good agreement is observed with Kremer and Knapp data (1983) while the three sets of Poon and Lu data (1974) presenting systematic positive deviation are consequently judged as suspicious.
机译:本文描述了一种新设备,该新设备设计用于在低温下研究潜在爆炸性二元体系(如烃-氧混合物)的热力学平衡。该设备具有一个平衡池,该池专门设计用于最大程度地减少危险,同时允许进行精确的相平衡测量。使用该设备获得的结果的可靠性已通过研究氮丙烷系统进行了验证,有关氮丙烷系统的数据已在文献中获得,涉及的成分范围很广,而且温度不同。确定了描述109.98、113.77、119.75和125.63 K液相组成的四个等温曲线。通过暗示Mathias-Copemanα函数和Huron-Vidal混合规则的状态的Peng-Robinson状态方程,我们的实验数据的成分和压力均在2%以内。与文献的比较可以指出:与Kremer和Knapp数据(1983年)观察到很好的一致性,而三组表示系统正偏差的Poon和Lu数据(1974年)则被认为是可疑的。

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