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首页> 外文期刊>The Journal of Supercritical Fluids >Experimental setup to measure critical properties of pure and binary mixtures and their densities at different pressures and temperatures Determination of the precision and uncertainty in the results
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Experimental setup to measure critical properties of pure and binary mixtures and their densities at different pressures and temperatures Determination of the precision and uncertainty in the results

机译:测量纯净和二元混合物的关键特性及其在不同压力和温度下的密度的实验装置确定结果的精度和不确定性

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摘要

We describe an experimental setup to measure critical properties and density as a function of pressure and temperature.Critical temperature and critical pressure (T_c,P_c) are measured with a flow apparatus,and detected by critical opalescence.Precision in measuring critical points for pure compounds and binary mixtures are characterized in terms of repeatability and confidence interval.The volumetric properties are determined with a high-pressure vibrating-tube density meter,calibrated from 27 8.15 to 318.15K at pressures up to 200 x 10~5 Pa.Density values are validated for pure compounds by determining the absolute and relative root-mean-square deviations to CO2 data obtained from the Span and Wagner equations of state (EOS),and for binary mixtures by determining the relative mean standard deviation of density,s_(rho)~r.Both the critical and volumetric experimental results have been compared with literature data and values obtained from the Peng-Robinson and Patel-Teja cubical equations of state.
机译:我们介绍了一种测量临界特性和密度(随压力和温度变化的函数)的实验装置。临界温度和临界压力(T_c,P_c)使用流动装置进行测量,并通过临界乳光来检测。精确测量纯化合物的临界点二元混合物的重现性和置信区间为特征。用高压振动管密度计在200 x 10〜5 Pa的压力下将其校准于27 8.15至318.15K,确定其体积特性。通过确定从Span和Wagner状态方程(EOS)获得的CO2数据的绝对和相对均方根偏差对纯化合物进行验证,并通过确定密度的相对平均标准偏差s_(rho)对二元混合物进行验证临界和体积实验结果都与文献数据和从Peng-Robinson和Patel-Teja立方方程获得的值进行了比较状态。

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