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首页> 外文期刊>Fluid Phase Equilibria >Vapor-liquid equilibria near critical point and critical points for the CO2+1-butanol and CO2+2-butanol systems at temperatures from 324 to 432 K
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Vapor-liquid equilibria near critical point and critical points for the CO2+1-butanol and CO2+2-butanol systems at temperatures from 324 to 432 K

机译:在324至432 K的温度下,CO2 + 1-丁醇和CO2 + 2-丁醇系统的临界点附近和临界点附近的汽液平衡

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An apparatus based on the static-analytic method to perform fast determinations of vapor-liquid equilibria (VLE) and critical pressures for mixtures up to 60 MPa and 523 K has been used. Vapor-liquid equilibria near critical points and critical points of the following mixtures: carbon dioxide+1-butanol at (324.16, 333.58, 355.38, 392.72, and 426.95 K) up to 17 MPa and carbon dioxide + 2-butanol at (335.14, 348.77, 374.10, 402.47 and 431.73 K) up to 14.5 MPa are reported here over the range of compositions near critical points. The experimental data are represented using the Patel-Teja equation of state (EoS) with new Wong-Sandler type mixing rules. For the carbon dioxide + I-butanol mixtures, we found that date reported by Silva-Oliver and Galicia-Luna [submitted to J. Chem. Eng. Data], and our VLE date near critical points are in good agreement with those reported by Jennings and Teja [J. Chem, Eng. Data 3 (1991) 303]. In this work to predict the VLE near critical points for the carbon dioxide + 1-butanol mixtures was necessary to fit the parameters for NRTL model at each temperature. For the carbon dioxide + 2-butanol mixtures, our experimental data are well represented by the model using only one set of parameters, and critical points reported in this work are compared with those published by Stevens et al. [Fluid Phase Equilibria 138 (1997) 159] and are in good agreement. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 23]
机译:已经使用了一种基于静态分析方法的设备,可对高达60 MPa和523 K的混合物进行汽液平衡(VLE)和临界压力的快速测定。气液平衡接近以下混合物的临界点和临界点:二氧化碳+ 1-丁醇(324.16、333.58、355.38、392.72和426.95 K)最高17 MPa,二氧化碳+ 2-丁醇在(335.14,在临界点附近的组成范围内,报告了高达14.5 MPa的348.77、374.10、402.47和431.73 K)。实验数据使用具有新的Wong-Sandler类型混合规则的Patel-Teja状态方程(EoS)表示。对于二氧化碳+异丁醇混合物,我们发现Silva-Oliver和Galicia-Luna报告的日期[提交给J. Chem。 。数据],并且我们的VLE日期接近临界点,与Jennings和Teja [J.化学工程。数据3(1991)303]。在这项工作中,预测二氧化碳+ 1-丁醇混合物的VLE接近临界点对于拟合每个温度下NRTL模型的参数是必要的。对于二氧化碳+ 2-丁醇混合物,仅使用一组参数就可以用模型很好地表示我们的实验数据,并将这项工作中报告的临界点与史蒂文斯等人发表的那些进行比较。 [Fluid Phase Equilibria 138(1997)159]与双方意见一致。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:23]

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