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Vapor-liquid equilibrium data for the carbon dioxide and nitrogen (CO2+N2) system at the temperatures 223, 270, 298 and 303 K and pressures up to 18 MPa

机译:二氧化碳和氮气(CO2 + N2)系统在温度223、270、298和303 K以及压力高达18 MPa时的汽液平衡数据

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摘要

A new setup for the measurement of vapor-liquid phase equilibria of CO2-rich mixtures relevant for carbon capture and storage (CCS) transport conditions is presented. An isothermal analytical method with a variable volume cell is used. The apparatus is capable of highly accurate measurements in terms of pressure, temperature and composition, also in the critical region. Vapor-liquid equilibrium (VLE) measurements for the binary system CO2+N2 are reported at 223, 270, 298 and 303 K, with estimated standard uncertainties of maximum 0.006 K in the temperature, maximum 0.003 MPa in the pressure, and maximum 0.0004 in the mole fractions of the phases. These measurements are verified against existing data. Although some data exists, there is little trustworthy data around critical conditions, and our data indicate a need to revise the parameters of existing models. A fit made against our data of the vapor-liquid equilibrium prediction of GERG-2008/EOS-CG for CO2+N2 is presented. At 223 and 298 K, the critical region of the isotherm are fitted using a scaling law, and high accuracy estimates for the critical composition and pressure are found.
机译:提出了一种新的装置,用于测量与碳捕集与封存(CCS)运输条件有关的富CO2混合物的汽液相平衡。使用具有可变体积池的等温分析方法。该设备还能够在关键区域内就压力,温度和成分进行高精度测量。在223、270、298和303 K处报告了二元系统CO2 + N2的气液平衡(VLE)测量值,估计的标准不确定度为温度最大0.006 K,压力最大0.003 MPa和最大0.0004 in。相的摩尔分数。对照现有数据验证这些测量。尽管存在一些数据,但是在关键条件下几乎没有可信赖的数据,而我们的数据表明需要修改现有模型的参数。提出了一个与我们的GERG-2008 / EOS-CG气液平衡预测CO2 + N2数据相对应的拟合结果。在223 K和298 K时,使用比例定律拟合等温线的临界区域,并且找到了临界成分和压力的高精度估算值。

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