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Density of carbon dioxide with impurities by Coriolis flow meter, oscillation-type densitometer and equations of state

机译:科里奥利流量计,振荡型密度计和状态方程式计算的二氧化碳中杂质的密度

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Transporting CO2 from the capture plant to the storage site may encounter challenges in the flow metering due to the unusual physical properties of CO2 especially when containing impurities. Building on the authors' previous work on the effect of impurities in CO2 mixtures on the performance of Coriolis flow meters, in this work, the accuracy of the density measurements of CO2 mixtures was investigated using a Coriolis meter and a high-pressure Anton Paar densitometer. The measured density data were then compared to the Peng-Robinson cubic equation of state with CO2 volume correction (PR-CO2) as well as to the multi-parameter GERG-2008 equation of state. The Average Absolute Relative Deviations (AARD) of the density predictions with PR-CO2 and GERG EOSs from the measured densities with the Anton Paar densitometer are 1.2% and 1.0%, respectively. While the Coriolis meter density values were consistently lower than the actual value in the gas phase. A correlation was obtained to correct the measured densities in the gas phase by fitting the measured densities to the prediction values using PR-CO2 and GERG EoSs at elevated pressures and temperatures. The AARD was reduced from 26.1% to 2.3% using PR-CO2 and from 25.4% to 3.6% using GERG EoSs.
机译:从CO2到捕集厂到储存地点的运输可能会遇到流量计量方面的挑战,因为CO2的异常物理特性,尤其是当包含杂质时。在作者先前关于二氧化碳混合物中杂质对科里奥利流量计性能的影响的工作的基础上,在这项工作中,使用科里奥利流量计和高压安东帕密度计对二氧化碳混合物密度测量的准确性进行了研究。 。然后,将测得的密度数据与具有CO2体积校正功能的Peng-Robinson立方状态方程(PR-CO2)以及多参数GERG-2008状态方程进行比较。根据安东帕密度计测得的密度,使用PR-CO2和GERG EOS进行密度预测的平均绝对绝对偏差(AARD)分别为1.2%和1.0%。而科里奥利仪表的密度值始终低于气相中的实际值。通过在升高的压力和温度下使用PR-CO2和GERG EoSs使测得的密度与预测值相符,可以校正气相中的测得密度。使用PR-CO2的AARD从26.1%降低到2.3%,使用GERG EoSs的AARD从25.4%降低到3.6%。

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