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Modelling CO2 - water mixture thermodynamics using various equations of state (EoSs) with emphasis on the potential of the SPUNG EoS

机译:使用各种状态方程(Eos)模拟CO2-水混合物热力学,重点是spUNG Eos的潜力

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摘要

CO2–water is a very important mixture in the Carbon Capture and Storage (CCS) industry. The mixture can have a broad range of concentrations, from water as an impurity in CO2 transport to high water concentrations in sequestration processes. CO2–water mixture is challenging due to the polar nature that induces difficulties describing the interaction between CO2 and water when modeling the behavior. The work focuses on the evaluation of the predictability of the extended corresponding state equation SPUNG in dealing with CO2–water thermodynamics. The evaluation is done by comparing the behavior of SPUNG equation of state (EoS) to experimental data, and two other EoSs of a different class. The two other EoSs are the cubic equation Soave–Redlich–Kwong (SRK) with van der Waals mixing rules, and SRK with Huron–Vidal mixing rules.The predictability of the single and liquid rich phase densities, two-phase solubilities and dew line is investigated over a wide range of pressures, temperatures and mixture compositions. The results show better density prediction using SPUNG EoS over all the evaluated conditions compared to SRKs with a potential of improvements by changing the reference fluid. However, the CO2 solubility prediction using SPUNG requires the use of other mixing rules that can account for the polar nature of the system.
机译:在碳捕集与封存(CCS)行业中,二氧化碳-水是非常重要的混合物。混合物的浓度范围很广,从作为CO2传输中的杂质的水到隔离过程中的高水浓度。由于极性性质,二氧化碳与水的混合物极具挑战性,在模拟行为时会引起描述二氧化碳与水之间相互作用的困难。这项工作着重于评估扩展的对应状态方程SPUNG在处理CO2-水热力学中的可预测性。通过将SPUNG状态方程(EoS)的行为与实验数据以及其他两个不同类别的EoS进行比较来进行评估。另外两个EoS是具有范德华混合规则的三次方程式Soave–Redlich–Kwong(SRK)和具有Huron–Vidal混合规则的SRK。富含单相和液相的相密度,两相溶解度和露水线的可预测性在很宽的压力,温度和混合物组成范围内进行了研究。结果表明,与SRK相比,在所有评估的条件下使用SPUNG EoS都可以更好地预测密度,并且可以通过更换参考流体来提高密度。但是,使用SPUNG预测CO2溶解度需要使用其他混合规则,这些规则可以解释系统的极性。

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