首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Equations of state for the NaCl-H2O-CH4 system and the NaCl-H2O-CO2-CH4 system: Phase equilibria and volumetric properties above 573 K
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Equations of state for the NaCl-H2O-CH4 system and the NaCl-H2O-CO2-CH4 system: Phase equilibria and volumetric properties above 573 K

机译:NaCl-H2O-CH4系统和NaCl-H2O-CO2-CH4系统的状态方程:573 K以上的相平衡和体积特性

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摘要

An equation of state (EOS) based on thermodynamic perturbation theory is presented for the NaCl-H2O-CH4 system. This equation consistently reproduces PvTX properties and phase equilibria with an accuracy close to that of data in the temperature, pressure and concentration ranges from 648 K to 873 K, 0 to 2500 bar and up to 2.37 mol % NaCl. Good agreement with recent ternary immiscibility data from 673 K to 873 K suggests that the EOS may provide accurate predictions for NaCl concentrations as high as 40 mol %. We could not find any experimental data above 873 K that can be used to validate the predictions of the EOS inside the ternary. However, parameters for the mixed ternary system were established from parameters evaluated for pure and binary systems and accurate combination rules. Therefore, predictions in the ternary should be reliable to the high temperatures and pressures where the EOS for the lower order systems are valid (about 1300 K and 5000 bar). Using the same combining approach, an EOS for the quaternary NaCl-H2O-CO2-CH4 is constructed on the basis of parameters from our earlier model for the NaCl-H2O-CO2 system and the present NaCl-H2O-CH4 model. This suggests that predictions of the quaternary EOS are reliable also to about 1300 K and 5000 bar. Copyright (C) 2003 Elsevier Science Ltd. [References: 50]
机译:提出了基于热力学微扰理论的NaCl-H2O-CH4系统状态方程(EOS)。该方程式始终如一地再现PvTX特性和相平衡,其精度接近于648 K至873 K,0至2500 bar和最高2.37 mol%NaCl的温度,压力和浓度范围内的数据。与近期从673 K到873 K的三元不混溶性数据的良好一致性表明,EOS可以提供​​对高达40 mol%的NaCl浓度的准确预测。我们找不到任何高于873 K的实验数据,可以用来验证三元内部EOS的预测。但是,混合三元系统的参数是根据对纯系统和二进制系统评估的参数以及准确的组合规则建立的。因此,在低阶系统的EOS有效的高温和高压(大约1300 K和5000 bar)下,三元组的预测应该是可靠的。使用相同的合并方法,根据我们较早的NaCl-H2O-CO2系统模型和当前的NaCl-H2O-CH4模型的参数,构建了四元NaCl-H2O-CO2-CH4的EOS。这表明四元EOS的预测在大约1300 K和5000 bar的情况下也是可靠的。版权所有(C)2003 Elsevier Science Ltd. [参考:50]

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