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首页> 外文期刊>Fluid Phase Equilibria >Thermodynamic properties and vapor-liquid equilibria of associating fluids, Peng-Robinson equation of state coupled with shield-sticky model
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Thermodynamic properties and vapor-liquid equilibria of associating fluids, Peng-Robinson equation of state coupled with shield-sticky model

机译:缔合流体的热力学性质和汽液平衡,Peng-Robinson状态方程与屏蔽黏性模型耦合

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摘要

Combining Peng-Robinson (PR) equation of state (EOS) with Liu et al.'s association contribution derived from shield-sticky model (SSM), a new cubic-plus-association (CPA) EOS is proposed to describe the thermodynamic properties of pure associating fluids and their mixtures. The CPA-SSM EOS contains five molecular parameters (a _0, c _1, b, ω and δe{open}/k) for the pure associating fluids, while for non-associating fluids it reduces to PR EOS with three molecular parameters (a _0, c _1, b). The molecular parameters are obtained by fitting the saturated pressures and/or liquid molar volumes at wide temperature ranges. The overall average absolute deviations (AADs) of 58 pure associating fluids and 20 non-associating fluids are 0.74% and 0.54% for saturated vapor pressure, 2.00% and 1.85% for liquid molar volumes respectively. The enthalpies of vaporization for 13 pure associating fluids are well predicted by using these molecular parameters. The molecular parameter b for homologous substances shows a good linear relationship with respect to their corresponding molecular weights. Using one temperature-independent binary adjustable parameter k _(ij), satisfactory results of vapor-liquid equilibria (VLE) for both self- and cross-associating systems are obtained. The overall AADs of the equilibrium temperatures, pressures and vapor phase mole fractions are 1.46K, 1.26kPa and 0.0197 respectively for 25 self-associating systems, and 0.75K, 0.50kPa and 0.0155 respectively for 29 cross-associating systems. Other caloric properties such as the excess molar enthalpies of mixing are also successfully computed. The CPA-SSM EOS proposed has been proved to have comparable accuracy as other models but with much simpler form.
机译:结合Peng-Robinson(PR)状态方程(EOS)和Liu等人从盾构模型(SSM)得出的缔合贡献,提出了一种新的三次加缔合(CPA)EOS描述热力学性质纯缔合液及其混合物。对于纯缔合流体,CPA-SSM EOS包含五个分子参数(a _0,c _1,b,ω和δe{open} / k),而对于非缔合流体,它通过三个分子参数被还原为PR EOS(a _0,c _1,b)。通过在宽温度范围内拟合饱和压力和/或液体摩尔体积来获得分子参数。 58种纯缔合流体和20种非缔合流体的总平均绝对偏差(AAD)对于饱和蒸汽压分别为0.74%和0.54%,对于液体摩尔体积分别为2.00%和1.85%。通过使用这些分子参数可以很好地预测13种纯缔合流体的汽化焓。同源物质的分子参数b相对于它们相应的分子量显示出良好的线性关系。使用一个与温度无关的二进制可调参数k _(ij),对于自伴和交叉伴生系统均获得令人满意的气液平衡(VLE)结果。 25个自缔合体系的平衡温度,压力和气相摩尔分数的总AADs分别为1.46K,1.26kPa和0.0197,29个交叉缔合系统的总AADs分别为0.75K,0.50kPa和0.0155。还成功地计算了其他热量性质,例如过量的混合摩尔焓。事实证明,提出的CPA-SSM EOS具有与其他模型相当的精度,但形式更简单。

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