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Critical temperatures and pressures for hydrocarbon mixtures from an equation of state with renormalization-group theory corrections [Review]

机译:来自状态方程的重整化组理论校正的碳氢化合物混合物的临界温度和压力[综述]

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A recently developed crossover equation of state (EOS) incorporates contributions from long-wavelength density fluctuations by renormalization-group theory. This EOS can satisfactorily describe the thermodynamic properties of chain fluids both far-from and near-to the critical region; it is used here to calculate the critical locus of a mixture. Because the calculations require much computation time, especially for ternary land higher) mixtures, an interpolation method is used as suggested by Redlich over 30 years ago. For a binary mixture, along the critical line that gives the critical temperature or critical pressure as a function of composition, the limiting slopes at the critical points of the pure components are explicitly derived from the criteria for a critical point. Logarithmic-hyperbolic interpolation equations are selected to calculate the entire critical lines of the binary mixtures; this procedure is then generalized to multicomponent mixtures. Upon comparison with experimental critical data, the interpolation equations give good critical lines for binary and multicomponent type-1 mixtures of n-alkanes. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 104]
机译:最近开发的交叉状态方程(EOS)通过重归一化组理论结合了长波长密度波动的贡献。该EOS可以令人满意地描述远离和接近临界区域的链状流体的热力学性质。它在这里用于计算混合物的临界位置。由于计算需要大量的计算时间,尤其是对于三元以上的混合而言,因此采用了30年前Redlich建议的插值方法。对于二元混合物,沿着给出临界温度或临界压力随组成变化的临界线,纯组分临界点处的极限斜率明确地由临界点标准得出。选择对数-双曲线插值方程来计算二元混合物的整个临界线。然后将该程序推广到多组分混合物。与实验关键数据进行比较后,插值方程为正构烷烃的二元和多组分1型混合物提供了良好的临界线。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:104]

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