Li Zhidong, Firoozabadi Abbas
Reservoir Engineering Research Institute, 385 Sherman Avenue, Suite 5, Palo Alto, California 94306, USA.
J Chem Phys. 2009 Apr 21;130(15):154108. doi: 10.1063/1.3100237.
We develop a density functional theory and investigate the interfacial tension of several pure substances N(2), CO(2), H(2)S, normal alkanes from C(1) to nC(10), and binary mixtures C(1)/C(3), C(1)/nC(5), C(1)/nC(7), C(1)/nC(10), CO(2)/nC(4), N(2)/nC(5), N(2)/nC(6), N(2)/nC(8), N(2)/nC(10), nC(6)/nC(7), nC(6)/nC(8), and nC(6)/nC(10). The theory is combined with the semiempirical Peng-Robinson equation of state (PR-EOS). The weighted density approximation (WDA) is adopted to extend the bulk excess Helmholtz free energy to the inhomogeneous interface. Besides, a supplementary term, quadratic density expansion (QDE), is introduced to account for the long-range characteristic of intermolecular dispersion attractions, which cannot be accurately described by the WDA. In the bulk limit, the QDE vanishes and the theory is reduced to the PR-EOS. For pure substances, the potential expansion parameter is the only adjustable parameter in the QDE and determined by using a single measured interfacial tension at the lowest temperature examined. Then without any parameter adjustment, we faithfully predict the interfacial tensions of pure substances and mixtures over a wide range of conditions.
我们发展了一种密度泛函理论,并研究了几种纯物质(N₂、CO₂、H₂S、从C₁到nC₁₀的正构烷烃)以及二元混合物(C₁/C₃、C₁/nC₅、C₁/nC₇、C₁/nC₁₀、CO₂/nC₄、N₂/nC₅、N₂/nC₆、N₂/nC₈、N₂/nC₁₀、nC₆/nC₇、nC₆/nC₈和nC₆/nC₁₀)的界面张力。该理论与半经验的彭 - 罗宾逊状态方程(PR - EOS)相结合。采用加权密度近似(WDA)将体相过量亥姆霍兹自由能扩展到非均匀界面。此外,引入了一个补充项,即二次密度展开(QDE),以考虑分子间色散引力的长程特性,而WDA无法准确描述这一特性。在体相极限下,QDE消失,该理论简化为PR - EOS。对于纯物质,势展开参数是QDE中唯一的可调参数,通过在最低测试温度下使用单个测量的界面张力来确定。然后,无需任何参数调整,我们就能在很宽的条件范围内准确预测纯物质和混合物的界面张力。