1955
DOI: 10.1002/aic.690010208
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Surface tension and the principle of corresponding states

Abstract: Experimental surface-tension data for pure substances have been correlated successfully by the use of two recent modifications of the principle of corresponding states. The results are expressed in terms of simple analytical relations which allow one to calculate the surface-tension curves either from the critical constants P,, V , , and T , or from P,, T,, and the boiling point TI, and also provide a method for estimating critical properties from surface-tension measurements. In addition, a method for estimat… Show more

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Cited by 192 publications
(93 citation statements)
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“…(7) and defined the phase parachor [Pl] as (10) where ξ = 1/3.911. It is noteworthy that the component parachor [Pi] is not used to obtain the phase parachor [Pl].…”
Section: Lee and Chien Methods (Lcm)mentioning
confidence: 99%
See 1 more Smart Citation
“…(7) and defined the phase parachor [Pl] as (10) where ξ = 1/3.911. It is noteworthy that the component parachor [Pi] is not used to obtain the phase parachor [Pl].…”
Section: Lee and Chien Methods (Lcm)mentioning
confidence: 99%
“…Based on the fact that the IFT is negatively correlated with temperature, Brock and Bird 10) proposed the following corresponding-state identity:…”
Section: Ift Predictionmentioning
confidence: 99%
“…Эти мето-дики можно разделить две категории: широко применяемые эмпирические корреляции и методы, основанные на статистической термодинамике, в которых учитывают наличие градиента плотности на границе раздела сосуществующих равновесных фаз. Большинство эмпирических корреляций ос-нованы на использовании структурно-аддитивных методов расчета поверхностного натяжения (например, метод парахора [1][2]), либо методов, теоретической основой которых является закон соответственных состояний [3][4]. Предложенные корреляции, как правило, недостаточно точно учи-тывают индивидуальные свойства веществ и не отличаются достаточной точностью расчета по-верхностного натяжения соединений, обладающих сильными водородными связями.…”
Section: і введениеunclassified
“…Chickos et al, 1995;Chickos & Wilson, 1997;Marrero & Gani, 2001;Kolská et al 2005, etc. ), entropy of vaporization (Chiskos et al, 1998;Kolská et al 2005), normal boiling temperature (Joback & Reid, 1987;Gani & Constantinou, 1996;Marrero & Gani, 2001), liquid thermal conductivity (Nagvekar & Daubert, 1987), gas thermal conductivity (Chung et al, 1984), gas permeability and diffusion coefficients (Yampolskii et al, 1998), liquid density (Campbell & Thodos, 1985;Sales-Cruz et al, 2010;Shahbaz et al, 2012), surface tension (Brock, 1955;Conte et al, 2008;Awasthi et al, 2010), solubility parameters of fatty acid methyl esters (Lu et al, 2011), flash temperatures (Liaw & Chiu, 2006;Liaw et al, 2011). Large surveys of group contribution methods for enthalpy of vaporization and liquid heat capacity have been presented in references (Zábranský et al, 2003;Kolská, 2004;Kolská et al, 2005;Kolská et.…”
Section: X(c-h) and X(o-h)mentioning
confidence: 99%