Li, RongRong’s team published research in Fluid Phase Equilibria in 2015-06-25 | 118-45-6

Fluid Phase Equilibria published new progress about Antoine equation. 118-45-6 belongs to class chlorides-buliding-blocks, and the molecular formula is C8H3ClO3, Category: chlorides-buliding-blocks.

Li, RongRong; Du, CunBin; Han, Shuo; Wang, Jian; Yao, GanBing; Zhao, HongKun published the artcile< Saturated vapor pressure of 4-fluorophthalic anhydride and 4-chlorophthalic anhydride and isobaric vapor-liquid phase equilibrium of 4-fluorophthalic anhydride + 4-chlorophthalic anhydride: Measurement and modeling>, Category: chlorides-buliding-blocks, the main research area is fluorophthalic chlorophthalic anhydride isobaric liquid phase equilibrium vapor pressure.

The saturated vapor pressures of 4-fluorophthalic anhydride and 4-chlorophthalic anhydride at various temperatures ranging from T = (426 to 560) K, and the isobaric vapor-liquid phase equilibrium data for binary system of 4-fluorophthalic anhydride (1) + 4-chlorophthalic anhydride (2) at pressures of 21.33 kPa, 41.33 kPa, 61.33 kPa and 81.33 kPa were measured exptl. by means of an inclined ebulliometer. The relationship between saturated vapor pressure and temperature was fitted by using two Antoine equations and the Antoine constants were acquired for 4-fluorophthalic anhydride and 4-chlorophthalic anhydride, resp. The semi-empirical method, Herington method was employed to test thermodn. consistency of the vapor-liquid equilibrium data. The isobaric vapor-liquid phase equilibrium data were fitted with three thermodn. models, which corresponded to Wilson, NRTL and UNIQUAC. The parameters of the three activity coefficient models were obtained by the method of nonlinear least-square regression. The calculated vapor-liquid phase equilibrium data with the three activity coefficient models agree very well with the exptl. values.

Fluid Phase Equilibria published new progress about Antoine equation. 118-45-6 belongs to class chlorides-buliding-blocks, and the molecular formula is C8H3ClO3, Category: chlorides-buliding-blocks.

Referemce:
Chloride – Wikipedia,
Chlorides – an overview | ScienceDirect Topics