Polymorphs, Hydrates, Cocrystals, and Cocrystal Hydrates: Thermodynamic Modeling of Theophylline Systems

被引:34
|
作者
Lange, Linda [1 ]
Sadowski, Gabriele [1 ]
机构
[1] TU Dortmund Univ, Lab Thermodynam, Dept Chem & Biochem Engn, Emil Figge Str 70, D-44227 Dortmund, Germany
关键词
EQUATION-OF-STATE; PERTURBED-CHAIN SAFT; ACTIVE PHARMACEUTICAL INGREDIENTS; TERNARY PHASE-DIAGRAMS; CO-CRYSTAL; ANHYDROUS THEOPHYLLINE; ASSOCIATING SYSTEMS; SOLID POLYMORPHISM; ORGANIC-COMPOUNDS; HEAT-CAPACITY;
D O I
10.1021/acs.cgd.6b00554
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Polymorphic transitions and hydrate formation often occur in systems of cocrystal-forming components. To increase the efficiency of cocrystal formation and purification processes, the complex phase behavior of such systems was modeled using perturbed-chain statistical associating fluid theory (PC-SAFT). This is demonstrated for theophylline, a well-studied pharmaceutical, exhibiting polymorphs, as well as formation of a hydrate, cocrystals, and even cocrystal hydrates. The solubility of theophylline in water was modeled including hydrate formation (1:1) as well as polymorphic transitions of theophylline between the anhydrate forms IV, II, and I. The solubilities of theophylline(IV), the thermodynamically stable form at ambient conditions, and the theophylline/glutaric acid (1:1) cocrystal could be predicted without performing additional measurements. Moreover, the complex phase behavior of the theophylline/citric acid/water system could be correlated accounting for the formation of the theophylline hydrate (1:1), citric acid (1:1) hydrate, theophylline/citric cocrystal (1:1), and the corresponding cocrystal hydrate (1:1:1). By accounting for the thermodynamic nonideality of the components in the cocrystal system, PC-SAFT is able to model the solubility behavior of all above-mentioned components in good agreement with the experimental data.
引用
收藏
页码:4439 / 4449
页数:11
相关论文
共 50 条
  • [41] Modeling study on phase equilibria of semiclathrate hydrates of pure gases and gas mixtures in aqueous solutions of TBAB and TBAF
    Ma, Qing-Lan
    Qi, Jun-Li
    Chen, Guang-Jin
    Sun, Chang Yu
    FLUID PHASE EQUILIBRIA, 2016, 430 : 178 - 187
  • [42] A new thermodynamic model for predicting the 3-D phase equilibrium surface of gas hydrates considering the effect of salt concentration
    Huang, Honglin
    Liu, Shujie
    Zhang, Geng
    Luo, Ming
    Li, Wentuo
    Wu, Yanhui
    Li, Jun
    JOURNAL OF MOLECULAR LIQUIDS, 2024, 410
  • [43] The application of CPA-vdWP to the phase equilibrium modeling of methane-rich sour natural gas hydrates
    Li, Luling
    Zhu, Lin
    Fan, Junming
    FLUID PHASE EQUILIBRIA, 2016, 409 : 291 - 300
  • [44] Ethane (1) -Water (2) Solubility Modeling and New Water Content Measurements of Liquid Ethane in Equilibrium with Water and Hydrates
    Alassi, Abdulla
    Chapoy, Antonin
    Burgass, Rod
    FLUID PHASE EQUILIBRIA, 2023, 574
  • [45] Thermodynamic modeling and correlations of CH4, C2H6, CO2, H2S, and N2hydrates with cage occupancies
    Khan, Shadman H.
    Kumari, Anupama
    Dixit, G.
    Majumder, Chandrajit B.
    Arora, Amit
    JOURNAL OF PETROLEUM EXPLORATION AND PRODUCTION TECHNOLOGY, 2020, 10 (08) : 3689 - 3709
  • [46] Thermodynamic model for predicting equilibrium conditions of clathrate hydrates of noble gases plus light hydrocarbons: Combination of Van der Waals-Platteeuw model and sPC-SAFT EoS
    Abolala, Mostafa
    Varaminian, Farshad
    JOURNAL OF CHEMICAL THERMODYNAMICS, 2015, 81 : 89 - 94
  • [47] Multi-component-multiphase flash calculations for systems containing gas hydrates by direct minimization of Gibbs free energy
    Izadpanah, Amir Abbas
    Vafaie Sefti, Mohsen
    Varaminian, Farshad
    IRANIAN JOURNAL OF CHEMISTRY & CHEMICAL ENGINEERING-INTERNATIONAL ENGLISH EDITION, 2006, 25 (03): : 27 - 34
  • [48] Thermodynamic Modeling of Natural Gas Systems Containing Water
    Karakatsani, Eirini K.
    Kontogeorgis, Georgios M.
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52 (09) : 3499 - 3513
  • [49] LOW-TEMPERATURE HEAT CAPACITIES AND STANDARD THERMODYNAMIC FUNCTIONS OF RARE EARTH ISOTHIOCYANATE HYDRATES, RE(NCS)3 ·nH2O
    谭志诚
    松尾隆祐
    菅宏
    张志英
    尹敬执
    蒋本杲
    孙同山
    ChineseScienceBulletin, 1991, (13) : 1086 - 1090
  • [50] Thermodynamic Modeling of Aqueous Electrolyte Systems: Current Status
    May, Peter M.
    Rowland, Darren
    JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2017, 62 (09) : 2481 - 2495