To design a crystallizer for producing an active pharmaceutical ingredient (API) of the desired crystal size, it is necessary to know the solubility, the nucleation metastable zone widths (MSZW), the crystal growth rates, and the nucleation rates. These data are available for the popular anti-inflammatory drug ibuprofen crystallized from absolute ethanol and water–ethanol mixtures. Using these data, methods are outlined to design industrial crystallizers to recover ibuprofen crystals. From ethanol, as the solubility increases greatly with temperature, cooling crystallizers can be used industrially. Both seeded batch and continuous designs are considered
The main focus of this work was to enhance the solubility and bioavailability of Ibuprofen by using ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
The crystal growth of ibuprofen as a function of crystallisation environment is presented. Measureme...
To design a crystallizer for producing an active pharmaceutical ingredient (API) of the desired crys...
Abstract. To design a crystallizer for producing an active pharmaceutical ingredient (API) of the de...
Design of industrial crystallization processes usually employs laboratory‐scale experimental data wh...
The crystallisation of ibuprofen under diffusion-limited conditions measured as a function of supers...
Ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] is a common analgesic pharmaceutical. It is substan...
Objective(s) Ibuprofen is a problematic drug in tableting, and dissolution due to its poor solubilit...
Ibuprofen exhibits poor flow, poor compaction and dissolution behaviour, and it is prone to capping ...
To quantify the crystallization of racemic ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] from aqu...
To investigate the crystallization of racemic ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] from ...
Liquid–liquid phase separation (LLPS) during the crystallization of active pharmaceutical ingredient...
To investigate the crystallization of ibuprofen [((RS)-2-(4-(2-methylpropyl) phenyl) propanoic acid)...
To investigate the crystallization of ibuprofen [((RS)-2-(4-(2-methylpropyl) phenyl) propanoic acid)...
The main focus of this work was to enhance the solubility and bioavailability of Ibuprofen by using ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
The crystal growth of ibuprofen as a function of crystallisation environment is presented. Measureme...
To design a crystallizer for producing an active pharmaceutical ingredient (API) of the desired crys...
Abstract. To design a crystallizer for producing an active pharmaceutical ingredient (API) of the de...
Design of industrial crystallization processes usually employs laboratory‐scale experimental data wh...
The crystallisation of ibuprofen under diffusion-limited conditions measured as a function of supers...
Ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] is a common analgesic pharmaceutical. It is substan...
Objective(s) Ibuprofen is a problematic drug in tableting, and dissolution due to its poor solubilit...
Ibuprofen exhibits poor flow, poor compaction and dissolution behaviour, and it is prone to capping ...
To quantify the crystallization of racemic ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] from aqu...
To investigate the crystallization of racemic ibuprofen [2-(4-isobutyl-phenyl)-propionic acid] from ...
Liquid–liquid phase separation (LLPS) during the crystallization of active pharmaceutical ingredient...
To investigate the crystallization of ibuprofen [((RS)-2-(4-(2-methylpropyl) phenyl) propanoic acid)...
To investigate the crystallization of ibuprofen [((RS)-2-(4-(2-methylpropyl) phenyl) propanoic acid)...
The main focus of this work was to enhance the solubility and bioavailability of Ibuprofen by using ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
The crystal growth of ibuprofen as a function of crystallisation environment is presented. Measureme...