A stochastic formulation for the description of antisolvent mediated crystal growth processes is discussed. In the proposed approach, the crystal size growth dynamics is driven by a deterministic growth factor coupled to a stochastic component. The evolution in time of the particle size distribution (PSD) is then described in terms of a Fokker-Planck equation. In this work, we investigate and assess comparatively the performance of the FPE approach to model the crystal size distribution based on different expressions for the stochastic component. In particular, we investigate the one-dimensional Fokker-Planck equation with a nonlinear diffusion coefficient to represent the crystal growth process. Validations against experimental data are pr...
This work aims a stochastic approach for the calculation of robust anti-solvent addition policies fo...
This work discusses a stochastic approach for the calculation of robust anti-solvent addition polici...
The time behavior of the crystal size distribution in anti-solvent based crystal growth processes is...
A stochastic formulation for the description of antisolvent mediated crystal growth processes is dis...
A phenomenological model for the description of antisolvent mediated crystal growth processes is pre...
A stochastic approach to describe the crystal size distribution dynamics in antisolvent based crysta...
A new formulation of the recent stochastic approach for the description of the particle-size distrib...
A generalized formulation for the development of stochastic models to predict the crystal size distr...
A phenomenological model for the description of antisolvent mediated crystal growth processes is her...
The goal of the present work is to model the crystal growth processes mediated by both antisolvent f...
A stochastic formulation for the description of cooling-antisolvent mediated crystal growth processe...
Recently, a novel stochastic formulation based on the Fokker–Planck equation (FPE) for the descripti...
In this paper a new stochastic approach for the description of antisolvent crystal growth processes ...
A stochastic global formulation describing antisolvent mediated crystal growth processes based on th...
In this Thesis a stochastic approach to model antisolvent crystallization processes is addressed. T...
This work aims a stochastic approach for the calculation of robust anti-solvent addition policies fo...
This work discusses a stochastic approach for the calculation of robust anti-solvent addition polici...
The time behavior of the crystal size distribution in anti-solvent based crystal growth processes is...
A stochastic formulation for the description of antisolvent mediated crystal growth processes is dis...
A phenomenological model for the description of antisolvent mediated crystal growth processes is pre...
A stochastic approach to describe the crystal size distribution dynamics in antisolvent based crysta...
A new formulation of the recent stochastic approach for the description of the particle-size distrib...
A generalized formulation for the development of stochastic models to predict the crystal size distr...
A phenomenological model for the description of antisolvent mediated crystal growth processes is her...
The goal of the present work is to model the crystal growth processes mediated by both antisolvent f...
A stochastic formulation for the description of cooling-antisolvent mediated crystal growth processe...
Recently, a novel stochastic formulation based on the Fokker–Planck equation (FPE) for the descripti...
In this paper a new stochastic approach for the description of antisolvent crystal growth processes ...
A stochastic global formulation describing antisolvent mediated crystal growth processes based on th...
In this Thesis a stochastic approach to model antisolvent crystallization processes is addressed. T...
This work aims a stochastic approach for the calculation of robust anti-solvent addition policies fo...
This work discusses a stochastic approach for the calculation of robust anti-solvent addition polici...
The time behavior of the crystal size distribution in anti-solvent based crystal growth processes is...