We present a new approach to calculate the precipitation of polymer nanoparticles in Conned Impiging Jet Reactors (CIJR) obtained by coupling together the Computational Fluid Dynamics (CFD) model, accounting for turbulent mixing, nucleation, growth and aggregation, and the Molecular Dynamics (MD) description of polymer molecules. A new expression for the nucleation rate is adopted and the MD simulations are used to identify all the missing parameters involved. Dierent operating conditions are investigated in order to assess the reliability of the model. Its predictions, in terms of mean particles size, are compared with experiments, resulting in good agreement
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
Fluidized beds (FB) reactors are widely used in the polymerization industry due to their superior he...
In this work a new approach for calculating the rate of formation of polymer nanoparticles in solven...
We present a new approach to calculate the nucleation rate in solvent-displacement processes. The ex...
Confined Impinging Jet Reactors (CIJRs) are appealing devices for precipitation of nanoparticles bec...
Confined Impinging Jet Reactors (CIJRs) are appealing devices for precipitation of nanoparticles bec...
A two-compartment population balance model has been developed for taking into account the large spat...
In our previous work, we used the population balance method to develop a molybdenum disulphide kinet...
We develop a thermodynamic continuum-level model, polySTRAND, for flow-induced nucleation in polymer...
In this thesis we investigate and develop analytic models for polymer nucleation and other barrier c...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February,...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
An integrated model combining computational fluid dynamics (CFD) with polymerization kinetics was de...
We have numerically solved kinetic equations describing formation of nuclei on active centers to det...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
Fluidized beds (FB) reactors are widely used in the polymerization industry due to their superior he...
In this work a new approach for calculating the rate of formation of polymer nanoparticles in solven...
We present a new approach to calculate the nucleation rate in solvent-displacement processes. The ex...
Confined Impinging Jet Reactors (CIJRs) are appealing devices for precipitation of nanoparticles bec...
Confined Impinging Jet Reactors (CIJRs) are appealing devices for precipitation of nanoparticles bec...
A two-compartment population balance model has been developed for taking into account the large spat...
In our previous work, we used the population balance method to develop a molybdenum disulphide kinet...
We develop a thermodynamic continuum-level model, polySTRAND, for flow-induced nucleation in polymer...
In this thesis we investigate and develop analytic models for polymer nucleation and other barrier c...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, February,...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
An integrated model combining computational fluid dynamics (CFD) with polymerization kinetics was de...
We have numerically solved kinetic equations describing formation of nuclei on active centers to det...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
This work evaluates the spatial distribution of normalised rates of droplet breakage and droplet coa...
Fluidized beds (FB) reactors are widely used in the polymerization industry due to their superior he...