The problem of designing the pellet characteristics for existing fixed-bed reactors has been studied. The reactor is assumed to be a unidimensional, plug-flow, heterogeneous type. Three particle shapes, two intraparticle mass transfer mechanisms, two lands of film resistance to mass transfer and two poisoning patterns have been considered. An economic balance to both product market price and pellet market cost was taken into account. An interactive program (HIMER) containing all these contributions was thus developed, enabling the investigator to follow the reactor performance along the flow coordinate
In order to operate a process which uses immobilized enzymes at constant conversion and constant cap...
Catalyst improvement is a key route toward process improvement in terms of yield, energy e...
The balance equations to a continuous plug flow recycle reactor performing a protease-mediated autoc...
A large number of chemical, bio-chemical and pollution-control processes use heterogeneous fixed-bed...
The integration between catalytic chemistry and reaction engineering fields generate more efficient ...
Catalytic fixed‐bed reactors with a low tube‐to‐particle diameter ratio are widely used in industria...
Immobilized multi-enzyme cascades are increasingly used in microfluidic devices. In particular, thei...
A general mathematical model was developed for predicting the performance and simulation of a packed...
Small size fixed-bed reactors are a common choice for testing industrial supported catalyst under in...
L’extrapolation des réacteurs catalytiques nécessite l’acquisition des données cinétiques sur des ré...
Packed bed reactors are widely used in the chemicals industry and have been studied carefully in the...
A mathematical model for several working conditions was numerically solved to study a fixed bed reac...
A recently developed technique to estimate effectiveness factor in catalytic pellets [J.C. Gottifred...
Consideration is given to the solution of the highly exothermic fixed bed catalytic reactor problem ...
In order to establish the theoretically ideal conditions necessary to minimize enzyme requirement fo...
In order to operate a process which uses immobilized enzymes at constant conversion and constant cap...
Catalyst improvement is a key route toward process improvement in terms of yield, energy e...
The balance equations to a continuous plug flow recycle reactor performing a protease-mediated autoc...
A large number of chemical, bio-chemical and pollution-control processes use heterogeneous fixed-bed...
The integration between catalytic chemistry and reaction engineering fields generate more efficient ...
Catalytic fixed‐bed reactors with a low tube‐to‐particle diameter ratio are widely used in industria...
Immobilized multi-enzyme cascades are increasingly used in microfluidic devices. In particular, thei...
A general mathematical model was developed for predicting the performance and simulation of a packed...
Small size fixed-bed reactors are a common choice for testing industrial supported catalyst under in...
L’extrapolation des réacteurs catalytiques nécessite l’acquisition des données cinétiques sur des ré...
Packed bed reactors are widely used in the chemicals industry and have been studied carefully in the...
A mathematical model for several working conditions was numerically solved to study a fixed bed reac...
A recently developed technique to estimate effectiveness factor in catalytic pellets [J.C. Gottifred...
Consideration is given to the solution of the highly exothermic fixed bed catalytic reactor problem ...
In order to establish the theoretically ideal conditions necessary to minimize enzyme requirement fo...
In order to operate a process which uses immobilized enzymes at constant conversion and constant cap...
Catalyst improvement is a key route toward process improvement in terms of yield, energy e...
The balance equations to a continuous plug flow recycle reactor performing a protease-mediated autoc...