The classical scale-up approach for hydrogenation reaction processes usually includes numerous laboratory and pilot scale experiments. With a novel scale-up strategy a significant number of these experiments may be replaced by modern computational simulations in combination with scale-down experiments. With only a few laboratory scale experiments and information about the production scale reactor, a chemical process model is developed. This computational model can be used to simulate the production scale process with a range of different process parameters. Those simulations are then validated by only a few experiments in an advanced scale-down reactor. The scale-down reactor has to be geometrically identical to the corresponding production...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Over the course of the last forty years, process intensification (PI) has continued to develop as an...
The classical scale-up approach for hydrogenation reaction processes usually includes numerous labor...
The classical scale-up approach for hydrogenation reaction processes usually includes numerous labor...
A modeling-based strategy is disclosed for identifying reaction conditions for the safe and effectiv...
We successfully demonstrated a novel process intensification concept enabled by the development of m...
Process scale-up studies are, generally, non-linear. This basically means that it is not possible to...
Process scale-up studies are, generally, non-linear. This basically means that it is not possible to...
The pharmaceutical industry has been quite successful in developing new hydrogenation processes, and...
Despite their widespread use in the chemical industries, hydrogenation reactions remain challenging....
The scale-up/-down of polymn. reactors has to deal with large viscosity changes during the process, ...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Over the course of the last forty years, process intensification (PI) has continued to develop as an...
The classical scale-up approach for hydrogenation reaction processes usually includes numerous labor...
The classical scale-up approach for hydrogenation reaction processes usually includes numerous labor...
A modeling-based strategy is disclosed for identifying reaction conditions for the safe and effectiv...
We successfully demonstrated a novel process intensification concept enabled by the development of m...
Process scale-up studies are, generally, non-linear. This basically means that it is not possible to...
Process scale-up studies are, generally, non-linear. This basically means that it is not possible to...
The pharmaceutical industry has been quite successful in developing new hydrogenation processes, and...
Despite their widespread use in the chemical industries, hydrogenation reactions remain challenging....
The scale-up/-down of polymn. reactors has to deal with large viscosity changes during the process, ...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Multiphase flow processing in flow reactors holds great promises for diverse applications in fine ch...
Over the course of the last forty years, process intensification (PI) has continued to develop as an...