A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is achieved by implementing microwave cavities in series. The scale-up concept is demonstrated for case studies of a packed-bed reactor and a wall-coated tubular reactor. With known kinetics and reaction temperature, a packed-bed reactor gave a conversion of 99% with the highest production rate of 170 kgprod/kgcat·h for esterification of acetic acid and ethanol catalyzed by ion-exchange resin in 18 cavities. A similar approach for a multicomponent reaction of benzaldehyde, piperidine, and phenylacetylene catalyzed by a thin Cu film in a wall-coated tubular reactor gave 99% conversion with the highest production rate of 7740 kgprod/kgcat·h in 28...
A range of pharmaceutically relevant reactions were investigated for scale-up in a kilo-lab environm...
A commercially available continuous-flow reactor was adapted to run three organic reactions, e.g. tw...
Polymers have become important industrial materials due to their versatility and wide range of prope...
A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is...
Major efforts in the research field of microwave assisted organic synthesis have demonstrated the sp...
Monomode microwave heating has been applied in flow processes for the production of fine chemicals. ...
A product-scalable, catalytically mediated flow system has been developed to perform Suzuki-Miyaura ...
Microwave-assisted organic synthesis has received increasing attention in recent years as a valuable...
[EN] It is nowadays admitted that microwaves are frequently used in organic chemistry labs [1] (even...
Le chauffage par micro-ondes (MO) est employé depuis plus de 20 ans dans nombreux laboratoires pour ...
Microreactor technology applied in continuous flow processing is an essential feature in making orga...
An evaluation of a new bench-top microwave batch reactor that uses a single 1 L reaction vessel is p...
Microwave-assisted organic synthesis has received increasing attention in recent years as a valuable...
Driven by the success of microwave-assisted polymer chemistry as outlined in the other chapters of t...
A range of pharmaceutically relevant reactions were investigated for scale-up in a kilo-lab environm...
A commercially available continuous-flow reactor was adapted to run three organic reactions, e.g. tw...
Polymers have become important industrial materials due to their versatility and wide range of prope...
A new scale-up concept for microwave assisted flow processing is presented where modular scale-up is...
Major efforts in the research field of microwave assisted organic synthesis have demonstrated the sp...
Monomode microwave heating has been applied in flow processes for the production of fine chemicals. ...
A product-scalable, catalytically mediated flow system has been developed to perform Suzuki-Miyaura ...
Microwave-assisted organic synthesis has received increasing attention in recent years as a valuable...
[EN] It is nowadays admitted that microwaves are frequently used in organic chemistry labs [1] (even...
Le chauffage par micro-ondes (MO) est employé depuis plus de 20 ans dans nombreux laboratoires pour ...
Microreactor technology applied in continuous flow processing is an essential feature in making orga...
An evaluation of a new bench-top microwave batch reactor that uses a single 1 L reaction vessel is p...
Microwave-assisted organic synthesis has received increasing attention in recent years as a valuable...
Driven by the success of microwave-assisted polymer chemistry as outlined in the other chapters of t...
A range of pharmaceutically relevant reactions were investigated for scale-up in a kilo-lab environm...
A commercially available continuous-flow reactor was adapted to run three organic reactions, e.g. tw...
Polymers have become important industrial materials due to their versatility and wide range of prope...