Developing new stirred gas–liquid–solid reactors with high mass transfer capabilities is still a challenge. In this publication, we present a new concept of multiphase reactor using a stationary catalytic foam and a gas-inducing impeller. The gas–liquid (GL) and liquid–solid (LS) mass transfer rates in this reactor were compared to a stirred reactor with basket filled with beads. Batch absorption of hydrogen and measurement of α-methylstyrene hydrogenation rate on Pd/Al2O3 catalyst were used to evaluate kGLaGL coefficients and kLS coefficients, respectively. With similar LS transfer rates to the basket-reactor and much higher GL transfer rates, the new reactor reveals a very promising tool for intrinsic kinetic...
Three-phase reactor designs based on rotating solid foams are developed for the application in the f...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...
Multiphase reactors involving gas, liquid, and solid phases have several important applications in t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Hydrogenation is a very frequently occurring example of heterogeneously catalysed reaction widely us...
A new approach for the determination of liquid-solid-mass-transfer coefficients under reaction condi...
Three-phase reactor designs based on rotating solid foams are developed for the application in the f...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...
Multiphase reactors involving gas, liquid, and solid phases have several important applications in t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
The external and internal mass transfer for a rotating foam stirrer reactor has been studied using t...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Three-phase reactor designs based on rotating solid foams for the application in the fine chemical i...
Hydrogenation is a very frequently occurring example of heterogeneously catalysed reaction widely us...
A new approach for the determination of liquid-solid-mass-transfer coefficients under reaction condi...
Three-phase reactor designs based on rotating solid foams are developed for the application in the f...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...
Reactor configurations based on rotating solid foams for fast three-phase reactions are presented. S...