Many heterogeneous processes are limited by mass transfer at typical laboratory or industrial conditions. When using a rotating bed reactor, the mass transfer is most easily controlled using the rotational speed.
Higher speeds yield higher flow rates through the reactor, and increased mass transfer as a consequence. This improves the overall reaction rate and the output of product from the system. However, the rotational speed will also affect other parameters, such as the specification of components and the electricity consumption, which may be important factors on industrial scale.
Finding a rotational speed that eliminates mass transfer problems without wasting energy and complicating scale-up is easily done using a rotating bed reactor on benchtop scale. This application note shows the effect of varying the stirring speed on three applications:
Figure showing how to find the optimal RPM when running a biocatalytic reaction with a rotating bed reactor. By varying the RPM you can find the mass transfer limit of the reaction. In this case 400 RPM is enough to maximize mass transfer.
Difference between anchor stirrer in batch mode and the rotating bed reactor (RBR) where you can see how the benefits of the RBR becomes more prominent above 450 RPM.
Several conclusions can be drawn:
Our laboratory range of reaction systems are ideal for reaction screening and process development, before taking the process to full production scale.
Topics Reactor Engineering, Process development, Decolorization
Products SpinChem® RBR S2, SpinChem® RBR S3, SpinChem® Vessel V3
This website uses cookies to ensure you get the best experience on our website. If you continue browsing, you agree to the privacy policy.