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Updated: Aug 18, 2026

Quantifying Mixing using Magnetic Resonance Imaging
Published on: January 25, 2012
In situ magnetic resonance measurement of conversion, hydrodynamics and mass transfer during single- and two-phase
L F Gladden1, P Alexander, M M Britton
1Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, UK. Gladden@cheng.cam.ac.uk
Abstract:
In recent years there has been increasing interest in applying magnetic resonance (MR) techniques in areas of engineering and chemical technology. The science that underpins many of these applications is the physics and chemistry of transport and reaction processes in porous materials. Key to the exploitation of MR methods will be our ability to demonstrate that MR yields information that cannot be obtained using conventional measurement techniques in engineering research. This article describes two case studies that highlight the power of MR to give new insights to chemical engineers. First, we demonstrate the application of MR techniques to explore both mass transfer and chemical conversion in situ within a fixed bed of catalyst, and we then use these data to identify the rate-controlling step of the chemical conversion. Second, we implement a rapid imaging technique to study the stability of the gas-liquid distribution in the low- and high-interaction two-phase flow regimes in a trickle-bed reactor.
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