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Acceleration of mass transfer in methane-producing loop reactors

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Abstract

Gas bubbles entrapped in methanogenic granules subjected to hydrostatic pressure oscillations during recirculation in loop reactors will induce intraparticle liquid flows, and thereby enhance mass transfer in excess of diffusion. This ‘breathing particle’ concept was clearly demonstrated in a well defined inorganic model system. The experimental results could be described satisfactory with a structured mathematical model, while a 30% improvement is predicted for methanogenic loop reactors as compared to constant pressure systems. It is concluded that acceleration of mass transfer in gas-producing systems offers challenging perspectives for both heterogeneous catalysis and biological fermentations.

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Van den Heuvel, J.C., Vredenbregt, L.H.J., Portegies-Zwart, I. et al. Acceleration of mass transfer in methane-producing loop reactors. Antonie van Leeuwenhoek 67, 125–130 (1995). https://doi.org/10.1007/BF00872200

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