By Thomas Wirth

"This one-stop reference is the 1st publication in this rising and quick constructing box with a spotlight on synthesis and catalysis. As such, it covers all elements from academia and in a truly dependent approach. best specialists give you the history info as an preliminary reduction for newbies to the sector, whereas chapters on various response kinds and business functions make this an both important resource Read more...

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The conditions at which interfacial forces dominate over gravity, inertial and viscous forces corresponds to low velocities and small microchannel sizes. g. at the initial stage of rapid expansion of a vapor bubble, does inertia dominate over gravity and viscous forces [37, 51, 52]. 2 Inertial, viscous and gravitational body forces, relative to interfacial forces, as a function of the channel size and characteristic velocity in microfluidic multiphase systems [50]. smaller than dh can be formed, and microscale gas bubbles can be entrained, potentially resulting in fluid interfaces with complex shapes or interfacial instabilities.

KGaA, Weinheim ISBN: 978-3-527-31550-5 XVIII About the Editors Jaap Schouten is professor of Chemical Reactor Engineering at Eindhoven University of Technology (TU/e). The Secretary of the Working Party on Chemical Reaction Engineering of the European Federation of Chemical Engineering (EFCE), Prof. Schouten is also a member of the Scientific Committees of the International Symposia on Chemical Reaction Engineering (ISCRE) and Microreaction Technology (IMRET), and of the European Process Intensification Conference (EPIC).

O. Box 18 6160 MD Geleen The Netherlands Dominique M. Roberge Lonza Ltd Valais Works 3930 Visp Switzerland Dirk Schmalz Merck KGaA Mainzerstraße 41 64579 Gernsheim Germany Yves Schuurman Institut de Recherche sur la Catalyse et l’Environnement de Lyon UMR 5256 CNRS Université Lyon 1 2 avenue Albert Einstein 69626 Villeurbanne Cedex France André C. van Veen Institut de Recherche sur la Catalyse et l’Environnement de Lyon UMR 5256 CNRS Université Lyon 1 2 avenue Albert Einstein 69626 Villeurbanne Cedex France M.

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