Studies in the last decade suggest that microwave energy may have a unique ability to influence chemical processes. These include chemical and materials syntheses as well as separations. Specifically, recent studies have documented a significantly reduced time for fabricating zeolites, mixed oxide and mesoporous molecular sieves by employing microwave energy. In many cases, microwave syntheses hove proven to synthesize new nanoporous structures. By reducing the times by over an order of magnitude, continuous production would be possible to replace batch synthesis. This lowering of the cost would make-more nonoporous materials readily available for many chemical, environmental and biological applications. Further, microwave syntheses have often proven to create more uniform (defect-free) products than from conventional hydrothermol synthesis. However, the mechanism and engineering for the enhanced rates of syntheses are unknown. We review the many studies that have demonstrated the enhanced syntheses of nanoporous oxides and analyze the proposals to explain differences in microwave reactions. Finally, the microwave reactor engineering is discussed, as it explains the discrepancies between many microwave studies.
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Institute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Chair of Waste Processing Technology and Waste Management, Montanuniversität Leoben, Franz-Josef-Str. 18, LeobenInstitute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Höllen D.
Klammer D.
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Institute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, GrazInstitute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Klammer D.
Letofsky-Papst I.
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Institute of Electron Microscopy and Nanoanalysis (FELMI), Graz University of Technology, Steyrergasse 17, Graz
Graz Centre for Electron Microscopy (ZFE), Steyrergasse 17, Graz
Austrian Cooperative Research (ACR), Steyrergasse 17, GrazInstitute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Letofsky-Papst I.
Raab G.
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Institute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Department of Geography, University of Zürich, Winterthurerstr. 190, ZurichInstitute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz
Raab G.
Dietzel M.
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Institute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, GrazInstitute of Applied Geosciences, Graz University of Technology, Rechbauerstr. 12, Graz