Modern Drying Technology, Volume 2: Experimental Techniques
| PUBLISHER | Wiley-Vch (02/24/2009) |
| PRODUCT TYPE | Hardcover (Hardcover) |
Description
Unvermeidbar, aber energieintensiv und schwer zu modellieren: Industrielle Trocknungsprozesse sind eine Herausforderung für den forschenden Ingenieur ebenso wie für den Praktiker in der Produktion. Dieses fünfbändige Handbuch stellt sich allen komplizierten Fragen der modernen Trocknungstechnologie von der Berechnung über die experimentelle Untersuchung bis zur Intensivierung und Optimierung. Im Mittelpunkt des zweiten Bandes stehen Verfahren zur Messung des Feuchtegehalts wie akustische Levitation, Taupunktspiegel, Coulometrie, bildgebende IR- und NMR-Spektroskopie sowie Röntgentomographie. Ein- und Mehrteilchensysteme werden erläutert und mit realen Situationen verglichen.
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Product Format
Product Details
ISBN-13:
9783527315574
ISBN-10:
3527315578
Binding:
Hardback or Cased Book (Sewn)
Content Language:
English
More Product Details
Page Count:
412
Carton Quantity:
16
Product Dimensions:
7.00 x 0.90 x 9.50 inches
Weight:
2.00 pound(s)
Feature Codes:
Bibliography,
Index,
Price on Product,
Table of Contents,
Illustrated
Country of Origin:
DE
Subject Information
BISAC Categories
Technology & Engineering | Chemical & Biochemical
Dewey Decimal:
660.284
Descriptions, Reviews, Etc.
jacket back
This five-volume handbook provides a comprehensive overview of all important aspects of modern drying technology, including only cutting-edge results.
Volume 2 brings together the key methods used for drying by a variety of industries. Key topics include the measurement of average moisture content, which covers acoustic levitation, dew point mirror and coulometry, near-infrared spectral imaging, magnetic resonance imaging and X-ray tomography. Characterisation of particles using positron emission particle tracking and submicron scale methodology are also discussed. Both single particle and particle systems are explained and clarified with real examples. Released Volumes of Modern Drying Technology *Volume 1: Computational Tolls at Different Scales
ISBN 978-3-527-31556-7 Forthcoming Volumes of Modern Drying Technology *Volume 3: Product Quality and Formulation
ISBN 978-3-527-31558-1
*Volume 4: Energy Saving
ISBN 978-3-527-31559-8
*Volume 5: Process Intensification
ISBN 978-3-527-31560-4
*Set (Volume 1-5)
ISBN 978-3-527-31554-3 Professor Dr. Ing. Evangelos Tsotsas took over the Chair of Thermal Process engineering at Otto-von-Guericke-University Magdeburg (Germany) in 1994. Prior to this, he was a Senior Process Specialist at the Dow Chemical Company. He has authored more than 150 papers in refereed journals and conference proceedings, and is the recipient of the Hosokawa Award for Innovation in Dyring Research. He serves in various functions in the German Research Foundation (DFG), the Alexander von Humboldt Foundation, the European Multiphase Systems Institute, the International Center of Heat and Mass Transfer and European and the German Working Party on Drying. Professor Arun S. Mujumdar is Professor of Mechanical Engineering at the National University of Singapore and Adjunct Professor of Chemical Engineering at the McGill University, Canada. Prior to this, he was President and Principal Consultant of Exergex Corp., Canada. He has authored 2 books and over 60 book chapters, edited or co-edited over 50 books and journals, elected Fellow of the American Society of Mechanical Engineers, the Chemical Institute of Canada and the Institute of Chemical Enginerring, India. He was recently awarded Doctor Honoris Causa by the Technical University of Lodz, Poland.
Volume 2 brings together the key methods used for drying by a variety of industries. Key topics include the measurement of average moisture content, which covers acoustic levitation, dew point mirror and coulometry, near-infrared spectral imaging, magnetic resonance imaging and X-ray tomography. Characterisation of particles using positron emission particle tracking and submicron scale methodology are also discussed. Both single particle and particle systems are explained and clarified with real examples. Released Volumes of Modern Drying Technology *Volume 1: Computational Tolls at Different Scales
ISBN 978-3-527-31556-7 Forthcoming Volumes of Modern Drying Technology *Volume 3: Product Quality and Formulation
ISBN 978-3-527-31558-1
*Volume 4: Energy Saving
ISBN 978-3-527-31559-8
*Volume 5: Process Intensification
ISBN 978-3-527-31560-4
*Set (Volume 1-5)
ISBN 978-3-527-31554-3 Professor Dr. Ing. Evangelos Tsotsas took over the Chair of Thermal Process engineering at Otto-von-Guericke-University Magdeburg (Germany) in 1994. Prior to this, he was a Senior Process Specialist at the Dow Chemical Company. He has authored more than 150 papers in refereed journals and conference proceedings, and is the recipient of the Hosokawa Award for Innovation in Dyring Research. He serves in various functions in the German Research Foundation (DFG), the Alexander von Humboldt Foundation, the European Multiphase Systems Institute, the International Center of Heat and Mass Transfer and European and the German Working Party on Drying. Professor Arun S. Mujumdar is Professor of Mechanical Engineering at the National University of Singapore and Adjunct Professor of Chemical Engineering at the McGill University, Canada. Prior to this, he was President and Principal Consultant of Exergex Corp., Canada. He has authored 2 books and over 60 book chapters, edited or co-edited over 50 books and journals, elected Fellow of the American Society of Mechanical Engineers, the Chemical Institute of Canada and the Institute of Chemical Enginerring, India. He was recently awarded Doctor Honoris Causa by the Technical University of Lodz, Poland.
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publisher marketing
Unvermeidbar, aber energieintensiv und schwer zu modellieren: Industrielle Trocknungsprozesse sind eine Herausforderung für den forschenden Ingenieur ebenso wie für den Praktiker in der Produktion. Dieses fünfbändige Handbuch stellt sich allen komplizierten Fragen der modernen Trocknungstechnologie von der Berechnung über die experimentelle Untersuchung bis zur Intensivierung und Optimierung. Im Mittelpunkt des zweiten Bandes stehen Verfahren zur Messung des Feuchtegehalts wie akustische Levitation, Taupunktspiegel, Coulometrie, bildgebende IR- und NMR-Spektroskopie sowie Röntgentomographie. Ein- und Mehrteilchensysteme werden erläutert und mit realen Situationen verglichen.
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