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The Physical Chemistry of Materials: Energy and Environmental Applications

Autor Rolando Roque-Malherbe
en Limba Engleză Hardback – 28 oct 2009
In recent years, the area dealing with the physical chemistry of materials has become an emerging discipline in materials science that emphasizes the study of materials for chemical, sustainable energy, and pollution abatement applications. Written by an active researcher in this field, Physical Chemistry of Materials: Energy and Environmental Applications presents methods for synthesizing and characterizing adsorbents, ion exchangers, ionic conductors, heterogeneous catalysts, and permeable porous and dense materials. It also discusses their properties and applications.
The book explores various examples of these important materials, including perovskites, zeolites, mesoporous molecular sieves, silica, alumina, active carbons, carbon nanotubes, titanium dioxide, magnesium oxide, clays, pillared clays, hydrotalcites, alkali metal titanates, titanium silicates, polymers, and coordination polymers. It shows how the materials are used in adsorption, ion conduction, ion exchange, gas separation, membrane reactors, catalysts, catalysts supports, sensors, pollution abatement, detergency, animal nourishment, agriculture, and sustainable energy applications.
Rising pollution levels and the need for sustainable energy have necessitated new ways of using certain materials to combat these problems. Focusing on this emerging discipline, Physical Chemistry of Materials describes the methods of syntheses and characterization of adsorbents, ion exchangers, ionic conductors, catalysts, and permeable materials. It tackles key issues in materials science and physical chemistry.
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Specificații

ISBN-13: 9781420082722
ISBN-10: 1420082728
Pagini: 522
Ilustrații: 326 b/w images, 50 tables and over 500 equations
Dimensiuni: 178 x 254 x 30 mm
Greutate: 1.11 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press

Public țintă

Professional

Cuprins

Materials Physics. Structure of Adsorbents, Ion Exchangers, Ion Conductors, Catalysts, and Permeable Materials. Synthesis Methods of Catalyst Adsorbents, Ion Exchangers, and Permeable Materials. Material Characterization Methods. Diffusion in Materials. Adsorption in Nanoporous Materials. Ion Exchange. Solid-State Electrochemistry. Heterogeneous Catalysis and Surface Reactions. Membranes. Index.

Notă biografică

Rolando M.A. Roque-Malherbe is the director of the Institute of Physical and Chemical Applied Research at the University of Turabo in Puerto Rico.

Recenzii

The structure of the book is coherent. Extensive equations, figures and references provide suitable complement to the text. The production quality allows the reader to understand the ideas with minimal confusion or difficulty. This book succeeds in being systematic and practical, and can be used as a great reference for science and engineering researchers or a textbook for university studies … Not only does this book summarize the classical theories under the discipline of physical chemistry of materials, but also exhibits their engineering applications in response to the currently urgent needs of energy and environmental issues.
Materials Today, March 2010

This useful, advanced course resource should interest graduate students in materials science, physics, engineering, or chemistry. … All chapters contain extensive, up-to-date, comprehensive bibliographies. There is an excellent balance between chapters on principles and chapters on specific applications; this balance makes the book attractive as a textbook. … Summing Up: Recommended.
CHOICE, September 2010

 

Descriere

This book examines the structure, synthesis, properties, and applications of adsorbents, catalysts, ion exchangers and conductors, and permeable porous and dense materials. Examples of these important materials include perovskites, zeolites, mesoporous molecular sieves, carbon nanotubes, titanium dioxide, clays, hydrotalcites, and titanium silicates. The book shows how the materials are used in gas separation, membrane reactors, pollution abatement, detergency, agriculture, sustainable energy applications, and more. It also discusses the theoretical aspects of materials physics, describes the characterization of materials, and explains diffusion in dense and porous materials.