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Introduction to Zeolite Molecular Sieves, 3rd Edition presents a
collection of the most important results and ideas in the field of
molecular sieve chemistry and technology, the most important
experimental techniques related to the research activities in
molecular sieves, and identifies new areas of molecular sieve
chemistry. Chapters start at a reasonably simple entry level, but
also covers the present state-of-the-art in the field.
Topics covered include structure, synthesis, characterization, ion
exchange, adsorption, diffusion, separations, and natural zeolites.
* 6 years since the last edtion this book brings together the rapid
development within the field of molecular sieve chemistry and
applications
* Accessible to newcomers to the field, also containing valuable
information for experienced researchers
* 27 chapters written by renowned scientists in their field,
including updates on some 2nd edition chapters
Zeolites are the most frequently used industrial catalysts. Their
applications range from oil refining, petrochemistry and the
synthesis of special chemicals to environmental catalysis. Rapid
progress in basic research and the development of new processes has
resulted in the first Federation of European Zeolite Associations
(FEZA) School on Zeolites. Zeolites and Ordered Mesoporous
Materials: Progress and Prospects reflects the programme of the
first School on Zeolites, held in Prague on August 20-21, 2005.
Readers gain insight into the synthesis of the ever-expanding
spectrum of zeolites, zeotypes and ordered mesoporous materials
including the use of zeolites and mesoporous materials as catalysts
in organic conversions. These range from the fascinating
ship-in-bottle systems via cascade reactions to bulk applications
in oil-refining and petrochemistry. Contributions from world
experts enhance the book, with select chapters on trends in the
molecular sieves field, zeolite structures, ion-exchange properties
of zeolites, advanced applications (with unique technologies and
opportunities) and a chapter on natural zeolites.
* Contains contributions from world experts in the field
* Includes an account of the frontier topic of high-throughput
techniques
* Reviews the application of quantum-chemical methods to zeolite
science to show the necessity of combining experimental and
theoretical approaches
Covering the breadth of zeolite chemistry and catalysis, this book
provides the reader with a complete introduction to field, covering
synthesis, structure, characterisation and applications. Beginning
with the history of natural and synthetic zeolites, the reader will
learn how zeolite structures are formed, synthetic routes, and
experimental and theoretical structure determination techniques.
Their industrial applications are covered in-depth, from their use
in the petrochemical industry, through to fine chemicals and more
specialised clinical applications. Novel zeolite materials are
covered, including hierarchical zeolites and two-dimensional
zeolites, showcasing modern developments in the field. This book is
ideal for newcomers who need to get up to speed with zeolite
chemistry, and also experienced researchers who will find this a
modern, up-to-date guide.
Due to their unique porous properties, zeolites (also referred to
as molecular sieves) are used in a variety of applications - major
uses are in petrochemical cracking, ion-exchange (water softening
and purification), and in the separation and removal of gases and
solvents. Molecular Sieves: From Basic Research to Industrial
Applications, Volume 158 A, B presents over 265 worldwide
contributions on the latest developments in zeolitic research.
Readers will find this book, which is divided into five sections:
Synthesis, Characterization, Adsorption, Catalysis, and Novel
applications, ideal for staying up to date on current research on
porous materials.
* Comprehensive overview of current research on porous
materials
* Contains experimental as well as theoretical input, reflecting
the increasing overlap between theory and experiment
* Contributions from the world's leading authorities
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