
Polysaccharide Materials
Performance by Design
Oxford University Press Inc
1st Edition
Published on 20. May 2010
Book
Hardback
304 pages
978-0-8412-6986-6 (ISBN)
Description
Today we are experiencing a renaissance in the chemistry of polysaccharide materials. This is due in part to recognition of the importance of renewable-based materials in a society in which petroleum has become a much more expensive feedstock, with a cloudy future with respect to adequacy of supply. There are currently intense, global efforts to develop a biomass-based refinery process, intended to produce biofuel (ethanol or butanol being the top candidates) that
will replace some or all of the petroleum-based fuel we now use. In parallel, scientists and non-scientists have become aware of the opportunities that this biofuel industry will create for biomass-based products. The utilization of waste from the biofuel process, along with the exploitation of the
collection system for biomass that will serve the biofuel production process, to make other products from biomass, will create an unprecedented and revolutionary opportunity for the creation of integrated biorefineries. These biorefineries will have substantial resemblance to current petroleum refineries, in that they will convert a natural product (or more properly, products) into fuel by chemical transformations and separation processes, and simultaneously use co-products and main products as
feedstocks for the production of more complex chemicals.
In order to take advantage of the opportunities presented by a biorefinery-based economy, it is crucial that we develop new synthetic methods for polysaccharide derivatives, and new understanding of the structure-property-performance relationships of these versatile molecules. This symposium series book will describe new synthetic methods, novel polysaccharide derivatives, new applications of these derivatives in biomedicine and packaging applications, and numerous examples of the creation of
new insight into the design of polysaccharide materials for performance. The articles in this symposium series book are good examples of the advances in polysaccharide chemistry being made in the current renaissance that will help to move us towards a biorefinery future.
will replace some or all of the petroleum-based fuel we now use. In parallel, scientists and non-scientists have become aware of the opportunities that this biofuel industry will create for biomass-based products. The utilization of waste from the biofuel process, along with the exploitation of the
collection system for biomass that will serve the biofuel production process, to make other products from biomass, will create an unprecedented and revolutionary opportunity for the creation of integrated biorefineries. These biorefineries will have substantial resemblance to current petroleum refineries, in that they will convert a natural product (or more properly, products) into fuel by chemical transformations and separation processes, and simultaneously use co-products and main products as
feedstocks for the production of more complex chemicals.
In order to take advantage of the opportunities presented by a biorefinery-based economy, it is crucial that we develop new synthetic methods for polysaccharide derivatives, and new understanding of the structure-property-performance relationships of these versatile molecules. This symposium series book will describe new synthetic methods, novel polysaccharide derivatives, new applications of these derivatives in biomedicine and packaging applications, and numerous examples of the creation of
new insight into the design of polysaccharide materials for performance. The articles in this symposium series book are good examples of the advances in polysaccharide chemistry being made in the current renaissance that will help to move us towards a biorefinery future.
More details
Series
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
The book is targeted to scientists who are working in the fields of polysaccharide chemistry, drug delivery, biomaterials, and biomass conversion. This will include chemists, chemical engineers, pharmaceutical scientists, molecular biologists, biochemists, and all those who are engaged in the massive effort to bring into play a biomass/biorefinery based economy. The audience will include industrial and government scientists, faculty members, graduate students, and post-docs.
Illustrations
83 line & 46 halftone illustrations
Dimensions
Height: 230 mm
Width: 159 mm
Thickness: 21 mm
Weight
538 gr
ISBN-13
978-0-8412-6986-6 (9780841269866)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Kevin J. Edgar is Professor in the Department of Wood Science and Forest Products at Virginia Tech.
Thomas Heinze is Professor of Organic Chemistry at the University of Jena.
Charles M. Buchanan is a Senior Research Associate at Eastman Chemical Company.
Thomas Heinze is Professor of Organic Chemistry at the University of Jena.
Charles M. Buchanan is a Senior Research Associate at Eastman Chemical Company.
Editor
ProfessorProfessor, Virginia Tech
Professor of Organic ChemistryProfessor of Organic Chemistry, University of Jena
Senior Research AssociateSenior Research Associate, Eastman Chemical Company
Content
INTRODUCTION; POLYSACCHARIDE CHEMISTRY: FRONTIERS AND CHALLENGES; KEVIN J. EDGAR; SANDRA KLEIN; CHARLES M. BUCHANAN, NORMA L. BUCHANAN, KEVIN J. EDGAR, SANDRA KLEIN, JAMES L. LITTLE, MICHAEL G. RAMSEY, KAREN M. RUBLE, VINCENT J. WACHER, MICHAEL F. WEMPE; NORMA L. BUCHANAN, CHARLES M. BUCHANAN; MAREN ROMAN, SHUPING DONG, ANJALI HIRANI, YONG WOO LEE; MICHAEL C. SHELTON, JESSICA D. POSEY-DOWTY, LARRY LINGERFELT, SHANE K. KIRK, SANDRA KLEIN, KEVIN J. EDGAR; T. LIEBERT, J. WOTSCHADLO, M. GERICKE, S. KOHLER, P. LAUDELEY, T. HEINZE; TAE-JOON PARK, SARAVANABABU MURUGESAN, ROBERT J. LINHARDT; JACOB D. GOODRICH, WILLIAM T. WINTER; THOMAS HEINZE, STEPHANIE HORNIG; MARGARETHA SODERQVIST LINDBLAD, OLOF DAHLMAN, JOHN SJOBERG, ANN-CHRISTINE ALBERTSSON; HIROSHI KAMITAKAHARA, FUMIAKI NAKATSUBO, DIETER KLEMM; KEVIN J. EDGAR; TETSUO KONDO, MASANORI YAMAMOTO, WAKAKO KASAI, MITSUHIRO MORITA; JOSEPH J. BOZELL, NATHAN TICE, NIBEDITA SANYAL, SUNKYU PARK, THOMAS ELDER; WILLIAM T. WINTER, DEANN BARNHART; INDEXES; AUTHOR INDEX; SUBJECT INDEX