Renewable Raw Materials

Renewable Raw Materials
Author: Roland Ulber,Dieter Sell,Thomas Hirth
Publsiher: John Wiley & Sons
Total Pages: 325
Release: 2011-04-27
Genre: Science
ISBN: 9783527634200

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One of the main challenges facing the chemical industry is the transition to sustainable operations. Industries are taking initiatives to reduce resource intensities or footprints, and by adopting safer materials and processes. Such efforts need to be supported by techniques that can quantify the broad economic and environmental implications of industrial operations, retrofi t options and provide new design alternatives. This contemporary overview focuses on cradle-to-grave life cycle assessments of existing or conceptual processes for producing valueadded fuels, chemicals, and/or materials from renewable agricultural residues, plant-derived starches and oils, lignocellulosic biomass, and plant-based industrial processing wastes. It presents the key concepts, systems, and technologies, with an emphasis on new feedstocks for the chemical industry. Each chapter uses common themes of specifi c raw materials, thus forming a natural progression throughout the book. The result is coverage from a wide range of perspectives, emphasizing not only the technical issues but also considering the market place and socio-economic aspects.

Chemicals and Materials from Renewable Resources

Chemicals and Materials from Renewable Resources
Author: Joseph J. Bozell
Publsiher: Unknown
Total Pages: 248
Release: 2001
Genre: Medical
ISBN: UOM:39015049987137

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The possibilities surrounding the use of renewable resources for chemical feedstock is well known. What appears to stand between the concept and realization of using renewable resources is technology development. This book examines the roadblocks facing development of renewables, discusses new building blocks and their properties, mechanisms of transformations of biomass polymers into single products, and new methodologies that promise to improve the utility of renewables. The volume also describes new research that addresses the shortcomings renewables currently face.

Biopolymers from Renewable Resources

Biopolymers from Renewable Resources
Author: David Kaplan
Publsiher: Springer Science & Business Media
Total Pages: 444
Release: 1998-07-07
Genre: Science
ISBN: 354063567X

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The beneficial aspects of utilizing polymers from renewable resources, when considering synthesis, processing, disposal, and overall material lifecycle issues, suggests that this will continue to be an important and growing area of interest. The focus on greener chemistries in industry can be in part satisfied by exploring the range of polymers available from Nature. The information for each type of polymer includes aspects of synthesis, processing and properties. The wide range of polymers and their properties, including polyamides, polysaccharides, polyesters and polyphenols, among others, illustrates this diversity of materials. The reader will have a single volume which provides a resource from which to gain initial insights into this diverse field and from which key references and contacts can be drawn.

Introduction to Chemicals from Biomass

Introduction to Chemicals from Biomass
Author: James H. Clark,Fabien Deswarte
Publsiher: John Wiley & Sons
Total Pages: 340
Release: 2015-03-16
Genre: Science
ISBN: 9781118714485

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Introduction to Chemicals from Biomass, Second Edition presents an overview of the use of biorenewable resources in the 21st century for the manufacture of chemical products, materials and energy. The book demonstrates that biomass is essentially a rich mixture of chemicals and materials and, as such, has a tremendous potential as feedstock for making a wide range of chemicals and materials with applications in industries from pharmaceuticals to furniture. Completely revised and updated to reflect recent developments, this new edition begins with an introduction to the biorefinery concept, followed by chapters addressing the various types of available biomass feedstocks, including waste, and the different pre-treatment and processing technologies being developed to turn these feedstocks into platform chemicals, polymers, materials and energy. The book concludes with a discussion on the policies and strategies being put in place for delivering the so-called Bioeconomy. Introduction to Chemicals from Biomass is a valuable resource for academics, industrial scientists and policy-makers working in the areas of industrial biotechnology, biorenewables, chemical engineering, fine and bulk chemical production, agriculture technologies, plant science, and energy and power generation. We need to reduce our dependence on fossil resources and increasingly derive all the chemicals we take for granted and use in our daily life from biomass – and we must make sure that we do this using green chemistry and sustainable technologies! For more information on the Wiley Series in Renewable Resources, visit www.wiley.com/go/rrs Topics covered include: • The biorefinery concept • Biomass feedstocks • Pre-treatment technologies • Platform molecules from renewable resources • Polymers from bio-based monomers • Biomaterials • Bio-based energy production Praise for the 1st edition: “Drawing on the expertise of the authors the book involves a degree of plant biology and chemical engineering, which illustrates the multidisciplinary nature of the topic beautifully” - Chemistry World

Ullmann s Renewable Resources

Ullmann s Renewable Resources
Author: Wiley-VCH
Publsiher: John Wiley & Sons
Total Pages: 0
Release: 2013-05-06
Genre: Science
ISBN: 352733369X

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A carefully selected compilation of the most relevant articles from the online edition of "ULLMANN's Encyclopedia of Industrial Chemistry", this handbook contains a wealth of information on biological raw materials for use in the chemical industry, with information on availability, processes and products. The result is an up-to-date survey of industrial uses for various bio-based bulk chemicals, including fats and oils, sugars, wood products, chitin and gelatin.

Handbook of Green Chemistry and Technology

Handbook of Green Chemistry and Technology
Author: James H. Clark,Duncan J. Macquarrie
Publsiher: John Wiley & Sons
Total Pages: 562
Release: 2008-04-15
Genre: Science
ISBN: 9781405172486

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Sustainable development is now accepted as a necessary goal for achieving societal, economic and environmental objectives. Within this chemistry has a vital role to play. The chemical industry is successful but traditionally success has come at a heavy cost to the environment. The challenge for chemists and others is to develop new products, processes and services that achieve societal, economic and environmental benefits. This requires an approach that reduces the materials and energy intensity of chemical processes and products; minimises the dispersion of harmful chemicals in the environment; maximises the use of renewable resources and extends the durability and recyclability of products in a way that increases industrial competitiveness as well as improve its tarnished image.

Renewable Bioresources

Renewable Bioresources
Author: Christian Stevens,Roland Verhé
Publsiher: John Wiley & Sons
Total Pages: 328
Release: 2004-11-19
Genre: Science
ISBN: 9780470021040

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Renewable Bioresources: scope and modification for non-food applications is the first text to consider the broad concept of renewable materials from the socio-economic aspects through to the chemical production and technical aspects of treating different raw products. The text sets the context of the renewables debate with key opening chapters on green chemistry, and the current situation of US and EU policy regarding sustainability and industrial waste. The quantitative and technical scope and production of renewable resources is then discussed with material looking at integral valorisation, the primary production of raw materials, downstream processing, and the identification of renewable crop materials. The latter part of the book concludes with a discussion on the uses for renewable materials such as carbohydrates, woods, fibres, biopolymers, lipids and proteins in different industrial applications, including a key chapter on the high value-added industries. Covers the broad concept of renewable resources from different points of view. Takes readers through the identification, production, processing and end-applications for renewable raw materials. Considers and compares EU and US renewable resources and sustainability objectives. Devotes one chapter to green chemistry and sustainability, focussing on the green industrial processes. This is an essential book for upper level undergraduates and Masters students taking modules on Renewable Resources, Green Chemistry, Sustainable Development, Environmental Science, Agricultural Science and Environmental Technology. It will also benefit industry professionals and product developers who are looking at improved economic and environmental means of utilising renewable materials.

Future Sources of Organic Raw Materials CHEMRAWN I

Future Sources of Organic Raw Materials  CHEMRAWN I
Author: L.E. St-Pierre,G. R. Brown
Publsiher: Elsevier
Total Pages: 660
Release: 2013-10-22
Genre: Science
ISBN: 9781483159621

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Future Sources of Organic Raw Materials: CHEMRAWN I is a collection of lectures presented at the World Conference on Future Sources of Organic Raw Materials, held in Toronto, Canada, on July 10-13, 1978. The conference focused on potential future sources of organic raw materials such as non-conventional fossil hydrocarbons, coal, industrial and agricultural wastes, and renewable resources like wood and other plant materials. This book is comprised of 52 chapters and opens with an assessment of the likely future availability of conventional oil and gas as they relate to possible demands for petrochemical feedstocks, paying particular attention to the availability and demand patterns for fossil hydrocarbons. The following chapters discuss the reserves and worldwide distribution of oil shale and tar sands; climate and its impact on renewable resources; research and management of natural resources; and production of chemicals directly from synthesis gas. Pyrolysis of solid carbonaceous materials is also considered, along with natural rubber production and biomass for non-food use. This monograph will be a useful resource for organic chemists and energy policymakers.