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Christian Stevens Bio-Based Plastics. Materials and Applications


The field of bio-based plastics has developed significantly in the last 10 years and there is increasing pressure on industries to shift existing materials production from petrochemicals to renewables. Bio-based Plastics presents an up-to-date overview of the basic and applied aspects of bioplastics, focusing primarily on thermoplastic polymers for material use. Emphasizing materials currently in use or with significant potential for future applications, this book looks at the most important biopolymer classes such as polysaccharides, lignin, proteins and polyhydroxyalkanoates as raw materials for bio-based plastics, as well as materials derived from bio-based monomers like lipids, poly(lactic acid), polyesters, polyamides and polyolefines. Detailed consideration is also given to the market and availability of renewable raw materials, the importance of bio-based content and the aspect of biodegradability. Topics covered include: Starch Cellulose and cellulose acetate Materials based on chitin and chitosan Lignin matrix composites from natural resources Polyhydroxyalkanoates Poly(lactic acid) Polyesters, Polyamides and Polyolefins from biomass derived monomers Protein-based plastics Bio-based Plastics is a valuable resource for academic and industrial researchers who are interested in new materials, renewable resources, sustainability and polymerization technology. It will also prove useful for advanced students interested in the development of bio-based products and materials, green and sustainable chemistry, polymer chemistry and materials science. For more information on the Wiley Series in Renewable Resources, visit www.wiley.com/go/rrs

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Michael Tolinski Plastics and Sustainability. Towards a Peaceful Coexistence between Bio-based Fossil Fuel-based


Clearly lays out the issues related to plastics effects on the environment, while also serving as a practical, non-academic guide for making sustainability decisions about plastics recycling and the newest bio-based plastics Company managers, product developers, policy makers, environmental researchers, and plastics industry engineers are under increasing pressure to find ways of minimizing the environmental footprint of plastic products. This accessible book is designed to help readers understand the life-cycle impacts of various plastics, clarifying the technical research and practical arguments to show when bio-based and recycled plastics might be useful options for reducing the overall energy consumption, greenhouse gas emissions, and waste associated with traditional plastics. Plastics and Sustainability compares traditional fossil fuel-based plastics with bio-based plastics in terms of properties, environmental impacts, and costs – indicating what the most effective approaches could be for using recycled, biodegradable, or various bio-based materials. The book makes objective comparisons between bioplastics and all commonly used plastics, focusing on how they affect production economics, product requirements, and retailer and consumer needs. It incorporates research concerning life-cycle assessment, production techniques, and commercial applications, and presents «green» guidelines about product design, recycling, processing efficiency, and material selection. The book also reports on recent industry developments and commercial trends in an effort to synthesize conclusions that are necessary for finding the right balance between bio-based and fossil-fuel based plastic products. Check out the authors blog at http://www.plastech.biz/blog.

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Aurélie Valognes Przegwizdane

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Alessandro Gandini Chemicals and Fuels from Bio-Based Building Blocks


An up-to-date and two volume overview of recent developments in the field of chemocatalytic and enzymatic processes for the transformation of renewable material into essential chemicals and fuels. Experts from both academia and industry discuss catalytic processes currently under development as well as those already in commercial use for the production of bio-fuels and bio-based commodity chemicals. As such, they cover drop-in commodity chemicals and fuels, as well as bio-based monomers and polymers, such as acrylic acid, glycols, polyesters and polyolefins. In addition, they also describe reactions applied to waste and biomass valorization and integrated biorefining strategies. With its comprehensive coverage of the topic, this is an indispensable reference for chemists working in the field of catalysis, industrial chemistry, sustainable chemistry, and polymer synthesis.

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Vijay Thakur Kumar Handbook of Composites from Renewable Materials, Structure and Chemistry


The Handbook of Composites From Renewable Materials comprises a set of 8 individual volumes that brings an interdisciplinary perspective to accomplish a more detailed understanding of the interplay between the synthesis, structure, characterization, processing, applications and performance of these advanced materials. The handbook covers a multitude of natural polymers/ reinforcement/ fillers and biodegradable materials. Together, the 8 volumes total at least 5000 pages and offers a unique publication. Volume 1 is solely focused on the Structure and Chemistry of renewable materials. Some of the important topics include but not limited to: carbon fibers from sustainable resources; polylactic acid composites and composite foams based on natural fibres; composites materials from other than cellulosic resources; microcrystalline cellulose and related polymer composites; tannin-based foam; renewable feedstock vanillin derived polymer and composites; silk biocomposites; bio-derived adhesives and matrix polymers; biomass based formaldehyde-free bio-resin ; isolation and characterization of water soluble polysaccharide; bio-based fillers; keratin based materials in biotechnology; structure of proteins adsorbed onto bioactive glasses for sustainable composite; effect of filler properties on the antioxidant response of starch composites; composite of chitosan and its derivate; magnetic biochar from discarded agricultural biomass; biodegradable polymers for protein and peptide conjugation; polyurethanes and polyurethane composites from bio-based / recycled components.

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Matheus Poletto Polypropylene-Based Biocomposites and Bionanocomposites


This book discusses new developments in an up-to-date, coherent and objective set of chapters by eminent researchers in the area of polypropylene-based biocomposites and bionanocomposites. It covers, biomaterials such as cellulose, chitin, starch, soy protein, hemicelluloses, polylactic acid and polyhydroxyalkanoates. Other important topics such as hybrid biocomposites and bionanocomposites of polypropylene, biodegradation study of polypropylene-based biocomposites and bionanocomposites, polypropylene-based bionanocomposites for packaging applications, polypropylene-based carbon nanomaterials reinforced nanocomposites, degradation and flame retardency of polypropylene-based composites and nanocomposites, are covered as well.

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RODOLPHE MENUDIER Туфли


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DNA Coatings from Byproducts: A Panacea for the Flame ...

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Rodolphe Sonnier Born in France in 1979, he obtained a Master degree (engineer) from ENSAIT (first school of textile engineer in France) and a PhD in material chemistry from Montpellier University in 2006 (supervisors: J-M. Lopez-Cuesta and A. Bergeret at the Ecole des Mines d’Alès).

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by Rodolphe Sonnier Author · Aurélie Taguet Author. ebook. Sign up to save your library. With an OverDrive account, you can save your favorite libraries for at-a-glance information about availability. Find out more about OverDrive accounts. Save Not today. Subjects. Technology Engineering Nonfiction. Sustainable development has become a great concern in modern society. The authors of this ...

Towards Bio-based Flame Retardant Polymers by Rodolphe ...

Laurent FERRY Born in France 1967, he obtained a Master degree (engineer) in Materials Science from INSA Lyon in 1990 and a PhD in Materials Science from INSA Lyon in 1996. In 1998, he got a permanent position at Ecole des Mines d’Alès in the Materials Center. He became full professor in 2013. Since 2009 he is leader of the group working on flame retardancy of polymers.

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A great part of commercially available flame retardants are oil-derived organic compounds (e.g. organo-halogenated, organo-phosphorous, organo-nitrogen compounds). As part of oil-based products, they face the same issues: growing scarcity of petroleum, geopolitical problems, impact on global warning

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Rodolphe Sonnier | PhD | IMT Mines Alès, Alès | EMA ...

Rodolphe Sonnier J.-J. Flat The fireproofing study of polyamide 11 (PA11), a bio-based polyamide synthesized from castor oil and marketed under the trade name Rilsan® is presented.

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Towards Bio-based Flame Retardant Polymers - Ebook written by Rodolphe Sonnier, Aurélie Taguet, Laurent Ferry, José-Marie Lopez-Cuesta. Read this book using Google Play Books app on your PC, android, iOS devices. Download for offline reading, highlight, bookmark or take notes while you read Towards Bio-based Flame Retardant Polymers.

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Synthesis and Copolymerization of Fully Biobased ...

A solventless method was adopted to synthesize two benzoxazine monomers from naturally occurring sources, i.e., eugenol (an extraction from clove), furfurylamine, stearylamine, and paraformaldehyde. The structure of the extracted eugenol and synthesized monomers were supported by FT-IR, 1H NMR, 13C NMR, and mass spectral analysis. The monomers ...

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Rodolphe Sonnier, Aurélie Taguet, Laurent Ferry and José-Marie Lopez-Cuesta, Biobased Flame Retardants, Towards Bio-based Flame Retardant Polymers, 10.1007/978-3-319-67083-6_2, (33-72), (2017).

Authors - researchgate.net

Laurent Ferry José-Marie Lopez-Cuesta Rodolphe Sonnier Aurélie Taguet . 2 José-Marie Lopez Cuesta received his engineer diploma and PhD degree from Institut National Polytechnique de Grenoble ...

Thermal degradation of polyesters filled with magnesium ...

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José-Marie Lopez-Cuesta (Auteur), Aurélie Taguet (Auteur), Laurent Ferry (Auteur), Rodolphe Sonnier (Auteur) Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based materials.

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Rodolphe Sonnier, Aurélie Taguet, Laurent Ferry, José-Marie Lopez-Cuesta. Abstract: They emphasize the great efforts that have been made to synthesize new bio-based polymers or additives or to replace glass fibers by natural fibers in composites.

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Towards Bio-based Flame Retardant Polymers | SpringerLink

Rodolphe Sonnier, Aurélie Taguet, Laurent Ferry, José-Marie Lopez-Cuesta. Pages 33-72. Flame Retardancy of Natural Fibers Reinforced Composites. Rodolphe Sonnier, Aurélie Taguet, Laurent Ferry, José-Marie Lopez-Cuesta. Pages 73-98. Back Matter. Pages 99-100. PDF. About this book. Introduction. Sustainable development has become a great concern in modern society. The authors of this brief ...

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Aurélie TAGUET Born in France in 1978, she obtained a Master degree (engineer) in Material Science (Phelma, INP Grenoble) in 2002 and a PhD in material chemistry – IAM, Gerhardt Institut, ENSCMontpellier ( PhD supervisor: B. Ameduri) in 2005.

Biobased Flame Retardants | SpringerLink

A great part of commercially available flame retardants are oil-derived organic compounds (e.g. organo-halogenated, organo-phosphorous, organo-nitrogen compounds). As part of oil-based products, they...

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Rodolphe Sonnier & Aurélie Taguet: Towards Bio-based Flame Retardant Polymers (PDF) Rodolphe Sonnier & Aurélie Taguet Towards Bio-based Flame Retardant Polymers. PDF-ebook in english (with Adobe DRM) Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based ...

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Towards Bio-based Flame Retardant Polymers : Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based materials. They emphasize the great efforts that have been made to synthesize new bio-based polymers or ...

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C.V. : Aurélie Taguet Page 3 | [email protected] by phosphorus molecules to improve the fire behavior of polybutylene succinate, Polymer Degradation & Stability, 2015, 113, 135-143. DOI: 10.1016/j.polymdegradstab.2014.12.015 19/ Mélissa Poncet-Malige, Stéphane Corn*, Aurélie Taguet, José-Marie Lopez-Cuesta, A quantitative

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Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based materials. They emphasize the great efforts that have been made to synthesize new bio-based polymers or

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Staff View: Towards bio-based flame retardant polymers

Towards bio-based flame retardant polymers / Sustainable development has become a great concern in modern society. The authors of this brief describe how one strategy to reach this objective is to replace oil-based materials with bio-based materials.

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Dates et lieu - GFP

- Laurent FERRY, Ecole des Mines d'Alès - Anne BERGERET, Ecole des Mines d'Alès - José-Marie LOPEZ-CUESTA, Ecole des Mines d'Alès - Nicolas LE MOIGNE, Ecole des Mines d'Alès - Aurélie TAGUET, Ecole des Mines d'Alès - Rodolphe SONNIER, Ecole des Mines d'Alès - Claire LONGUET, Ecole des Mines d'Alès

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Johannes Fink Karl The Chemistry of Bio-based Polymers


An exhaustive and timely overview of renewable polymers from a respected chemist and successful author The recent explosion of interdisciplinary research has fragmented the knowledge base surrounding renewable polymers. The Chemistry of Bio-based Polymers brings together, in one volume, the research and work of Professor Johannes Fink, focusing on biopolymers that can be synthesized from renewable polymers. After introducing general aspects of the field, the book’s subsequent chapters examine the chemistry of biodegradable polymeric types sorted by their chemical compounds, including the synthesis of low molecular compounds. Various categories of biopolymers are detailed including vinyl-based polymers, acid and lactone polymers, ester and amide polymers, carbohydrate-related polymers and others. Procedures for the preparation of biopolymers and biodegradable nanocomposites are arranged by chemical methods and in vitro biological methods, with discussion of the issue of “plastics from bacteria.” The factors influencing the degradation and biodegradation of polymers used in food packaging, exposed to various environments, are detailed at length. The book covers the medical applications of bio-based polymers, concentrating on controlled drug delivery, temporary prostheses, and scaffolds for tissue engineering. Professor Fink also addresses renewable resources for fabricating biofuels and argues for localized biorefineries, as biomass feedstocks are more efficiently handled locally. Audience The Chemistry of Bio-based Polymers will be read by chemists, polymer and materials scientists, chemical, bio-based, and biomedical engineers, agricultural and environmental faculty and all those who work in the bioeconomy area. This book will be critical for engineers in a number of industries including food packaging, medical devices, personal care, fuels, auto, and construction.

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A multidisciplinary overview of bio-derived solvent applications, life cycle analysis, and strategies required for industrial commercialization This book provides the first and only comprehensive review of the state-of-the-science in bio-derived solvents. Drawing on their own pioneering work in the field, as well as an exhaustive survey of the world literature on the subject, the authors cover all the bases—from bio-derived solvent applications to life cycle analysis to strategies for industrial commercialization—for researchers and professional chemists working across a range of industries. In the increasingly critical area of sustainable chemistry, the search for new and better green solvents has become a top priority. Thanks to their renewability, biodegradability and low toxicity, as well as their potential to promote advantageous organic reactions, green solvents offer the promise of significantly reducing the pernicious effects of chemical processes on human health and the environment. Following an overview of the current solvents markets and the challenges and opportunities presented by bio-derived solvents, a series of dedicated chapters cover all significant classes of solvent arranged by origin and/or chemical structure. Throughout, real-world examples are used to help demonstrate the various advantages, drawbacks, and limitations of each class of solvent. Topics covered include: The commercial potential of various renewably sourced solvents, such as glycerol The various advantages and disadvantages of bio-derived versus petroleum-based solvents Renewably-sourced and waste-derived solvents in the design of eco-efficient processes Life cycle assessment and predictive methods for bio-based solvents Industrial and commercial viability of bio-based solvents now and in the years ahead Potential and limitations of methodologies involving bio-derived solvents New developments and emerging trends in the field and the shape of things to come Considering the vast potential for new and better products suggested by recent developments in this exciting field, Bio-Based Solvents will be a welcome resource among students and researchers in catalysis, organic synthesis, electrochemistry, and pharmaceuticals, as well as industrial chemists involved in manufacturing processes and formulation, and policy makers.

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Sets the stage for large-scale production of biofuels and bio-based chemicals In response to diminishing supplies as well as the environmental hazards posed by fossil fuels and petrochemicals, interest and demand for green, sustainable biofuels and bio-based chemicals are soaring. Biomass may be the solution. It is an abundant carbon-neutral renewable feedstock that can be used for the production of fuels and chemicals. Currently, biorefineries use corn, soybeans, and sugarcane for bioethanol and biodiesel production; however, there are many challenges facing biorefineries, preventing biomass from reaching its full potential. This book provides a comprehensive review of bioprocessing technologies that use lignocellulosic biomass for the production of biofuels, biochemicals, and biopolymers. It begins with an overview of integrated biorefineries. Next, it covers: Biomass feedstocks, including sugar, starch, oil, and energy crops as well as microalgae Pretreatment technologies for lignocellulosic biomass Hydrolytic enzymes used in biorefineries for the hydrolysis of starch and lignocelluloses Bioconversion technologies for current and future biofuels such as ethanol, biodiesel, butanol, hydrogen, and biogas Specialty chemicals, building block chemicals, and biopolymers produced via fermentation Phytochemicals and functional food ingredients extracted from plant materials All the chapters have been written and edited by leading experts in bioprocessing and biorefining technologies. Contributions are based on a thorough review of the literature as well as the authors firsthand experience developing and working with bioprocessing technologies. By setting forth the current state of the technology and pointing to promising new directions in research, Bioprocessing Technologies in Biorefinery for Sustainable Production of Fuels, Chemicals, and Polymers will enable readers to move towards large-scale, sustainable, and economical production of biofuels and bio-based chemicals.

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