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Biobased Polyols for Industrial Polymers

Biobased Polyols for Industrial Polymers
Author: Deny Kyriacos
Publisher: John Wiley & Sons
Total Pages: 368
Release: 2020-03-17
Genre: Technology & Engineering
ISBN: 1119620163

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The replacement of polyols synthesized from petrochemical by polyols originating from natural products, notably from vegetable oils and animal fats, has been the subject of research projects for a number of decades. Very recently, however, the polymers industry has intensified its efforts to include the “green products”, such as biobased polyols, in applications already available in the market. Examples of such applications include polyurethane foams, elastomers and epoxides. This book describes the extraction of the natural constituents of several fruits and plants as well as their chemical conversion to polyols. In addition to the chemistry involved in the process, particular emphasis is attributed to their applications.


Bio-based Polyols and Polyurethanes

Bio-based Polyols and Polyurethanes
Author: Yebo Li
Publisher: Springer
Total Pages: 86
Release: 2015-08-07
Genre: Technology & Engineering
ISBN: 3319215396

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This brief outlines the most recent advances in the production of polyols and polyurethanes from renewable resources, mainly vegetable oils, lignocellulosic biomass, starch, and protein. The typical processes for the production of polyols from each of the above mentioned feedstocks are introduced and the properties of the resultant polyols and polyurethanes are also discussed.


Engineering of Biobased Industrial Products from Renewable (agricultural) Resources

Engineering of Biobased Industrial Products from Renewable (agricultural) Resources
Author: Sayli Devdas Bote
Publisher:
Total Pages: 197
Release: 2019
Genre: Electronic dissertations
ISBN: 9781392544600

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Replacing petro/fossil carbon by biobased renewable carbon derived from agricultural feedstocks offers the value proposition of (1) reduced carbon footprint, (2) supporting rural agrarian economy and improved food security, and (3) creation of "wealth" in the rural agriculture through manufacturing value-added industrial products. Our work reports on the synthesis of novel, scalable, and economically viable biobased polyols derived from soybean. Polyols find commercial use in the manufacture of polyurethane (PU) products, particularly flexible and rigid PU foams. Drop-in replacements of the currently used polyols with biobased polyols suffer from inferior performance properties with increasing biobased polyol content, high production cost, and incompatibility with petroleum-based polyols. The thesis also reports on the synthesis of novel polyols from meso-lactide and the production of value-added products therefrom. Meso-lactide is a co-product in the manufacture of polylactide (PLA). Polylactide (PLA) is the world's foremost completely biobased and fully compostable polymer with a production capacity of 140 kt/year by NatureWorks in Blair, NE and a 75 kt/year by Total Corbion PLA in Rayong, Thailand.The first section focuses on facile reaction chemistries to produce biobased polyols from a protein-carbohydrate residue derived from soybean meal or soymeal. The components of the soymeal were characterized to optimize processing options. The soymeal component was converted to polyols using transamidation chemistry, followed by a ring-opening reaction with carbonates. The process is cost effective with zero waste generated during the synthesis.In the second section, new biobased building blocks were synthesized from meso-lactide by reacting it with primary amines and alcohols. The ring-opening reaction of meso-lactide with an amino-alcohol produced diols containing amide and ester linkages in the backbone. These new biobased building blocks can be used to manufacture biobased polyesters and polyurethanes. Reacting meso-lactide with long-chain alcohols produces a diol containing ester and ether linkages with lower viscosity and hydroxyl value. This diol was further reacted with biobased dimer acid using polycondensation chemistry. A series of polyester-ether polyols with low viscosity and hydroxyl value (40-90 mg of KOH/g) were obtained which are suitable for applications in flexible PUF and coatings. The renewable carbon content of these polyols was 50-70% which can be increased to 100%.The third section focuses on evaluating the performance properties of PUF synthesized from biobased polyols. The biobased rigid PUF containing 20-50% of soymeal and lactide polyols were characterized for application as insulation materials in building and construction. The flexible PUF containing 10-50% of biobased polyol content were evaluated for automotive applications such as engine cover, car seat, and headrest.In the last section, reactive extrusion processing of lactide-dimer acid polyols with PLA was studied. The reactive blending of polyols with PLA increased the crystallinity of PLA by ~60-75% and decreased the glass transition temperature by ~18 °C. The elongation at break increased to 120%, and the impact strength was increased by 300%. The melt crystallization kinetics showed a reduction in the total crystallization time with increasing polyol content in PLA.To conclude the entire work, a series of cost-effective, scalable, diverse applications-oriented, and most importantly biobased, polyols were synthesized using inexpensive bioresources that have a potential for commercialization.


Biodegradable and Biobased Polymers for Environmental and Biomedical Applications

Biodegradable and Biobased Polymers for Environmental and Biomedical Applications
Author: Susheel Kalia
Publisher: John Wiley & Sons
Total Pages: 523
Release: 2016-02-10
Genre: Technology & Engineering
ISBN: 1119117348

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This volume incorporates 13 contributions from renowned experts from the relevant research fields that are related biodegradable and biobased polymers and their environmental and biomedical applications. Specifically, the book highlights: Developments in polyhydroxyalkanoates applications in agriculture, biodegradable packaging material and biomedical field like drug delivery systems, implants, tissue engineering and scaffolds The synthesis and elaboration of cellulose microfibrils from sisal fibres for high performance engineering applications in various sectors such as the automotive and aerospace industries, or for building and construction The different classes and chemical modifications of tannins Electro-activity and applications of Jatropha latex and seed The synthesis, properties and applications of poly(lactic acid) The synthesis, processing and properties of poly(butylene succinate), its copolymers, composites and nanocomposites The different routes for preparation polymers from vegetable oil and the effects of reinforcement and nano-reinforcement on the physical properties of such biobased polymers The different types of modified drug delivery systems together with the concept of the drug delivery matrix for controlled release of drugs and for antitumor drugs The use of nanocellulose as sustainable adsorbents for the removal of water pollutants mainly heavy metal ions, organic molecules, dyes, oil and CO2 The main extraction techniques, structure, properties and different chemical modifications of lignins Proteins and nucleic acids based biopolymers The role of tamarind seed polysaccharide-based multiple-unit systems in sustained drug release


Industrial Applications of Biopolymers and their Environmental Impact

Industrial Applications of Biopolymers and their Environmental Impact
Author: Abdullah Al Mamun
Publisher: CRC Press
Total Pages: 306
Release: 2020-11-23
Genre: Science
ISBN: 1498769667

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Biopolymers represent a carbon emission solution: they are green and eco-friendly with a variety of uses in biomedical engineering, the automotive industry, the packaging and paper industries, and for the development of new building materials. This book describes the various raw materials of biopolymers and their chemical and physical properties, the polymerization process, and the chemical structure and properties of biopolymers. Furthermore, this book identifies the drawbacks of biopolymers and how to overcome them through modification methods to enhance the compatibility, flexibility, physicochemical properties, thermal stability, impact response, and rigidity.


Synthetic Biodegradable and Biobased Polymers

Synthetic Biodegradable and Biobased Polymers
Author: Andreas Künkel
Publisher: Springer Nature
Total Pages: 403
Release: 2023-12-28
Genre: Science
ISBN: 3031458621

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This volume presents the recent developments in synthetic biodegradable and biobased polymers. The syntheses of many polymer types such as polyesters and polyamides, and also their processing technologies are discussed herein, and new aspects from fundamental and from industrial research are covered. This combination of both perspectives within this volume will be of interest for many research scientists from academia and industry and also for lectures and teachers. Chapters ''BioPBSTM (Polybutylene succinate)'' and ''Polymer biodegradability 2.0: A holistic view on polymer biodegradation in natural and engineered environments'' are available open access under a Creative Commons Attribution 4.0 International License via link.springer.com. For further details see license information in the chapter.


Biodegradable polymers for industrial applications

Biodegradable polymers for industrial applications
Author: Ray Smith
Publisher: CRC Press
Total Pages: 556
Release: 2005-05-17
Genre: Technology & Engineering
ISBN: 9780849334665

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The vast majority of plastic products are made from petroleum-based synthetic polymers that do not degrade in a landfill or in a compost-like environment. Therefore, the disposal of these products poses a serious environmental problem. An environmentally-conscious alternative is to design/synthesize polymers that are biodegradable. Biodegradable polymers for industrial applications introduces the subject in part one by outlining the classification and development of biodegradable polymers with individual chapters on polyhydroxyalkanoates, polyesteramides and thermoplastic starch biodegradable polymers and others. The second part explores the materials available for the production of biodegradable polymers. Polymers derived from sugars, natural fibres, renewable forest resources, poly(lactic acid) and protein-nanoparticle composites will be looked at in detail in this section. Part three looks at the properties and mechanisms of degradation, prefacing the subject with a chapter on current standards. The final part explores opportunities for industrial applications, with chapters on packing, agriculture and biodegradable polycaprolactone foams in supercritical carbon dioxide. Biodegradable polymers for industrial applications explores the fundamental concepts concerning the development of biodegradable polymers, degradable polymers from sustainable sources, degradation and properties and industrial applications. It is an authoritative book that will be invaluable for academics, researchers and policy makers in the industry.


Reactive and Functional Polymers Volume One

Reactive and Functional Polymers Volume One
Author: Tomy J. Gutiérrez
Publisher: Springer Nature
Total Pages: 434
Release: 2020-08-25
Genre: Technology & Engineering
ISBN: 3030434036

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Reactive and functional polymers are manufactured with the aim of improving the performance of unmodified polymers or providing functionality for different applications. These polymers are created mainly through chemical reactions, but there are other important modifications that can be carried out by physical alterations in order to obtain reactive and functional polymers. This volume presents a comprehensive analysis of these reactive and functional polymers. Reactive and Functional Polymers Volume One provides the principles and foundations for the design, development, manufacture and processing of reactive and functional polymers based primarily on biopolymers, polyesters and polyurenthanes. The text provides an in-depth review of updated sources on reactive resins and silicones. In this book, world-renowned researchers have participated, including Dr. Runcang Sun (Associate editor for the journal ‘Carbohydrate Polymers’). With its comprehensive scope and up-to-date coverage of issues and trends in Reactive and Functional Polymers, this is an outstanding book for students, professors, researchers and industrialists working in the field of polymers and plastic materials.


Polyurethane Chemistry

Polyurethane Chemistry
Author: Ram K. Gupta
Publisher:
Total Pages:
Release: 2021
Genre: Polyurethanes
ISBN: 9780841298408

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"This book is about Polyurethane Chemistry: Renewable Polyols and Isocyanates"--