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Plastics Design Library: Recycling of Polyurethane Foams by Ajay Vasudeo Rane (2018, Hardcover)

Plastics Design Library: Recycling of Polyurethane Foams by Ajay Vasudeo Rane (2018, Hardcover)

$ 126.9

Recycling of Polyurethane Foams, Hardcover by Thomas, Sabu; Rane, Ajay Vasudeo; Kanny, Krishnan; Abitha, V. K.; Thomas, Martin George, ISBN 0323511333, ISBN-13 9780323511339, Like New Used, Free shipp...

Description

Recycling of Polyurethane Foams, Hardcover by Thomas, Sabu; Rane, Ajay Vasudeo; Kanny, Krishnan; Abitha, V. K.; Thomas, Martin George, ISBN 0323511333, ISBN-13 9780323511339, Like New Used, Free shipping in the US <p><i>Recycling of Polyurethane Foams</i> introduces the main degradation/depolymerization processes and pathways of polyurethane foam materials, focusing on industrial case studies and academic reviews from recent research and development projects. Th can aid practitioners in understanding the basis of polymer degradation and its relationship with industrial processes, which can be of substantial value to industrial complexes the world over. The main pathways of polymer recycling via different routes and industrial schemes are detailed, covering all current techniques, including regrinding, rebinding, adhesive pressing and compression moulding of recovered PU materials that are then compared with depolymerization approaches. </p> <p>Th examines life cycle assessment and cost analysis associated with polyurethane foams waste management, showing the potential of various techniques. This book will help academics and researchers identify and improve on current depolymerization processes, and it will help industry sustainability professionals choose the appropriate approach for their own waste management systems, thus minimizing the costs and environmental impact of their PU-based end products.</p><ul> <li>Offers a comprehensive review of all polyurethane foam recycling processes, including both chemical and mechanical approaches </li> <li>Assesses the potential of each recycling process</li> <li>Helps industry-based practitioners decide which approach to take to minimize the cost and environmental impact of their end product </li> <li>Enables academics and researchers to identify and improve upon current processes of degradation and depolymerization</li></ul>

Specifics

Author

Ajay Vasudeo Rane

Dewey Decimal

668.4/192

Dewey Edition

23

Format

Hardcover

ISBN-10

0323511333

ISBN-13

9780323511339

Illustrated

Yes

Intended Audience

Scholarly & Professional

Item Length

10.9 in

Item Width

8.5 in

LC Classification Number

TP1183.F6

LCCN

2018-947072

Language

English

Number of Pages

300 Pages

Publication Name

Recycling of Polyurethane Foams

Publication Year

2018

Publisher

Elsevier Science & Technology Books

Reviews

"Overall, this book offers a collection of excellent contributions covering all aspects of the life cycle of PU foams, structured in a convincing way with numerous links between the chapters. The result is an essential manual which leads both the experienced reader and the newcomer through an exciting path, unveiling the science and technology of state of the art PU production and recycling processes, shedding new light on the limits of current approaches, advances in research and future opportunities for closing the material cycle." --Detritus

Series

Plastics Design Library

Subject

Materials Science / General, Textiles & Polymers, General, Chemistry / Inorganic

Subject Area

Technology & Engineering, Science

Synopsis

Recycling of Polyurethane Foams introduces the main degradation/depolymerization processes and pathways of polyurethane foam materials, focusing on industrial case studies and academic reviews from recent research and development projects. The book can aid practitioners in understanding the basis of polymer degradation and its relationship with industrial processes, which can be of substantial value to industrial complexes the world over. The main pathways of polymer recycling via different routes and industrial schemes are detailed, covering all current techniques, including regrinding, rebinding, adhesive pressing and compression moulding of recovered PU materials that are then compared with depolymerization approaches. The book examines life cycle assessment and cost analysis associated with polyurethane foams waste management, showing the potential of various techniques. This book will help academics and researchers identify and improve on current depolymerization processes, and it will help industry sustainability professionals choose the appropriate approach for their own waste management systems, thus minimizing the costs and environmental impact of their PU-based end products., Recycling of Polyurethane Foams introduces the main degradation/depolymerization processes and pathways of polyurethane foam materials, focusing on industrial case studies and academic reviews from recent research and development projects. The book can aid practitioners in understanding the basis of polymer degradation and its relationship with industrial processes, which can be of substantial value to industrial complexes the world over. The main pathways of polymer recycling via different routes and industrial schemes are detailed, covering all current techniques, including regrinding, rebinding, adhesive pressing and compression moulding of recovered PU materials that are then compared with depolymerization approaches. The book examines life cycle assessment and cost analysis associated with polyurethane foams waste management, showing the potential of various techniques. This book will help academics and researchers identify and improve on current depolymerization processes, and it will help industry sustainability professionals choose the appropriate approach for their own waste management systems, thus minimizing the costs and environmental impact of their PU-based end products. Offers a comprehensive review of all polyurethane foam recycling processes, including both chemical and mechanical approaches Assesses the potential of each recycling process Helps industry-based practitioners decide which approach to take to minimize the cost and environmental impact of their end product Enables academics and researchers to identify and improve upon current processes of degradation and depolymerization

Table Of Content

1. Introduction to polymers 2. Polyurethane foam chemistry 3. Recycling techniques 4. Economic and environmental impact of plastic wastes, management of plastic wastes, mechanical recycling, feedstock recycling, sorting and separation of mixed plastics, future trends in plastic waste management 5. Degradation vs. Decomposition 6. Introduction to chemical depolymerization 7. Chemical depolymerization of polyurethane foam via glycolysis 8. Chemical depolymerization of polyurethane foam via hydrolysis 9. Chemical depolymerization of polyurethane foam via ammonolysis and aminolysis 10. Chemical depolymerization of polyurethane foam via combined chemolysis methods 11. Life cycle analysis of polyurethane foam wastes 12. Applications of chemically depolymerized polyurethane foam 13. Applications of mechanically grounded polyurethane foam

Type

Textbook

brand

Elsevier Science & Technology Books

gtin13

9780323511339