Polymer Circularity in Sustainable Energy
- 1 Edición - 1 de septiembre de 2026
- Última edición
- Editores: Sabu Thomas, Bruno Ameduri, Jince Thomas, Martin George Thomas
- Idioma: Inglés
Polymer Circularity in Sustainable Energy offers a comprehensive overview of the recycling and reuse of polymers in specific energy technologies. The book discusses the fundam… Leer más
Descripción
Descripción
The book also discusses the integration of artificial intelligence in polymer recycling for energy solutions and presents case studies on polymer recycling projects in the energy sector. It further addresses the challenges and opportunities in scaling up polymer recycling infrastructure. It will serve as a valuable reference for researchers and scientists in polymer science and engineering, as well as industry professionals in renewable energy and waste management who are interested on optimizing the use of polymers while minimizing waste generation in the energy industry.
Puntos claves
Puntos claves
- Features several polymer recycling methods, such as mechanical recycling, chemical recycling, pyrolysis, gasification, and depolymerization
- Detailed discussions on the principles, advantages, limitations, and applications of each technique covered
- Discusses how new technologies like artificial intelligence, machine learning, mechanical milling, and robotics, can revolutionize recycling processes, enhance efficiency, and minimize environmental impacts
- Showcases diverse case studies illustrating successful polymer recycling projects in the energy sector
De interès para
De interès para
Índice
Índice
1. Fundamentals of Polymer Chemistry
2. Regulatory Frameworks and Policies for Polymer Recycling
3. Advancing Polymer Reuse: Mechanical and Chemical Recycling Methods
4. Control and Circulation of Halogens in the Plastic Resource Circulation
Section II: Polymer Degradation: Deterioration Characteristics and Dynamics
5. SURFACE CHEMISTRY OF POLYMER DEGRADATION
6. “Light Activation for Polymer Circularity”— chapter in “Polymer Circularity in Sustainable Energy”
7. Technological Advances in Polymer Sorting and Separation
8. Degradation, Recycling, and Post- Treatment of Perfluorosulfonic Acid Membranes for Fuel Cells
Section III: Primary Polymers in Circular Economy
9. Circular Management of Single-Use Polyolefins via Hydrocracking with Zeolite-Based Catalysts
10. Chemical recycling of poly(siloxane): is depolymerization to cyclic monomers the only way?
11. Recycled Polyurethanes: Applications in Renewable Energy Technologies
12. Polyvinylidene Fluoride: Recycling and Reuse in Piezo and Triboelectric Technologies
Section IV: Circular Polymer Strategies for Energy Systems
13. Recycling and Reuse of Polymers in Photovoltaic Technologies
14. Recycling and Reuse of Polymers in Fuel Cells
15. Recycling of Polymers in Space Energy Systems
16. Sustainable Soft Bioelectronic Sensors: from Biopolymers and Eutectic Solvents to Eutectogels
17. Polymer Binders in Battery Electrodes: Sustainable Recovery and Recycling Strategies
18. Valorization of lignocellulosic polymers into fermentable sugars for production of biofuels
Section V: Plastic Waste Transformation for Circular Economy
19. Upcycling of Polymer Waste into High-Value Energy Products
20. Strategies for Upcycling PFAS and Aromatic Plastic Waste into High-Performance Materials
21. Feedstock Recycling of Waste Plastics through Pyrolysis Technologies
22. Recycling Fuel Cell Components: Strategies for a Circular Hydrogen Economy
Section VI: Polymer Sustainability: Challenges, Opportunities, and AI
23. Challenges and Opportunities in Scaling up Polymer Recycling Infrastructure
24. Integration of Artificial Intelligence in Renewable Polymers Recycling
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 1 de septiembre de 2026
- Idioma: Inglés
Sobre los editores
Sobre los editores
ST
Sabu Thomas
Professor Sabu Thomas is currently an Emeritus Professor of Mahatma Gandhi University, Kottayam, Kerala, India. He was the former Vice Chancellor of Mahatma Gandhi University. He is a Senior Professor of Christ University, Bangalore, India. He is also a visiting Professor at the Department of Chemical Sciences, University of Johannesburg, Johannesburg, South Africa, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand, and an Adjunct Faculty in the Department of Polymer and Process Engineering, IIT Roorkee, India. He is the Chairman of the TrEST Research Park, Trivandrum, Kerala, India. The H index of Professor Thomas is 163 and he has more than 133,000 citations
BA
Bruno Ameduri
Dr Bruno Ameduri leads the “Fluoropolymers and Energy” team at the Polymer Department of the Institute Charles Gerhardt in Montpellier, France. His main interests focus on the synthesis and the characterization of fluorinated monomers, including cure site monomers and telechelics, telomers, and copolymers for various applications such as F-surfactants, elastomers, coatings, and polymers related to energy (fuel cell membranes, polymer gel electrolytes for Li-ions batteries, electroactive materials and PV).
JT
Jince Thomas
MT