Polymer Upcycling: From Materials and Processes to Industrial Applications
Editat de Pooria Pasbakhsh, Massoud Sofi, Coralie Jehannoen Limba Engleză Paperback – mar 2027
- Offers an introduction to polymer upcycling, covering fundamental concepts, applications across various industries, and future research directions
- Discusses plastic sorting principles and methods, chemical aspects associated to upcycling methods, and interdependencies between waste plastic type and upcycling routes
- Features cutting-edge advancements and practical uses in upcycling, including innovative methods to repurpose polymers
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Specificații
ISBN-13: 9780443454936
ISBN-10: 0443454930
Pagini: 600
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0443454930
Pagini: 600
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction: Overview of Material Upcycling
Section I: Polymer Upcycling: Foundations and Applications
2. Various Types of Polymer Waste Streams: Characterization, Properties, Resources, and Challenges
3. Recycled vs Upcycled Polymers – Current and Future Materials
4. Polymer Upcycling Methods: From Research, Pilot Studies to Real Industrial Cases
5. Sustainable Metrics for Upcycling Processes, from Supply Chain to Economy of Waste Polymer
Section II: Upcycling in Flowlines – Oil and Gas Industry
6. Decommissioning in Oil and Gas Industry: Sorting, Separation and Decontamination Techniques – Flowline Case Study
7. Upcycling of Oil and Gas Decommissioned Plastic Waste
8. The Role of Recycling and Upcycling of Waste Materials in Oil and Gas Industry in its Circular Economy
Section III: Upcycling of Polymer and Rubbers from Automotive Industry
9. Recycling and Upcycling of Polymer Products from Automotives
10. The Effect of Extracted Metallic and Polymeric Content from Waste Tires in Mechanical and Chemical Properties of Recycled and Upcycled Composites
Section IV: Plastic Upcycling from Packaging Industry
11. Upcycling of One Component-Based Packaging Materials (Plastic Bottles, Films and Bags)
12. Upcycling of Multi Components-Based Packaging Materials (PET-PP Films, Food Packaging with Multi-Layer Plastic)
13. From Supply Chain to Circular Economy of Packaging Industry: The Role of Recycling and Upcycling
Section V: Upcycling of High Added Value Materials
14. Upcycling of Textile Materials
15. Upcycling of Plastic Waste from Electronic Industry (WEEE) Towards Circular Economy
16. Upcycling of Performance Materials and Composites (Aerospace, Wind Turbine, Water Membrane, Polymeric Materials from Batteries) Towards Circular Economy
17. Upcycling of Bio-Based Materials Towards Circular Economy
18. Decommissioning and Decontamination Methods in Construction and Building Industry Towards a Sustainable Approach
Section VI: Conclusion
19. Sustainability, Policy Making and New Approaches for 2050
20. Environmental Impact and Toxicological Risks of Waste Plastics and the Proposed Upcycling Methods: Various Industries Examples
21. Conclusion and Future of Polymer Upcycling
Section I: Polymer Upcycling: Foundations and Applications
2. Various Types of Polymer Waste Streams: Characterization, Properties, Resources, and Challenges
3. Recycled vs Upcycled Polymers – Current and Future Materials
4. Polymer Upcycling Methods: From Research, Pilot Studies to Real Industrial Cases
5. Sustainable Metrics for Upcycling Processes, from Supply Chain to Economy of Waste Polymer
Section II: Upcycling in Flowlines – Oil and Gas Industry
6. Decommissioning in Oil and Gas Industry: Sorting, Separation and Decontamination Techniques – Flowline Case Study
7. Upcycling of Oil and Gas Decommissioned Plastic Waste
8. The Role of Recycling and Upcycling of Waste Materials in Oil and Gas Industry in its Circular Economy
Section III: Upcycling of Polymer and Rubbers from Automotive Industry
9. Recycling and Upcycling of Polymer Products from Automotives
10. The Effect of Extracted Metallic and Polymeric Content from Waste Tires in Mechanical and Chemical Properties of Recycled and Upcycled Composites
Section IV: Plastic Upcycling from Packaging Industry
11. Upcycling of One Component-Based Packaging Materials (Plastic Bottles, Films and Bags)
12. Upcycling of Multi Components-Based Packaging Materials (PET-PP Films, Food Packaging with Multi-Layer Plastic)
13. From Supply Chain to Circular Economy of Packaging Industry: The Role of Recycling and Upcycling
Section V: Upcycling of High Added Value Materials
14. Upcycling of Textile Materials
15. Upcycling of Plastic Waste from Electronic Industry (WEEE) Towards Circular Economy
16. Upcycling of Performance Materials and Composites (Aerospace, Wind Turbine, Water Membrane, Polymeric Materials from Batteries) Towards Circular Economy
17. Upcycling of Bio-Based Materials Towards Circular Economy
18. Decommissioning and Decontamination Methods in Construction and Building Industry Towards a Sustainable Approach
Section VI: Conclusion
19. Sustainability, Policy Making and New Approaches for 2050
20. Environmental Impact and Toxicological Risks of Waste Plastics and the Proposed Upcycling Methods: Various Industries Examples
21. Conclusion and Future of Polymer Upcycling