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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Tillverkningsteknik

    Polymer Upcycling

    From Materials and Processes to Industrial Applications

    AvPooria Pasbakhsh,Massoud Sofi

    Häftad, Engelska, 2027

    2 455 kr

    Kommande

    Beskrivning

    Polymer Upcycling: From Materials and Processes to Industrial Applications provides a comprehensive overview of the promising field of polymer upcycling and highlights innovative ways to manage waste and use resources more effectively. The book is comprehensively organized into six parts, including an introduction to the fundamentals of the field, followed by a thorough discussion on applications from various industries, policy making and future research directions. It also includes discussions on the types of polymer waste, the differences between recycled and upcycled materials, and the sustainability metrics that guide these processes. The chapters examine decommissioning practices in the oil and gas sector, automotive recycling, advancements in packaging, and the upcycling of high-value materials like textiles and electronic waste. This book is a valuable resource for researchers and industry professionals interested to learn practical strategies for implementing effective upcycling solutions.

    • 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

    Produktinformation

    • Utgivningsdatum:2027-03-01
    • Mått:191 x 235 x undefined mm
    • Vikt:450 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:600
    • Förlag:Elsevier Science
    • ISBN:9780443454936

    Utforska kategorier

    • Tillverkningsteknik inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Pooria Pasbakhsh holds degrees in Material Science and Engineering, Metallurgy and Material Selection, and a PhD in Polymer Composites. With over 17 years of international research and industrial experience, he is a multidisciplinary materials scientist and Research Fellow at the University of Melbourne. His work integrates chemistry, geology, and philosophy to develop sustainable bioplastics reinforced with Halloysite Nanotubes, creating smart nanocomposites with self-healing and antimicrobial properties. He has engineered active packaging solutions and transient materials, and currently leads circular economy projects on subsea infrastructure upcycling and carbon-sequestering hemp construction materials. Recognized among the “World’s Top 2% Scientists” since 2020, his impact spans materials, polymers, and chemistry.Dr. Massoud Sofi is a Research Fellow in the Department of Infrastructure Engineering at the University of Melbourne and serves as the Chief Investigator (CI) for four CRC-P Projects funded by the Australian Federal Government. He is also a CI for the Australian Research Council’s Industrial Transformation Research Project focused on the Transformation of Reclaimed Waste Resources to Engineered Materials and Solutions for a Circular Economy (TREMS). His research interests include sustainable construction materials, concrete mix selection, concrete technology and performance, as well as in-situ health diagnostics and monitoring of civil infrastructure. Dr. Sofi obtained his Ph.D. from the University of Melbourne, Australia, in 2013. Since then, he has held various academic roles within the Department of Infrastructure Engineering and currently teaches undergraduate and postgraduate courses. Dr. Coralie Jehanno obtained her Ph.D. in Polymer Chemistry in 2019 from the University of the Basque Country, Spain, in co-tutelle with the University of Warwick, UK. Her thesis was awarded a prize by the Spanish Royal Society of Chemistry (RSEQ) for the best thesis in polymer chemistry for the year 2019. After completing her Ph.D., she co-founded the POLYKEY start-up company with colleague Andere Basterretxea, where they leverage some of the technologies developed during their doctoral research. Since 2020, Coralie has been successfully combining an academic career with her entrepreneurial endeavors. In 2021, she received a "Juan de la Cierva" fellowship, allowing her to join a research group University of the Basque Country as a postdoctoral researcher while also serving as the Scientific Director of her start-up. Coralie has strong expertise in plastic recycling, organocatalysis, and the synthesis of sustainable polymers.

    Innehållsförteckning

    • 1. Introduction: Overview of Material UpcyclingSection I: Polymer Upcycling: Foundations and Applications2. Various Types of Polymer Waste Streams: Characterization, Properties, Resources, and Challenges3. Recycled vs Upcycled Polymers – Current and Future Materials4. Polymer Upcycling Methods: From Research, Pilot Studies to Real Industrial Cases5. Sustainable Metrics for Upcycling Processes, from Supply Chain to Economy of Waste PolymerSection II: Upcycling in Flowlines – Oil and Gas Industry6. Decommissioning in Oil and Gas Industry: Sorting, Separation and Decontamination Techniques – Flowline Case Study7. Upcycling of Oil and Gas Decommissioned Plastic Waste8. The Role of Recycling and Upcycling of Waste Materials in Oil and Gas Industry in its Circular EconomySection III: Upcycling of Polymer and Rubbers from Automotive Industry9. Recycling and Upcycling of Polymer Products from Automotives10. The Effect of Extracted Metallic and Polymeric Content from Waste Tires in Mechanical and Chemical Properties of Recycled and Upcycled CompositesSection IV: Plastic Upcycling from Packaging Industry11. 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 UpcyclingSection V: Upcycling of High Added Value Materials14. Upcycling of Textile Materials15. Upcycling of Plastic Waste from Electronic Industry (WEEE) Towards Circular Economy16. Upcycling of Performance Materials and Composites (Aerospace, Wind Turbine, Water Membrane, Polymeric Materials from Batteries) Towards Circular Economy17. Upcycling of Bio-Based Materials Towards Circular Economy18. Decommissioning and Decontamination Methods in Construction and Building Industry Towards a Sustainable ApproachSection VI: Conclusion19. Sustainability, Policy Making and New Approaches for 205020. Environmental Impact and Toxicological Risks of Waste Plastics and the Proposed Upcycling Methods: Various Industries Examples21. Conclusion and Future of Polymer Upcycling