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Recycling of Polyethylene Terephthalate Bottles provides an
overview of PET chemistry, highlighting the main degradation,
depolymerization processes and pathways of PET, along with the
applications of recycled monomers derived from PET waste. The
latest methodologies of recycling and feedstock recovery are
covered, providing critical foundational information. In addition,
the book discusses a range of established methods of polymer
recycling, with an emphasis on real world industrial case studies
and the latest academic research. Users will find in-depth
lifecycle and cost analysis of each waste management method,
comparing the suitability and feasibility of each to support the
decision -making process. Polyethylene Terephthalate (PET) is the
most recycled plastic in the world, but still represents a
significant amount of landfill waste. This book presents an update
on new regulations, providing recommendations for new opportunities
in this area, including new processing methods and applications for
recycled PET.
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.
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