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Critical advances and future opportunities in upcycling commodity polymers
by
Alty, Jill W.
, Chen, Eugene Y.-X.
, De Meester, Steven
, Jehanno, Coralie
, Dove, Andrew P.
, Sardon, Haritz
, Roosen, Martijn
, Leibfarth, Frank A.
in
119/118
/ 140/131
/ 639/638/224/685
/ 639/638/455/941
/ Bisphenol A
/ Chemical recycling
/ Commodities
/ Developed countries
/ Energy efficiency
/ Energy recovery
/ Fine chemicals
/ Humanities and Social Sciences
/ Mechanical properties
/ Monomers
/ multidisciplinary
/ Municipal solid waste
/ Perspective
/ Plastic debris
/ Plastics
/ Polymerization
/ Polymers
/ Recycling
/ Recycling centers
/ Science
/ Science (multidisciplinary)
/ Value chain
2022
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Critical advances and future opportunities in upcycling commodity polymers
by
Alty, Jill W.
, Chen, Eugene Y.-X.
, De Meester, Steven
, Jehanno, Coralie
, Dove, Andrew P.
, Sardon, Haritz
, Roosen, Martijn
, Leibfarth, Frank A.
in
119/118
/ 140/131
/ 639/638/224/685
/ 639/638/455/941
/ Bisphenol A
/ Chemical recycling
/ Commodities
/ Developed countries
/ Energy efficiency
/ Energy recovery
/ Fine chemicals
/ Humanities and Social Sciences
/ Mechanical properties
/ Monomers
/ multidisciplinary
/ Municipal solid waste
/ Perspective
/ Plastic debris
/ Plastics
/ Polymerization
/ Polymers
/ Recycling
/ Recycling centers
/ Science
/ Science (multidisciplinary)
/ Value chain
2022
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Do you wish to request the book?
Critical advances and future opportunities in upcycling commodity polymers
by
Alty, Jill W.
, Chen, Eugene Y.-X.
, De Meester, Steven
, Jehanno, Coralie
, Dove, Andrew P.
, Sardon, Haritz
, Roosen, Martijn
, Leibfarth, Frank A.
in
119/118
/ 140/131
/ 639/638/224/685
/ 639/638/455/941
/ Bisphenol A
/ Chemical recycling
/ Commodities
/ Developed countries
/ Energy efficiency
/ Energy recovery
/ Fine chemicals
/ Humanities and Social Sciences
/ Mechanical properties
/ Monomers
/ multidisciplinary
/ Municipal solid waste
/ Perspective
/ Plastic debris
/ Plastics
/ Polymerization
/ Polymers
/ Recycling
/ Recycling centers
/ Science
/ Science (multidisciplinary)
/ Value chain
2022
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Critical advances and future opportunities in upcycling commodity polymers
Journal Article
Critical advances and future opportunities in upcycling commodity polymers
2022
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Overview
The vast majority of commodity plastics do not degrade and therefore they permanently pollute the environment. At present, less than 20% of post-consumer plastic waste in developed countries is recycled, predominately for energy recovery or repurposing as lower-value materials by mechanical recycling. Chemical recycling offers an opportunity to revert plastics back to monomers for repolymerization to virgin materials without altering the properties of the material or the economic value of the polymer. For plastic waste that is either cost prohibitive or infeasible to mechanically or chemically recycle, the nascent field of chemical upcycling promises to use chemical or engineering approaches to place plastic waste at the beginning of a new value chain. Here state-of-the-art methods are highlighted for upcycling plastic waste into value-added performance materials, fine chemicals and specialty polymers. By identifying common conceptual approaches, we critically discuss how the advantages and challenges of each approach contribute to the goal of realizing a sustainable plastics economy.
Methods for the transformation of plastics into materials with value, known as plastic waste upcycling, are outlined, and their advantages and challenges in terms of a sustainable plastics economy are discussed.
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