Niskanen_2024_ChemSusChem_17_e202301551

Reference

Title : Upcycling of Agricultural Waste Stream to High-Molecular-Weight Bio-based Poly(ethylene 2,5-furanoate) - Niskanen_2024_ChemSusChem_17_e202301551
Author(s) : Niskanen J , Mahlberg R , van Strien N , Rautiainen S , Kivilahti E , Koivuranta K , Anghelescu-Hakala A
Ref : ChemSusChem , 17 :e202301551 , 2024
Abstract :

Orange peel and sugar beet pulp contain large quantities of pectin, which can be turned via galactaric acid into furan dicarboxylic acid (FDCA) and its esters. In this work, we show the polymerisation of these FDCA esters into high-molecular-weight, 70-100 kg/mol, poly(ethylene 2,5-furanoate) (PEF). PEF is an emerging bio-based alternative for poly(ethylene terephthalate) (PET), widely used in for example packaging applications. Closing the loop, we also demonstrated and confirmed that PEF can be hydrolysed by enzymes, which are known to hydrolyse PET, back into FDCA for convenient recycling and recovery of monomers.

PubMedSearch : Niskanen_2024_ChemSusChem_17_e202301551
PubMedID: 38252878

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Citations formats

Niskanen J, Mahlberg R, van Strien N, Rautiainen S, Kivilahti E, Koivuranta K, Anghelescu-Hakala A (2024)
Upcycling of Agricultural Waste Stream to High-Molecular-Weight Bio-based Poly(ethylene 2,5-furanoate)
ChemSusChem 17 :e202301551

Niskanen J, Mahlberg R, van Strien N, Rautiainen S, Kivilahti E, Koivuranta K, Anghelescu-Hakala A (2024)
ChemSusChem 17 :e202301551