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001024920 005__ 20240516205741.0
001024920 0247_ $$2datacite_doi$$a10.34734/FZJ-2024-02570
001024920 0247_ $$2URN$$aurn:nbn:de:0001-20240516075645895-7762162-3
001024920 020__ $$a978-3-95806-749-3
001024920 037__ $$aFZJ-2024-02570
001024920 1001_ $$0P:(DE-Juel1)180558$$aAckermann, Yannic$$b0$$eCorresponding author$$ufzj
001024920 245__ $$aEnabling mixed microbial upcycling of plastic monomers$$f- 2024-05-16
001024920 260__ $$aJülich$$bForschungszentrum Jülich GmbH Zentralbibliothek, Verlag$$c2024
001024920 300__ $$aXVI, 203
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001024920 4900_ $$aSchriften des Forschungszentrums Jülich Reihe Schlüsseltechnologien / Key Technologies$$v281
001024920 502__ $$aDissertation, Univ. Düsseldorf, 2023$$bDissertation$$cUniv. Düsseldorf$$d2023
001024920 520__ $$aThe global plastics crisis poses urgent environmental and social challenges due to the excessive production, consumption and disposal of plastic waste. To address this issue, biorecycling within a circular bioeconomy is a potential solution, involving the depolymerization of long-chain polymers by chemical or enzymatic catalysis and subsequent biological transformation of the resulting monomers. The goal of this work was to enable this approach by expanding the substrate range of Pseudomonas putidaand P. taiwanensis to include aliphatic medium-chain length (mcl) dicarboxylic acids (DCAs), aromatic DCAs, and aliphatic diols. The study also aimed to combine plastic monomer degradation with production of biopolymers and aromatic compounds.
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001024920 9141_ $$y2024
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