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- W3048981540 abstract "• The coculture system could degrade 18.95 w t % PLA/PBAT films in 5 days. • Coculture of P. mendocina and A. elegans was applied to synergistic degrade PLA/PBAT films. • An efficient PLA/PBAT-degrading enzymes system from coculture was developed. • The coculture system could reduce the physiological toxicity of degradation products to the environment. A cocultivation of the Pseudomonas mendocina with Actinomucor elegans was developed and investigated to improve the biodegradation of polylactic acid/polybutylene adipate- co -terephthalate (PLA/PBAT). And the coculture system could produce an efficient PLA/PBAT-degrading enzymes system to degrade PLA/PBAT films. The results showed that the protease activity (11.50 U/mL) and lipase activity (40.46 U/mL) of the coculture exceeded that of the monoculture ( P. mendocina of 7.31 U/mL, A. elegans of 32.47 U/mL). The degradation rate of PLA/PBAT films using the coculture system was 18.95 w t % within 5 days, which was considerably higher than that of P. mendocina (12.94 w t %) and A. elegans (9.27 w t %) individually, suggesting that P. mendocina and A. elegans had synergistic degradation. In addition, P. mendocina and A. elegans could secrete proteases and lipases, respectively, which could catalyze the ester bonds of PLA 1 1 PLA, polylactic acid; PBAT, polybutylene adipate-co-terephthalate. and PBAT in PLA/PBAT films, respectively, and hydrolyze them into different monomers and oligomers as nutrition sources. Therefore, the PLA/PBAT films could be completely degraded. In this study, the PLA/PBAT films were efficiently degraded in the coculture system for the first time, which significantly improved the biodegradation of PLA/PBAT films." @default.
- W3048981540 created "2020-08-21" @default.
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- W3048981540 date "2021-02-01" @default.
- W3048981540 modified "2023-10-03" @default.
- W3048981540 title "Degradation of polylactic acid/polybutylene adipate-co-terephthalate by coculture of Pseudomonas mendocina and Actinomucor elegans" @default.
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- W3048981540 doi "https://doi.org/10.1016/j.jhazmat.2020.123679" @default.
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