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Turkey Tail, Yun Zhi · 2017 · Journal Article

Medium relevance

Catechol Removal from Aqueous Media Using Laccase Immobilized in Different Macro- and Microreactor Systems.

Trametes versicolor

OncologyImmune support
SpeciesTurkey Tail, Yun Zhi
JournalApplied biochemistry and biotechnology
Year2017

Key points

  • Laccase belongs to the group of enzymes that are capable to catalyze the oxidation of phenols
  • Since the water is only by-product in laccase-catalyzed phenol oxidations, it is ideally "green" enzyme with many possible applications in different industrial processes
  • To make the oxidation process more sustainable in terms of biocatalyst consumption, immobilization of the enzyme is implemented in to the processes
  • Additionally, when developing a process, choice of a reactor type plays a significant role in the total outcome.In this study, the use of immobilized laccase from Trametes versicolor for biocatalytic catechol oxidation was explored
  • Two different methods of immobilization were performed and compared using five different reactor types
  • With low consumption of the enzyme and good efficiency, obtained results go in favor of microreactors with enzyme covalently immobilized on the microchannel surface

Metadata-grounded summary

Citation abstract

Laccase belongs to the group of enzymes that are capable to catalyze the oxidation of phenols. Since the water is only by-product in laccase-catalyzed phenol oxidations, it is ideally "green" enzyme with many possible applications in different industrial processes. To make the oxidation process more sustainable in terms of biocatalyst consumption, immobilization of the enzyme is implemented in to the processes. Additionally, when developing a process, choice of a reactor type plays a significant role in the total outcome.In this study, the use of immobilized laccase from Trametes versicolor for biocatalytic catechol oxidation was explored. Two different methods of immobilization were performed and compared using five different reactor types. In order to compare different systems used for catechol oxidation, biocatalyst turnover number and turnover frequency were calculated. With low consumption of the enzyme and good efficiency, obtained results go in favor of microreactors with enzyme covalently immobilized on the microchannel surface.

Citation

Tušek AJ, Šalić A, Zelić B (2017). Catechol Removal from Aqueous Media Using Laccase Immobilized in Different Macro- and Microreactor Systems. Applied biochemistry and biotechnology https://doi.org/10.1007/s12010-017-2419-2 PMID: 28116574

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