Turkey Tail, Yun Zhi · 2018 · Journal Article
High relevanceStatistical optimisation of enzymatic detoxification with laccase from Trametes versicolor for spent sulphite liquors using a novel in-situ NMR method.
Trametes versicolor
Key points
- Within this study the mediated detoxification of spent sulphite liquor via laccase from Trametes versicolor was analysed and optimised using an in-situ NMR-spectroscopy method
- The enzymatic degradation kinetic was optimised using the degradation rate of aromatic compounds as indirect parameter
- Via response surface methodology the impact of the temperature, the pH and the enzyme concentration was analysed and the conditions were optimised focusing on optimal detoxification
- The results of the statistical calculation revealed a valid statistical model for the optimal impact on the aromatic degradation with a temperature of 31 °C, a pH of 6 and a laccase concentrations of 179 U g -1 dry matter of spent sulphite liquor
- By using these conditions 88.73% of aromatic compounds could be degraded
Metadata-grounded summary
Citation abstract
Within this study the mediated detoxification of spent sulphite liquor via laccase from Trametes versicolor was analysed and optimised using an in-situ NMR-spectroscopy method. The enzymatic degradation kinetic was optimised using the degradation rate of aromatic compounds as indirect parameter. Via response surface methodology the impact of the temperature, the pH and the enzyme concentration was analysed and the conditions were optimised focusing on optimal detoxification. The results of the statistical calculation revealed a valid statistical model for the optimal impact on the aromatic degradation with a temperature of 31 °C, a pH of 6 and a laccase concentrations of 179 U g -1 dry matter of spent sulphite liquor. By using these conditions 88.73% of aromatic compounds could be degraded.
Citation
Sparlinek L, Leitner V, Kamm B (2018). Statistical optimisation of enzymatic detoxification with laccase from Trametes versicolor for spent sulphite liquors using a novel in-situ NMR method. Journal of biotechnology https://doi.org/10.1016/j.jbiotec.2018.07.026 PMID: 30048665
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