Turkey Tail, Yun Zhi · 2020 · Research Article
Medium relevanceThe Synergistic Action of Electro-Fenton and White-Rot Fungi in the Degradation of Lignin.
Trametes versicolor
Key points
- White-rot fungus is a common lignin-degrading fungus
- However, compared with those of microorganisms that biodegrade lignin alone, synergistic systems of electro-Fenton processes and white-rot fungi are superior because of their high efficiency, mild conditions, and environmental friendliness
- To investigate the details of lignin degradation by a synergistic system comprising electro-Fenton processes and white-rot fungi, lignin degradation was studied at different voltages with three lignin-degrading fungi ( Phanerochaete chrysosporium, Lentinula edodes, and Trametes versicolor )
- The lignin degradation efficiency (82∼89%) of the synergistic systems at 4 V was higher than that of a control at 96 h post inoculation
- Furthermore, the H 2 O 2 produced and phenolic lignin converted in the system can significantly enhance the efficiency of ligninolytic enzymes, so a considerably increased enzyme activity was obtained by the synergistic action of electro-Fenton processes and white-rot fungi. 13 C NMR spectroscopy revealed that aromatic structure units (103-162 ppm) were effectively degraded by the three fungi
- This study shows that the combination of electro-Fenton processes and white-rot fungi treatment significantly improved the lignin degradation efficiency, which established a promising strategy for lignin degradation and valorization
Metadata-grounded summary
Citation abstract
White-rot fungus is a common lignin-degrading fungus. However, compared with those of microorganisms that biodegrade lignin alone, synergistic systems of electro-Fenton processes and white-rot fungi are superior because of their high efficiency, mild conditions, and environmental friendliness. To investigate the details of lignin degradation by a synergistic system comprising electro-Fenton processes and white-rot fungi, lignin degradation was studied at different voltages with three lignin-degrading fungi ( Phanerochaete chrysosporium, Lentinula edodes, and Trametes versicolor ). The lignin degradation efficiency (82∼89%) of the synergistic systems at 4 V was higher than that of a control at 96 h post inoculation. Furthermore, the H 2 O 2 produced and phenolic lignin converted in the system can significantly enhance the efficiency of ligninolytic enzymes, so a considerably increased enzyme activity was obtained by the synergistic action of electro-Fenton processes and white-rot fungi. 13 C NMR spectroscopy revealed that aromatic structure units (103-162 ppm) were effectively degraded by the three fungi. This study shows that the combination of electro-Fenton processes and white-rot fungi treatment significantly improved the lignin degradation efficiency, which established a promising strategy for lignin degradation and valorization.
Citation
Hou L, Ji D, Dong W, Yuan L, Zhang F, Li Y, et al. (2020). The Synergistic Action of Electro-Fenton and White-Rot Fungi in the Degradation of Lignin. Frontiers in bioengineering and biotechnology https://doi.org/10.3389/fbioe.2020.00099 PMID: 32226782
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