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- W3169307332 abstract "• Combined addition of Cu 2+ and Mn 2+ improves solid-state fungal pretreatment. • Unexpected effect of Cu 2+ and Mn 2+ on non-laccase-producing P.chrysosporium. • Enhanced and prolonged MnP activities by CuSO 4 and MnSO 4 supplementation. • Significantly improved degree and selectivity of delignification. • Glucose yield almost three times higher compared to non-supplemented system. Biological pretreatment of lignocellulose by white-rot fungi is an environmentally friendly alternative to chemical and physical approaches to enhance enzymatic saccharification. However, inefficient lignin degradation and substantial cellulose consumption during fungal pretreatment can cause low sugar yields. In this study, the combined action of CuSO 4 and MnSO 4 effectively improved the degree and selectivity of delignification during solid-state fungal pretreatment of poplar wood by Phanerochaete chrysosporium . Compared to pretreatment without this supplementation, a 1.9 fold higher lignin degradation and 2.4 times higher delignification selectivity value were obtained due to the increased and prolonged manganese peroxidase activity. Enzymatic saccharification of supplemented pretreated wood resulted in a 2.9 times higher glucose yield compared to the non-supplemented system. This study has demonstrated that the combined application of Mn 2+ and Cu 2+ can significantly improve the fungal pretreatment process and that the beneficial effect of Cu 2+ on delignification is not restricted to laccase-producing fungi." @default.
- W3169307332 created "2021-06-22" @default.
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- W3169307332 date "2021-09-01" @default.
- W3169307332 modified "2023-09-24" @default.
- W3169307332 title "Enhanced fungal delignification and enzymatic digestibility of poplar wood by combined CuSO4 and MnSO4 supplementation" @default.
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- W3169307332 doi "https://doi.org/10.1016/j.procbio.2021.06.002" @default.
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