Sequential lignin depolymerization by combination of biocatalytic and formic acid/formate treatment steps

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作者
Christoph A. Gasser
Monika Čvančarová
Erik M. Ammann
Andreas Schäffer
Patrick Shahgaldian
Philippe F.-X. Corvini
机构
[1] University of Applied Sciences and Arts Northwestern Switzerland,Institute for Ecopreneurship, School of Life Sciences
[2] RWTH Aachen,Institute for Environmental Research
[3] Nanjing University Xianlin Campus,State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment
[4] University of Applied Sciences and Arts Northwestern Switzerland,Institute for Chemistry and Bioanalytics, School of Life Sciences
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Lignin; Laccase; Biocatalysis; Depolymerization; Formic acid;
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摘要
Lignin, a complex three-dimensional amorphous polymer, is considered to be a potential natural renewable resource for the production of low-molecular-weight aromatic compounds. In the present study, a novel sequential lignin treatment method consisting of a biocatalytic oxidation step followed by a formic acid-induced lignin depolymerization step was developed and optimized using response surface methodology. The biocatalytic step employed a laccase mediator system using the redox mediator 1-hydroxybenzotriazole. Laccases were immobilized on superparamagnetic nanoparticles using a sorption-assisted surface conjugation method allowing easy separation and reuse of the biocatalysts after treatment. Under optimized conditions, as much as 45 wt% of lignin could be solubilized either in aqueous solution after the first treatment or in ethyl acetate after the second (chemical) treatment. The solubilized products were found to be mainly low-molecular-weight aromatic monomers and oligomers. The process might be used for the production of low-molecular-weight soluble aromatic products that can be purified and/or upgraded applying further downstream processes.
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页码:2575 / 2588
页数:13
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