Lignocentric analysis of a carbohydrate-producing lignocellulosic biorefinery process
•Sequential autohydrolysis and mechanical refining produces good carbohydrate yields.•Within such a process, lignin behavior varies dependent upon raw biomass.•Sugar yields from hardwood correlate with raw lignin’s non-condensed S/V ratio.•Nonwood lignin behaviors suggest further reducing the intens...
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Veröffentlicht in: | Bioresource technology 2017-10, Vol.241, p.857-867 |
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Sprache: | eng |
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Zusammenfassung: | •Sequential autohydrolysis and mechanical refining produces good carbohydrate yields.•Within such a process, lignin behavior varies dependent upon raw biomass.•Sugar yields from hardwood correlate with raw lignin’s non-condensed S/V ratio.•Nonwood lignin behaviors suggest further reducing the intensity of autohydrolysis.
A biologically-based lignocellulosic biorefinery process for obtaining carbohydrates from raw biomass was investigated across six diverse biomasses (three hardwoods & three nonwoods) for the purpose of decoding lignin’s influence on sugar production. Acknowledging that lignin could positively alter the economics of an entire process if valorized appropriately, we sought to correlate the chemical properties of lignin within the process to the traditional metrics associated with carbohydrate production-cellulolytic digestibility and total sugar recovery. Based on raw carbohydrate, enzymatic recovery ranged from 40 to 64% w/w and total recovery ranged from 70 to 87% w/w. Using nitrobenzene oxidation to quantify non-condensed lignin structures, it was found that raw hardwoods bearing increasing non-condensed S/V ratios (2.5–5.1) render increasing total carbohydrate recovery from hardwood biomasses. This finding indicates that the chemical structure of hardwood lignin influences the investigated biorefinery process’ ability to generate carbohydrates from a given raw hardwood feedstock. |
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ISSN: | 0960-8524 1873-2976 |
DOI: | 10.1016/j.biortech.2017.05.207 |