A mild lignin-first acidolysis process (140 °C, 40 min) was developed using the benign solvent dimethyl carbonate (DMC) and ethylene glycol (EG) as a stabilization agent/solvent to produce a high yield of aromatic monophenols directly from softwood lignocellulose (pine, spruce, cedar, and Douglas fir) with a depolymerization efficiency of 77–98 %. Under the optimized conditions (140 °C, 40 min, 400 wt % EG and 2 wt % H2SO4 to pinewood), up to 9 wt % of the aromatic monophenol was produced, reaching a degree of delignification in pinewood of 77 %. Cellulose was also preserved, as evidenced by a 85 % glucose yield after enzymatic digestion. An in-depth analysis of the depolymerization oil was conducted by using GC-MS, HPLC, 2 D-NMR, and size-...
NJW would like to acknowledge the EPSRC grants EP/J018139/1 and EP/K00445X/1 for funding and PJD and...
© The Royal Society of Chemistry 2015. A catalytic lignocellulose biorefinery process is presented, ...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
A mild lignin-first acidolysis process (140 °C, 40 min) was developed using the benign solvent dimet...
This thesis describes several aspects of lignin acidolysis with ethylene glycol stabilization and po...
A two-step catalytic process for woody biomass fractionation and valorization is presented. Both lig...
A first systematic approach on the base catalyzed depolymerization (BCD) of five technical lignins d...
C.S.L. thanks the Leverhulme Trust Early Career Fellowship (ECF-2018-480). Z.W. acknowledges the Chi...
Lignin is one of the most promising sources of renewable aromatic hydrocarbons. Current methods for ...
Here, we report on the ability of the biomass derived solvents ethanol and, in particular, n-butanol...
NJW would like to acknowledge the EPSRC grants EP/J018139/1 and EP/K00445X/1 for funding and PJD and...
© The Royal Society of Chemistry 2015. A catalytic lignocellulose biorefinery process is presented, ...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
A mild lignin-first acidolysis process (140 °C, 40 min) was developed using the benign solvent dimet...
This thesis describes several aspects of lignin acidolysis with ethylene glycol stabilization and po...
A two-step catalytic process for woody biomass fractionation and valorization is presented. Both lig...
A first systematic approach on the base catalyzed depolymerization (BCD) of five technical lignins d...
C.S.L. thanks the Leverhulme Trust Early Career Fellowship (ECF-2018-480). Z.W. acknowledges the Chi...
Lignin is one of the most promising sources of renewable aromatic hydrocarbons. Current methods for ...
Here, we report on the ability of the biomass derived solvents ethanol and, in particular, n-butanol...
NJW would like to acknowledge the EPSRC grants EP/J018139/1 and EP/K00445X/1 for funding and PJD and...
© The Royal Society of Chemistry 2015. A catalytic lignocellulose biorefinery process is presented, ...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...