Lignin is the second-most abundant polymer after cellulose within the biomass of our planet. Structurally, it displays random oligomeric units without fixed repetition schemes beyond the stage of dimers. Quantitative 1H-3C HSQC measurements have recently greatly facilitated lignin analyses. In some cases, however, long acquisition times needed for obtaining quantitative HSQCs are not compatible with the chemical integrity of (a potentially functionalised) lignin sample. We thus compared different methods that were developed for more time-efficient quantitative HSQC measurements with respect to their usefulness in lignin analyses: reliable and reproducible results were obtained using both the QQ-HSQC and the HSQC0 method. © 2013 Sette et al....
Understanding the mechanisms underlying plant biomass recalcitrance at the molecular level can only ...
This thesis describes a new analytical method to determine the levels of uncondensed (protonated C5)...
Quick quantitative HSQC (QQ-HSQC) was applied to quantitative evaluation of different inter-unit lin...
Lignin is the second-most abundant polymer after cellulose within the biomass of our planet. Structu...
AbstractLignin is the second-most abundant polymer after cellulose within the biomass of our planet....
Lignin is the second-most abundant polymer after cellulose within the biomass of our planet. Structu...
Lignin is the second most abundant of all the natural polymers that comprise plant biomass. Its chal...
Quick quantitative HSQC (QQ-HSQC) was applied to quantitative evaluation of different inter-unit lin...
Abstract As the attraction of creating biofuels and bio-based chemicals from lignocellulosic biomass...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
Lignin depolymerization could provide an attractive renewable aromatic feedstock for the chemical in...
Lignins are valuable renewable resources for the potential production of a large array of biofuels, ...
Understanding the mechanisms underlying plant biomass recalcitrance at the molecular level can only ...
Detailed insight into the structure and composition of industrial (technical) lignins is needed to d...
This study has shown that ultrafiltration allows the selective extraction from industrial black liqu...
Understanding the mechanisms underlying plant biomass recalcitrance at the molecular level can only ...
This thesis describes a new analytical method to determine the levels of uncondensed (protonated C5)...
Quick quantitative HSQC (QQ-HSQC) was applied to quantitative evaluation of different inter-unit lin...
Lignin is the second-most abundant polymer after cellulose within the biomass of our planet. Structu...
AbstractLignin is the second-most abundant polymer after cellulose within the biomass of our planet....
Lignin is the second-most abundant polymer after cellulose within the biomass of our planet. Structu...
Lignin is the second most abundant of all the natural polymers that comprise plant biomass. Its chal...
Quick quantitative HSQC (QQ-HSQC) was applied to quantitative evaluation of different inter-unit lin...
Abstract As the attraction of creating biofuels and bio-based chemicals from lignocellulosic biomass...
Lignocellulosic biomass is a sustainable source of renewable carbon, and it is the most abundant for...
Lignin depolymerization could provide an attractive renewable aromatic feedstock for the chemical in...
Lignins are valuable renewable resources for the potential production of a large array of biofuels, ...
Understanding the mechanisms underlying plant biomass recalcitrance at the molecular level can only ...
Detailed insight into the structure and composition of industrial (technical) lignins is needed to d...
This study has shown that ultrafiltration allows the selective extraction from industrial black liqu...
Understanding the mechanisms underlying plant biomass recalcitrance at the molecular level can only ...
This thesis describes a new analytical method to determine the levels of uncondensed (protonated C5)...
Quick quantitative HSQC (QQ-HSQC) was applied to quantitative evaluation of different inter-unit lin...