The utilization of lignin and glyoxal as potentially sustainable and less hazardous building blocks for phenolic resins is an emerging research field. Lignin thereby serves as a partial, macromolecular substitute for phenol, while glyoxal fulfills the role of an aldehyde cross-linker. In the first part of this perspective, the industrial context of lignin and glyoxal will be expounded with a focus on their origin and production processes. In the framework of phenolic resins, the use of lignin and glyoxal can be categorized into two research domains: (i) glyoxalation to improve the reactivity of lignin prior to resin synthesis and (ii) direct resin synthesis using lignin and glyoxal with glyoxal immediately serving as the cross-linker. This ...
The work presented here aims to produce bio-phenolic compounds from forestry biomass (residues, wast...
Lignin is a promising candidate for the replacement of fossil-based materials, due to its natural ab...
Natural, renewable, and non-toxic lignin-based resin was synthesized through copolymerization with m...
Phenolic adhesives are widely used in the production of engineered wood products due to their except...
The fast development of oil palm industry in the country has produced substantial amount of empty fr...
Bulking treatment through the impregnation of low molecular weight phenol formaldehyde (LmwPF) res...
Lignin, which is the most abundant aromatic polymer in nature, was used as a green substitute for th...
Resole resins have many applications, especially for foam production. However, the use of phenol, a ...
International audienceOrganosolv wheat straw lignin extracted using the CIMV processTM is a linear, ...
Lignocellulosic materials can significantly contribute to the development of biobased composites. In...
In this study, glyoxalated alkaline lignins with a non-volatile and non-toxic aldehyde, which can be...
Organosolv wheat straw lignin extracted using the CIMV processTM is a linear, low molecular weight, ...
Lignin phenol formaldehyde (LPF) resols were produced using depolymerized lignin fractions at variou...
Lignin phenol formaldehyde (LPF) resols were produced using depolymerized lignin fractions at variou...
The substitution of phenol by lignin in phenol-formaldehyde (PF) resins is one of the most promising...
The work presented here aims to produce bio-phenolic compounds from forestry biomass (residues, wast...
Lignin is a promising candidate for the replacement of fossil-based materials, due to its natural ab...
Natural, renewable, and non-toxic lignin-based resin was synthesized through copolymerization with m...
Phenolic adhesives are widely used in the production of engineered wood products due to their except...
The fast development of oil palm industry in the country has produced substantial amount of empty fr...
Bulking treatment through the impregnation of low molecular weight phenol formaldehyde (LmwPF) res...
Lignin, which is the most abundant aromatic polymer in nature, was used as a green substitute for th...
Resole resins have many applications, especially for foam production. However, the use of phenol, a ...
International audienceOrganosolv wheat straw lignin extracted using the CIMV processTM is a linear, ...
Lignocellulosic materials can significantly contribute to the development of biobased composites. In...
In this study, glyoxalated alkaline lignins with a non-volatile and non-toxic aldehyde, which can be...
Organosolv wheat straw lignin extracted using the CIMV processTM is a linear, low molecular weight, ...
Lignin phenol formaldehyde (LPF) resols were produced using depolymerized lignin fractions at variou...
Lignin phenol formaldehyde (LPF) resols were produced using depolymerized lignin fractions at variou...
The substitution of phenol by lignin in phenol-formaldehyde (PF) resins is one of the most promising...
The work presented here aims to produce bio-phenolic compounds from forestry biomass (residues, wast...
Lignin is a promising candidate for the replacement of fossil-based materials, due to its natural ab...
Natural, renewable, and non-toxic lignin-based resin was synthesized through copolymerization with m...