Lignin is produced in large quantities as a by-product of the papermaking and biofuel industries. Lignin is the most abundant aromatic biopolymer on the planet with its chemical structure rendering it ideal for carbon materials production and finely tailored architectures of these sustainable carbon materials are beginning to find use in high value energy applications. This review focuses on lignin chemistry, various lignin extraction and fractionation techniques, and their impact on lignin structure/property relationships for energy applications are discussed. Chemistries behind important and emerging energy applications from recent research on this increasingly valuable sustainable polymer are described
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Efforts to effectively use lignin, a by-product of paper and biofuels production, have been carried ...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Native lignin is an abundant biopolymer on earth and represents 15-30% by weight of the lignocellulo...
Lignin is the second most abundant polymer in forest biomass after\ud cellulose. Compared to the ubi...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqu...
In recent decades, advancements in lignin application include the synthesis of polymers, dyes, adhes...
Wood is the main source of lignin in the world. This generic term “Lignin” describes a large group o...
The overutilization of fossil fuels will inevitably cause the global environmental problems and dwin...
The overutilization of fossil fuels will inevitably cause the global environmental problems and dwin...
[Departement_IRSTEA]Territoires [ADD1_IRSTEA]Bioéconomie territorialeInternational audienceWood is t...
Efforts to effectively use lignin, a by-product of paper and biofuels production, have been carried ...
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Efforts to effectively use lignin, a by-product of paper and biofuels production, have been carried ...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqui...
Native lignin is an abundant biopolymer on earth and represents 15-30% by weight of the lignocellulo...
Lignin is the second most abundant polymer in forest biomass after\ud cellulose. Compared to the ubi...
Lignin is the second most abundant polymer in forest biomass after cellulose. Compared to the ubiqu...
In recent decades, advancements in lignin application include the synthesis of polymers, dyes, adhes...
Wood is the main source of lignin in the world. This generic term “Lignin” describes a large group o...
The overutilization of fossil fuels will inevitably cause the global environmental problems and dwin...
The overutilization of fossil fuels will inevitably cause the global environmental problems and dwin...
[Departement_IRSTEA]Territoires [ADD1_IRSTEA]Bioéconomie territorialeInternational audienceWood is t...
Efforts to effectively use lignin, a by-product of paper and biofuels production, have been carried ...
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Our severe dependence on fossil resources for the production of fuels and chemicals is responsible f...
Efforts to effectively use lignin, a by-product of paper and biofuels production, have been carried ...