Conversion of cellulose into platform chemicals is essential for sustainable development of the chemical industry. With this aim, single step hydrothermal conversion of cellulose to industrially important levulinic acid using zirconium dioxide as a catalyst has been investigated. A remarkably high yield (53.9 mol %) of levulinic acid with excellent accountability and total conversion of cellulose has been achieved at 180 °C reaction temperature and reaction time of 3 h with 2 wt % of catalyst and 2 g of cellulose. The major products identified were levulinic acid (LA), formic acid (FA), 5-hydroxymethylfurfural (5-HMF), furfural, and humins. Formation of humins during cellulose hydrolysis and dehydration was observed and is also confirmed by...
Biomass, the only sustainable source of organic carbon, is regarded as an ideal renewable energy sou...
Herein, one-pot conversion of cellulose to platform chemicals, formic and levulinic acids was demons...
Levulinic acid (LA), accessible by the acid catalyzed degradation of biomass, is potentially a very ...
Conversion of cellulose into platform chemicals is essential for sustainable development of the chem...
The conversion of cellulose into target chemicals is essential for the development of the sustainabl...
This study presents a synergistic catalytic system using the combination of Brønsted hydrothermal ca...
The hydrothermal conversion of waste biomass to levulinic acid was investigated in the presence of h...
The hydrothermal conversion of waste biomass to levulinic acid was investigated in the presence of h...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
In this study a system for the production of levulinic acid and furfural from lignocellulosic polysa...
In recent years, the interest of industry has deeply increased towards the exploitation of any kind ...
International audienceCrystalline cellulose treated in hydrothermal conditions (190 °C, 24 h) is par...
The waste management policy strongly encourages the valorization of waste biomas to give strategic b...
A review. Processes for conversion of biomass to levulinic acid, key feedstock for org. synthesis a...
Biomass, the only sustainable source of organic carbon, is regarded as an ideal renewable energy sou...
Herein, one-pot conversion of cellulose to platform chemicals, formic and levulinic acids was demons...
Levulinic acid (LA), accessible by the acid catalyzed degradation of biomass, is potentially a very ...
Conversion of cellulose into platform chemicals is essential for sustainable development of the chem...
The conversion of cellulose into target chemicals is essential for the development of the sustainabl...
This study presents a synergistic catalytic system using the combination of Brønsted hydrothermal ca...
The hydrothermal conversion of waste biomass to levulinic acid was investigated in the presence of h...
The hydrothermal conversion of waste biomass to levulinic acid was investigated in the presence of h...
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
A variety of interesting bulk chemicals is accessible by the acid-catalyzed hydrolysis of cellulose....
In this study a system for the production of levulinic acid and furfural from lignocellulosic polysa...
In recent years, the interest of industry has deeply increased towards the exploitation of any kind ...
International audienceCrystalline cellulose treated in hydrothermal conditions (190 °C, 24 h) is par...
The waste management policy strongly encourages the valorization of waste biomas to give strategic b...
A review. Processes for conversion of biomass to levulinic acid, key feedstock for org. synthesis a...
Biomass, the only sustainable source of organic carbon, is regarded as an ideal renewable energy sou...
Herein, one-pot conversion of cellulose to platform chemicals, formic and levulinic acids was demons...
Levulinic acid (LA), accessible by the acid catalyzed degradation of biomass, is potentially a very ...