Efficient conversion of renewable biomass into value-added chemicals and biofuels is regarded as an alternative route to reduce our high dependence on fossil resources and the associated environmental issues. In this context, biomass-based furfural and levulinic acid (LA) platform chemicals are frequently utilized to synthesize various valuable chemicals and biofuels. In this review, the reaction mechanism and catalytic system developed for the generation of furfural and levulinic acid are summarized and compared. Special efforts are focused on the different catalytic systems for the synthesis of furfural and levulinic acid. The corresponding challenges and outlooks are also observed
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
Levulinic acid (LA) is one of the top bio-based platform molecules that can be converted into many v...
Levulinic acid (LA) is one of the top bio-based platform molecules that can be converted into many v...
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
A review. Processes for conversion of biomass to levulinic acid, key feedstock for org. synthesis a...
Sugarcane products represent an abundant and relatively low cost carbon resource that can be utilise...
Sugarcane products represent an abundant and relatively low cost carbon resource that can be utilise...
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
Levulinic acid (LA), a class of important chemical intermediates and new energy chemicals, has been ...
Levulinic acid (LA), a class of important chemical intermediates and new energy chemicals, has been ...
4noCatalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistr...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
Levulinic acid (LA) is one of the top bio-based platform molecules that can be converted into many v...
Levulinic acid (LA) is one of the top bio-based platform molecules that can be converted into many v...
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
A review. Processes for conversion of biomass to levulinic acid, key feedstock for org. synthesis a...
Sugarcane products represent an abundant and relatively low cost carbon resource that can be utilise...
Sugarcane products represent an abundant and relatively low cost carbon resource that can be utilise...
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
Catalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistry....
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
Levulinic acid (LA), a class of important chemical intermediates and new energy chemicals, has been ...
Levulinic acid (LA), a class of important chemical intermediates and new energy chemicals, has been ...
4noCatalytic conversion of actual biomass to valuable chemicals is a crucial issue in green chemistr...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
The present work explores the production of isopropyl levulinate from furfural by a two-step microwa...
Levulinic acid (LA) is one of the top bio-based platform molecules that can be converted into many v...