The utilization of renewable lignocellulosic biomasses for bioenergy synthesis is believed to facilitate competitive commercialization and realize affordable clean energy sources in the future. Among the pathways for biomass pretreatment methods that enhance the efficiency of the whole biofuel production process, the combined microwave irradiation and physicochemical approach is found to provide many economic and environmental benefits. Several studies on microwave-based pretreatment technologies for biomass conversion have been conducted in recent years. Although some reviews are available, most did not comprehensively analyze microwave-physicochemical pretreatment techniques for biomass conversion. The study of these techniques is crucial...
Microwave pyrolysis of biomass has long been recognised to provide potential opportunities for produ...
AbstractThe results of application of microwave (MW) irradiation to achieve refinery of various kind...
Pretreatment of lignocellulosic biomass plays an essential role in bioethanol production as an alter...
Lignocellulosic biomass is an abundant biopolymer in nature as a by-product of agricultural industry...
With raising concerns around the usage of fossil fuels and increasing waste there is an increased fo...
Bioenergy, derived from biomass and/or biological (or biomass-derived) waste residues, has been ackn...
AbstractThis article briefly reviews the technique of lignocellulosic biomass pyrolysis by using mic...
As a non-traditional heating way, microwave irradiation (MWI) has long been used for lignocellulose ...
In recent years, biomass has been reported to obtain a wide range of value-added products. Biochar c...
The pursuit of sustainable hydrocarbon alternatives to fossil fuels has prompted an acceleration in ...
The past decades have seen an increasing interest in developing pathways to produce bio-based chemic...
A novel continuous microwave irradiation (MWI) pilot-scale reactor was designed specifically for bio...
Lignocellulosic materials provide a raw material source for biofuel conversion and offer several adv...
The agricultural industry faces a permanent increase in waste generation, which is associated with t...
Microwave pyrolysis of biomass has long been recognised to provide potential opportunities for produ...
AbstractThe results of application of microwave (MW) irradiation to achieve refinery of various kind...
Pretreatment of lignocellulosic biomass plays an essential role in bioethanol production as an alter...
Lignocellulosic biomass is an abundant biopolymer in nature as a by-product of agricultural industry...
With raising concerns around the usage of fossil fuels and increasing waste there is an increased fo...
Bioenergy, derived from biomass and/or biological (or biomass-derived) waste residues, has been ackn...
AbstractThis article briefly reviews the technique of lignocellulosic biomass pyrolysis by using mic...
As a non-traditional heating way, microwave irradiation (MWI) has long been used for lignocellulose ...
In recent years, biomass has been reported to obtain a wide range of value-added products. Biochar c...
The pursuit of sustainable hydrocarbon alternatives to fossil fuels has prompted an acceleration in ...
The past decades have seen an increasing interest in developing pathways to produce bio-based chemic...
A novel continuous microwave irradiation (MWI) pilot-scale reactor was designed specifically for bio...
Lignocellulosic materials provide a raw material source for biofuel conversion and offer several adv...
The agricultural industry faces a permanent increase in waste generation, which is associated with t...
Microwave pyrolysis of biomass has long been recognised to provide potential opportunities for produ...
AbstractThe results of application of microwave (MW) irradiation to achieve refinery of various kind...
Pretreatment of lignocellulosic biomass plays an essential role in bioethanol production as an alter...