The need for green renewable sources is adamant because of the adverse effects of the increasing use of fossil fuels on our society. Biomass has been considered as a very attractive candidate for green energy carriers, chemicals and materials. The development of cheap and efficient fractionation technology to separate biomass into its main constituents is highly desirable. It enables treatment of each constituent separately, using dedicated conversion technologies to get specific target chemicals. The synergistic combination of aquathermolysis (hot pressurised water treatment) and pyrolysis (thermal degradation in the absence of oxygen) is a promising thermolysis option, integrating fractionation of biomass with production of valuable chemi...
Producción CientíficaBiomass fractionation into its individual building blocks poses a major challen...
Pyrolysis converts a wide array of feedstock into a mixture of products which can be used by microor...
Thermochemical conversion technologies are promising pathways for producing environmentally benign, ...
The need for green renewable sources is adamant because of the adverse effects of the increasing use...
The need for green renewable sources is adamant because of the adverse effects of the increasing use...
The need for a renewable ‘green’ chemistry is adamant because of the adverse effects of the increasi...
Cellulose and hemicelluloses contained in woody biomass can be hydrolysed to monomeric sugars, which...
Pyrolysis of lignocellulosic biomass leads to an array Of useful solid, liquid and gaseous products....
There is a need for replacement of fuel, especially transportation fuel, obtained from fossil resour...
Moving towards a sustainable and green economy requires the use of renewable resources for the produ...
The increasing industrialization and motorization of the world has led to a steep rise in the demand...
Biomass is a valuable, sustainable feedstock for the production of chemicals and materials, and will...
A novel process coupling the fractionation and hydrolysis reactors is presented. Holm oak was used a...
Lignocellulosic biomass is mainly composed of three components including cellulose, hemicellulose, a...
Instigated by environmental concerns and resource scarcity, a shift towards a circular, bio-based ec...
Producción CientíficaBiomass fractionation into its individual building blocks poses a major challen...
Pyrolysis converts a wide array of feedstock into a mixture of products which can be used by microor...
Thermochemical conversion technologies are promising pathways for producing environmentally benign, ...
The need for green renewable sources is adamant because of the adverse effects of the increasing use...
The need for green renewable sources is adamant because of the adverse effects of the increasing use...
The need for a renewable ‘green’ chemistry is adamant because of the adverse effects of the increasi...
Cellulose and hemicelluloses contained in woody biomass can be hydrolysed to monomeric sugars, which...
Pyrolysis of lignocellulosic biomass leads to an array Of useful solid, liquid and gaseous products....
There is a need for replacement of fuel, especially transportation fuel, obtained from fossil resour...
Moving towards a sustainable and green economy requires the use of renewable resources for the produ...
The increasing industrialization and motorization of the world has led to a steep rise in the demand...
Biomass is a valuable, sustainable feedstock for the production of chemicals and materials, and will...
A novel process coupling the fractionation and hydrolysis reactors is presented. Holm oak was used a...
Lignocellulosic biomass is mainly composed of three components including cellulose, hemicellulose, a...
Instigated by environmental concerns and resource scarcity, a shift towards a circular, bio-based ec...
Producción CientíficaBiomass fractionation into its individual building blocks poses a major challen...
Pyrolysis converts a wide array of feedstock into a mixture of products which can be used by microor...
Thermochemical conversion technologies are promising pathways for producing environmentally benign, ...