The interactions of biomass constituents (hemicellulose, cellulose and lignin) were investigated during fast pyrolysis at 800 °C in a fixed bed reactor. The formation of polycyclic aromatic hydrocarbons (PAH) as well as mass distribution and gas products is presented. The possible interactions of biomass constituents were compared with the results of the expected results based on the pyrolysis of single components. For the interaction of xylan and cellulose, the mass distribution was similar to that expected from calculation of single component addition, however, PAH were increased. The interaction of xylan and lignin produced a decrease in PAH concentration compared to that expected from single component data. There was evidence of strong ...
[[abstract]]A study has been made of the effect of additives to the fuel of a turbulent diffusion fl...
The identification and quantification of 20 different polynuclear aromatic hydrocarbons (PAHs) in th...
International audienceCellulose, lignin and their mixture were pyrolyzed at 500–700 °C for 60 s and ...
The interactions of biomass constituents (hemicellulose, cellulose and lignin) were investigated dur...
The interactions of polyvinyl chloride (PVC) and biomass components (hemi-cellulose, cellulose and l...
Fast pyrolysis is an industrially attractive method to produce fuels and chemicals from biomass; how...
The formation of 2-4 ring polycyclic aromatic hydrocarbons (PAH) from the pyrolysis of nine differen...
The global demand of the volume of woody biomass (such as wood, logging residue, sawdust and so on) ...
Biochar addition to soil can lead to potential environmental risks due to its content of polycyclic ...
The three primary lignocellulosic biomass components (cellulose, xylan and lignin), synthetic biomas...
Cellulose, hemicellulose and lignin are the three major components of biomass, constituting about 85...
Previously, the primary product distribution resulting from fast pyrolysis of cellulose, hemicellulo...
Previously, the primary product distribution resulting from fast pyrolysis of cellulose, hemicellulo...
The products from slow pyrolysis of birch hardwood are promising to be used for various purposes, in...
This paper presents a review of the recent advances in research on the interactions between the comp...
[[abstract]]A study has been made of the effect of additives to the fuel of a turbulent diffusion fl...
The identification and quantification of 20 different polynuclear aromatic hydrocarbons (PAHs) in th...
International audienceCellulose, lignin and their mixture were pyrolyzed at 500–700 °C for 60 s and ...
The interactions of biomass constituents (hemicellulose, cellulose and lignin) were investigated dur...
The interactions of polyvinyl chloride (PVC) and biomass components (hemi-cellulose, cellulose and l...
Fast pyrolysis is an industrially attractive method to produce fuels and chemicals from biomass; how...
The formation of 2-4 ring polycyclic aromatic hydrocarbons (PAH) from the pyrolysis of nine differen...
The global demand of the volume of woody biomass (such as wood, logging residue, sawdust and so on) ...
Biochar addition to soil can lead to potential environmental risks due to its content of polycyclic ...
The three primary lignocellulosic biomass components (cellulose, xylan and lignin), synthetic biomas...
Cellulose, hemicellulose and lignin are the three major components of biomass, constituting about 85...
Previously, the primary product distribution resulting from fast pyrolysis of cellulose, hemicellulo...
Previously, the primary product distribution resulting from fast pyrolysis of cellulose, hemicellulo...
The products from slow pyrolysis of birch hardwood are promising to be used for various purposes, in...
This paper presents a review of the recent advances in research on the interactions between the comp...
[[abstract]]A study has been made of the effect of additives to the fuel of a turbulent diffusion fl...
The identification and quantification of 20 different polynuclear aromatic hydrocarbons (PAHs) in th...
International audienceCellulose, lignin and their mixture were pyrolyzed at 500–700 °C for 60 s and ...