Thermochemical conversion technologies are promising pathways for producing environmentally benign, sustainable biofuels and value-added chemicals from biomass. However, reaction pathways and chemistry behind these technologies such as pyrolysis and solvolysis of biomass are very complex. Contributing to the complexity are the many factors that could affect the reaction mechanisms. This research focuses on an external effect on thermal decomposition and internal reaction chemistry to provide an insight into the biomass decomposition for better performance. First, the effect of low concentration of oxygen in sweep gas during biomass pyrolysis in fluidized bed was investigated for practical purpose. It was found that the partial oxidative pyr...
The pyrolysis of biomass is a very effective means of energy densification. With the bio-char return...
The chapter focuses on recent trends of biomass conversion into valuable energy, chemicals, gaseous ...
dissertationLignocellulosic biomass can be upgraded via pyrolysis, yielding biochar as a value-added...
Current biorefineries utilize only sugars or lipids in biomass for fuel production, leaving protein-...
Thermochemical conversion technologies are promising pathways for producing environmentally benign, ...
The increasing industrialization and motorization of the world has led to a steep rise in the demand...
Co-pyrolysis of biomass with plastic is a promising pathway to produce pyrolysis oil with improved q...
Fast pyrolysis is a promising method for producing advanced biofuels and chemicals from lignocellulo...
Valorization of lignocellulosic biomass to renewable biofuels provides a promising solution to addre...
Modern industrialization has resulted in an ever-increasing demand for petroleum-based fuel producti...
Bio-oil produced from pyrolysis of lignocellulose biomass is regarded as a potential intermediate to...
Thermochemical processing of biomass uses heat and catalysts to transform plant polymers into fuels,...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
The increasing demand for energy, the consequential depletion of fossil fuels, and the generation of...
Finding renewable alternatives to fossil fuels is one of the most important challenges of the twenty...
The pyrolysis of biomass is a very effective means of energy densification. With the bio-char return...
The chapter focuses on recent trends of biomass conversion into valuable energy, chemicals, gaseous ...
dissertationLignocellulosic biomass can be upgraded via pyrolysis, yielding biochar as a value-added...
Current biorefineries utilize only sugars or lipids in biomass for fuel production, leaving protein-...
Thermochemical conversion technologies are promising pathways for producing environmentally benign, ...
The increasing industrialization and motorization of the world has led to a steep rise in the demand...
Co-pyrolysis of biomass with plastic is a promising pathway to produce pyrolysis oil with improved q...
Fast pyrolysis is a promising method for producing advanced biofuels and chemicals from lignocellulo...
Valorization of lignocellulosic biomass to renewable biofuels provides a promising solution to addre...
Modern industrialization has resulted in an ever-increasing demand for petroleum-based fuel producti...
Bio-oil produced from pyrolysis of lignocellulose biomass is regarded as a potential intermediate to...
Thermochemical processing of biomass uses heat and catalysts to transform plant polymers into fuels,...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
The increasing demand for energy, the consequential depletion of fossil fuels, and the generation of...
Finding renewable alternatives to fossil fuels is one of the most important challenges of the twenty...
The pyrolysis of biomass is a very effective means of energy densification. With the bio-char return...
The chapter focuses on recent trends of biomass conversion into valuable energy, chemicals, gaseous ...
dissertationLignocellulosic biomass can be upgraded via pyrolysis, yielding biochar as a value-added...