Pyrolysis is a thermochemical process to convert ligno-cellulosic materials into bio-char and pyrolysis oil. This oil can be further upgraded or refined for electricity, transportation fuels and chemicals production. At the time of writing, several demonstration factories are considered worldwide aiming at maturing the technology. Research is focusing on understanding the underlying processes at all relevant scales, ranging from the chemistry of cell wall deconstruction to optimization of pyrolysis factories, in order to produce better quality oils for targeted uses. Among the several bio-oil applications that are currently investigated the production and fermentation of pyrolytic sugars explores the promising interface between thermochemis...
Fast pyrolysis is a promising thermochemical method of producing renewable fuels and chemicals from ...
Biomass materials can be transformed to a gas, a solid or a liquid by pyrolysis, the thermal decompo...
In this short review, we survey the historical progress of fast pyrolysis technologies for...
Pyrolysis is a thermochemical process to convert ligno-cellulosic materials into bio-char and pyroly...
Pyrolysis is a thermochemical process to convert ligno-cellulosic materials into bio-char and pyroly...
Bioenergy is now accepted as having the potential to provide the major part of the projected renewab...
Fast pyrolysis is a method for converting biomass into three energy rich products: char, gas and bio...
There has been an enormous amount of research, in recent years, in the area of thermo-chemical conve...
Robust alternative technology choices are required in the paradigm shift from the current crude oil-...
Biomass fast pyrolysis liquefaction to obtain biological oil is a mixture of water and hundreds of o...
Worldwide depletion of oil reserves has long been a concern, and has sparked the drive to find alter...
Fast pyrolysis of biomass produces bio-oil as a dominant product. However, the yield and composition...
Pyrolysis is the thermal process of decomposition of organic material under elevated temperatures an...
Recent developments in converting biomass to bio-chemicals and liquid fuels provide a promising sigh...
Biomass materials can be transformed to a gas, a solid or a liquid by pyrolysis, the thermal decompo...
Fast pyrolysis is a promising thermochemical method of producing renewable fuels and chemicals from ...
Biomass materials can be transformed to a gas, a solid or a liquid by pyrolysis, the thermal decompo...
In this short review, we survey the historical progress of fast pyrolysis technologies for...
Pyrolysis is a thermochemical process to convert ligno-cellulosic materials into bio-char and pyroly...
Pyrolysis is a thermochemical process to convert ligno-cellulosic materials into bio-char and pyroly...
Bioenergy is now accepted as having the potential to provide the major part of the projected renewab...
Fast pyrolysis is a method for converting biomass into three energy rich products: char, gas and bio...
There has been an enormous amount of research, in recent years, in the area of thermo-chemical conve...
Robust alternative technology choices are required in the paradigm shift from the current crude oil-...
Biomass fast pyrolysis liquefaction to obtain biological oil is a mixture of water and hundreds of o...
Worldwide depletion of oil reserves has long been a concern, and has sparked the drive to find alter...
Fast pyrolysis of biomass produces bio-oil as a dominant product. However, the yield and composition...
Pyrolysis is the thermal process of decomposition of organic material under elevated temperatures an...
Recent developments in converting biomass to bio-chemicals and liquid fuels provide a promising sigh...
Biomass materials can be transformed to a gas, a solid or a liquid by pyrolysis, the thermal decompo...
Fast pyrolysis is a promising thermochemical method of producing renewable fuels and chemicals from ...
Biomass materials can be transformed to a gas, a solid or a liquid by pyrolysis, the thermal decompo...
In this short review, we survey the historical progress of fast pyrolysis technologies for...