This paper addresses the techno-economic evaluation and optimisation of processes converting lignocellulosic biomass into liquid fuels, through the development of a suitable framework and the modelling and design of Biomass to Liquids (BTL) processes. In particular, the focus is on the production of drop-in fuels through gasification and Fischer-Tropsch (FT) synthesis. Several conversion technologies are presented and evaluated in the literature, but the comparison of different options is hazardous because of the different assumptions and methodologies adopted in each study. A systematic and consistent approach is therefore developed to explore the trade-offs of alternative process configurations and of the operating conditions. The compari...
This work investigates one biochemical and one thermochemical biomass-to-liquid biofuel conversion p...
2nd generation biofuels constitute a promising candidate to provide part of the future demand on ren...
The global energy demand is expected to increase by almost 50% by 2040. Simultaneously, fossil energ...
Biomass is the major source of renewable carbon which can be used to substitute fossil carbon in fue...
The techno-economics of biomass gasification systems for the production of Fischer-Tropsch (FT) base...
This work examines the technical and economic feasibility of Biomass-To-Liquid (BTL) processes for t...
The investigation of 2nd generation biofuels has gained in importance in recent years. Mostly becaus...
With the objective of gaining a better understanding of the system design trade-offs and economics t...
Chemical looping gasification is a promising biomass conversion technology that could produce sustai...
Due to limited biomass availability, the establishment of optimal route biofuel value chains (one co...
Different processes have been proposed to meet the global need for renewable fuel. The Biomass to Li...
A detailed thermo-economic model considering different technological alternatives for the ther-moche...
To address rising climate change problems, one significant task is reducing pollution in the transpo...
The transportation sector in New Zealand accounts for the highest CO2 emission. Replacing the fossil...
Current global energy scenario and the environmental deterioration aspect motivates substituting fos...
This work investigates one biochemical and one thermochemical biomass-to-liquid biofuel conversion p...
2nd generation biofuels constitute a promising candidate to provide part of the future demand on ren...
The global energy demand is expected to increase by almost 50% by 2040. Simultaneously, fossil energ...
Biomass is the major source of renewable carbon which can be used to substitute fossil carbon in fue...
The techno-economics of biomass gasification systems for the production of Fischer-Tropsch (FT) base...
This work examines the technical and economic feasibility of Biomass-To-Liquid (BTL) processes for t...
The investigation of 2nd generation biofuels has gained in importance in recent years. Mostly becaus...
With the objective of gaining a better understanding of the system design trade-offs and economics t...
Chemical looping gasification is a promising biomass conversion technology that could produce sustai...
Due to limited biomass availability, the establishment of optimal route biofuel value chains (one co...
Different processes have been proposed to meet the global need for renewable fuel. The Biomass to Li...
A detailed thermo-economic model considering different technological alternatives for the ther-moche...
To address rising climate change problems, one significant task is reducing pollution in the transpo...
The transportation sector in New Zealand accounts for the highest CO2 emission. Replacing the fossil...
Current global energy scenario and the environmental deterioration aspect motivates substituting fos...
This work investigates one biochemical and one thermochemical biomass-to-liquid biofuel conversion p...
2nd generation biofuels constitute a promising candidate to provide part of the future demand on ren...
The global energy demand is expected to increase by almost 50% by 2040. Simultaneously, fossil energ...