Carbon capture and storage is considered of fundamental importance to achieve a remarkable decarbonisation of steel, cement and refining sectors. To operate carbon capture and storage at scale and address its inherent complexity, mathematical programming techniques can be exploited to optimise such systems. This contribution proposes a Europe-wide, spatially-explicit, time-dependent, carbon capture and storage chains optimisation, based on mixed integer linear programming architecture. Capture plants can be installed in all significant industrial CO2 emitters, which comprise 25 steel mills, 111 cement plants and 59 refineries. A techno-economic description of capture plants is provided, based on scale effects and different options. Transpor...
Carbon capture and storage is widely recognised as a promising technology for decarbonising the ener...
Carbon capture and sequestration represents a key decarbonisation option, particularly for large-sca...
We present a mixed integer, multi-period, cost-minimising model for a carbon capture, transport and ...
Carbon capture and storage is considered of fundamental importance to achieve a remarkable decarboni...
Power, steel, cement and refining sectors are currently responsible for the largest shares of carbon...
Carbon capture and storage technologies are key to remove carbon dioxide emissions from hard-to-deca...
Diminishing the anthropogenic generation of greenhouse gases is one of the key challenges of the twe...
The global anthropogenic emissions of greenhouse gasses experienced an exponential increase compared...
Carbon capture and storage is considered a key option for decarbonising the energy sector. However, ...
This work presents a novel optimization framework for the optimal design of carbon capture, transpor...
The global anthropogenic generation of greenhouse gasses experienced an exponential increase compare...
European large stationary sources are currently emitting more than 1.4 Gt of CO2 every year. A signi...
European large stationary sources are currently emitting more than 1.4 Gtons of CO2 every year. A si...
In this work, we develop a mixed integer linear optimization model that can be used to select approp...
In this Master Thesis a model based on mixed integer linear programming has been developed that aims...
Carbon capture and storage is widely recognised as a promising technology for decarbonising the ener...
Carbon capture and sequestration represents a key decarbonisation option, particularly for large-sca...
We present a mixed integer, multi-period, cost-minimising model for a carbon capture, transport and ...
Carbon capture and storage is considered of fundamental importance to achieve a remarkable decarboni...
Power, steel, cement and refining sectors are currently responsible for the largest shares of carbon...
Carbon capture and storage technologies are key to remove carbon dioxide emissions from hard-to-deca...
Diminishing the anthropogenic generation of greenhouse gases is one of the key challenges of the twe...
The global anthropogenic emissions of greenhouse gasses experienced an exponential increase compared...
Carbon capture and storage is considered a key option for decarbonising the energy sector. However, ...
This work presents a novel optimization framework for the optimal design of carbon capture, transpor...
The global anthropogenic generation of greenhouse gasses experienced an exponential increase compare...
European large stationary sources are currently emitting more than 1.4 Gt of CO2 every year. A signi...
European large stationary sources are currently emitting more than 1.4 Gtons of CO2 every year. A si...
In this work, we develop a mixed integer linear optimization model that can be used to select approp...
In this Master Thesis a model based on mixed integer linear programming has been developed that aims...
Carbon capture and storage is widely recognised as a promising technology for decarbonising the ener...
Carbon capture and sequestration represents a key decarbonisation option, particularly for large-sca...
We present a mixed integer, multi-period, cost-minimising model for a carbon capture, transport and ...