In this paper we compare the technical and economical performances of a high temperature proton exchange membrane fuel cell with those of an internal combustion engine for a 10 kW combined heat and power residential application. In a view of social innovation, this solution will create new partnerships of cooperating families aiming to reduce the energy consumption and costs. The energy system is simulated through a lumped model. We compare, in the Italian context, the total daily operating cost and energy savings of each system with respect to the separate purchase of electricity from the grid and production of the thermal energy through a standard boiler. The analysis is carried out with the energy systems operating with both the stand...
Fuel cells have the potential to reduce domestic energy consumption by providing both heat and elect...
In this study a micro-combined-heat-and-power (micro-CHP) system is coupled to a vapor-compression h...
The world\u2019s demand of energy is projected to double by 2050 in accordance with population growt...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Combined Heat and Power (CHP) systems are spreading across the entire European Union and private and...
Electricity demand is growing very strongly this is due to the increase in electricity consumption i...
This work aims to analyse the techno-economic performance of an integrated system for a residential ...
A proposed residential energy system based on the PBI (Polybenzimidazole) fuel cell technology is an...
Fuel cells have the potential to reduce domestic energy consumption by providing both heat and elect...
In this study a micro-combined-heat-and-power (micro-CHP) system is coupled to a vapor-compression h...
The world\u2019s demand of energy is projected to double by 2050 in accordance with population growt...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
In this paper we compare the technical and economical performances of a high temperature proton exch...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Proton exchange membrane fuel cells are a promising and mature technology for combined heat and powe...
Combined Heat and Power (CHP) systems are spreading across the entire European Union and private and...
Electricity demand is growing very strongly this is due to the increase in electricity consumption i...
This work aims to analyse the techno-economic performance of an integrated system for a residential ...
A proposed residential energy system based on the PBI (Polybenzimidazole) fuel cell technology is an...
Fuel cells have the potential to reduce domestic energy consumption by providing both heat and elect...
In this study a micro-combined-heat-and-power (micro-CHP) system is coupled to a vapor-compression h...
The world\u2019s demand of energy is projected to double by 2050 in accordance with population growt...