This work investigates the thermodynamic feasibility of the integration of a cryogenic Air Separation unit (ASU) with a Waste-to-Energy (WtE) power plant in order to enhance the combustion with an oxygen enriched air flow. The main benefit of using oxygen enrichment in an incineration system is represented by the reduction of the sensible heat as the quantity of nitrogen in the flue gas will be decreased. In addition, the possibility to exploit the secondary products of the cryogenic separation as part of Liquid Air Energy Storage (LAES) system has been considered. To further improve the thermal efficiency and net power output of the waste to energy system, different cycle configurations have been modelled; the thermodynamics and processes ...
This article proposes the novel integration of an advanced configuration of Liquid Air Energy Storag...
This diploma thesis is focused on the design of technological modifications of the existing industri...
AbstractOxy-combustion is presently considered as the most promising technology to enable the captur...
This case study analyzes a cryogenic air separation unit (ASU) with a production of V˙O2=58,300 [m3N...
This work investigates the thermodynamic feasibility of an integrated energy system consisting of a ...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
The present study is centered around the problem of carbon dioxide capture and storage considered as...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
Oxy combustion is the most promising technology for carbon dioxide, originated from thermal power pl...
Liquid Air Energy Storage (LAES) is a novel energy storage system that stocks up energy by means of ...
In this paper, the potential of improving the energy efficiency of a conventional cryogenic air sepa...
Improving the efficiency of waste-to-energy combined heat and power plants increases their productio...
This report investigates the eligibility of oxygen carrier materials of oxygen-uncoupled nature (exe...
Oxygen production in cryogenic air separation units is related to a significant carbon footprint and...
This article proposes the novel integration of an advanced configuration of Liquid Air Energy Storag...
This diploma thesis is focused on the design of technological modifications of the existing industri...
AbstractOxy-combustion is presently considered as the most promising technology to enable the captur...
This case study analyzes a cryogenic air separation unit (ASU) with a production of V˙O2=58,300 [m3N...
This work investigates the thermodynamic feasibility of an integrated energy system consisting of a ...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
The present study is centered around the problem of carbon dioxide capture and storage considered as...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
A techno-economic analysis was carried out to assess the oxy-fuel conversion of eight major coal-fir...
Oxy combustion is the most promising technology for carbon dioxide, originated from thermal power pl...
Liquid Air Energy Storage (LAES) is a novel energy storage system that stocks up energy by means of ...
In this paper, the potential of improving the energy efficiency of a conventional cryogenic air sepa...
Improving the efficiency of waste-to-energy combined heat and power plants increases their productio...
This report investigates the eligibility of oxygen carrier materials of oxygen-uncoupled nature (exe...
Oxygen production in cryogenic air separation units is related to a significant carbon footprint and...
This article proposes the novel integration of an advanced configuration of Liquid Air Energy Storag...
This diploma thesis is focused on the design of technological modifications of the existing industri...
AbstractOxy-combustion is presently considered as the most promising technology to enable the captur...