Production of H2 via water splitting reaction driven by concentrated solar power is one of the promising ways to fulfill the future energy demand. In this investigation, the cerium oxide-cerium sulfate H2O splitting (WS) cycle was thermodynamically analyzed and the obtained outcomes were compared with the formerly researched WS cycles. The thermodynamic calculations associated with the efficiency analysis were carried out by using HSC Chemistry thermodynamic software. The equilibrium compositions allied with the thermal reduction (TR) and WS steps were identified. The effect of molar flow rate of inert Ar (n Ar) on the temperature desirable for the ample dissociation of cerium sulfate was explored. Additionally, the influence of TR (TH) and...
AbstractThermochemical two-step water splitting cycle by concentrated solar heat has been studied as...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
This article reports the thermodynamic efficiency analysis of the strontium oxide strontium sulfate ...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical Str...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
The computational thermodynamic analysis of a samarium oxide-based two-step solar thermochemical wat...
The erbium oxide based water splitting (Eb-WS) cycle was thermodynamically studied by using the HSC ...
This paper discusses the hydrogen production using a solar driven thermochemical cycle. The thermoch...
In this paper, the solar thermochemical copper oxide - copper sulfate (CO-CS) water splitting cycle ...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
AbstractThermochemical two-step water splitting cycle by concentrated solar heat has been studied as...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
This article reports the thermodynamic efficiency analysis of the strontium oxide strontium sulfate ...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical Str...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
The computational thermodynamic analysis of a samarium oxide-based two-step solar thermochemical wat...
The erbium oxide based water splitting (Eb-WS) cycle was thermodynamically studied by using the HSC ...
This paper discusses the hydrogen production using a solar driven thermochemical cycle. The thermoch...
In this paper, the solar thermochemical copper oxide - copper sulfate (CO-CS) water splitting cycle ...
Solar CO2/H2O splitting via two-step thermochemical cycles of metal oxides is a promising path for s...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
AbstractThermochemical two-step water splitting cycle by concentrated solar heat has been studied as...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...
The ease of transportation and high power density create the basis for hydrocarbon fuels’ privileged...