This article reports the thermodynamic efficiency analysis of the strontium oxide strontium sulfate (SrO-SrS) water splitting cycle by applying the principles of the second law of thermodynamics and by utilizing the commercially available HSC Chemistry software. Initially, the thermodynamic equilibrium compositions allied with a) the thermal reduction of SrSO 4 , b) H 2 production via water splitting reaction (through SrO re-oxidation) are recognized. Moreover, the temperatures desirable for performing the thermal reduction and the water splitting steps are determined. The consequence of the molar flow rate of Ar on the thermal reduction of SrSO 4 is also examined in detail. The effect of the thermal reduction and water splitting temperatur...
The erbium oxide based water splitting (Eb-WS) cycle was thermodynamically studied by using the HSC ...
In this paper thermodynamic feasibility of the production of solar fuel via SnO2/SnO based thermoche...
Solar energy underlies significant diurnal and seasonal fluctuations and hence requires qualified st...
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...
Production of H2 via water splitting reaction driven by concentrated solar power is one of the promi...
The computational thermodynamic analysis of a samarium oxide-based two-step solar thermochemical wat...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
There are many studies related on the SnO2/SnO based solar thermochemical water splitting cycle, how...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
In this paper, a detailed thermodynamic equilibrium and efficiency analysis of the MnSO4/MnO water s...
Solar thermal water splitting (STWS) is a process which utilizes concentrated sun-light to drive the...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
In this paper, solar reactor efficiency analysis of the solar thermochemical two-step zinc oxide-zin...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
The erbium oxide based water splitting (Eb-WS) cycle was thermodynamically studied by using the HSC ...
In this paper thermodynamic feasibility of the production of solar fuel via SnO2/SnO based thermoche...
Solar energy underlies significant diurnal and seasonal fluctuations and hence requires qualified st...
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...
Production of H2 via water splitting reaction driven by concentrated solar power is one of the promi...
The computational thermodynamic analysis of a samarium oxide-based two-step solar thermochemical wat...
This paper reports the thermodynamic analysis of solar H2 production via two-step thermochemical iro...
There are many studies related on the SnO2/SnO based solar thermochemical water splitting cycle, how...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
In this paper, a detailed thermodynamic equilibrium and efficiency analysis of the MnSO4/MnO water s...
Solar thermal water splitting (STWS) is a process which utilizes concentrated sun-light to drive the...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
In this paper, solar reactor efficiency analysis of the solar thermochemical two-step zinc oxide-zin...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
The erbium oxide based water splitting (Eb-WS) cycle was thermodynamically studied by using the HSC ...
In this paper thermodynamic feasibility of the production of solar fuel via SnO2/SnO based thermoche...
Solar energy underlies significant diurnal and seasonal fluctuations and hence requires qualified st...