In this paper, a detailed thermodynamic equilibrium and efficiency analysis of the MnSO4/MnO water splitting (WS) cycle is carried out using HSC Chemistry software. By drifting the molar flow rate of inert Ar (n Ar) and thermal reduction temperature (TH), the thermodynamic compositions related to both thermal reduction (TR) and WS steps are identified. Moreover, the consequence of TH, n Ar, and WS temperature (TL) on the process parameters associated with the cycle is also inspected. The obtained results denote that this cycle can attain a solar-to-fuel energy conversion efficiency () up to 45.3% if the TR and WS steps are conducted at 1573 K and 550 K, respectively. By employing heat recuperation up to 10, 30, and 50%, the solar to fuel of...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
The main objective of this work is to develop a hybrid water-splitting cycle that employs the photon...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
By utilizing the data obtained from the HSC Chemistry software, the thermodynamic equilibrium and ef...
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 iro...
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 Str...
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...
Production of H2 via water splitting reaction driven by concentrated solar power is one of the promi...
There are three primary reactions in the sodium manganese oxide high temperature water splitting cyc...
In this paper, solar reactor efficiency analysis of the solar thermochemical two-step zinc oxide-zin...
This paper reports the effect of Ar molar flow-rate on thermodynamic efficiency analysis of zinc oxi...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
The main objective of this work is to develop a hybrid water-splitting cycle that employs the photon...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
By utilizing the data obtained from the HSC Chemistry software, the thermodynamic equilibrium and ef...
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 iro...
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 Str...
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...
Production of H2 via water splitting reaction driven by concentrated solar power is one of the promi...
There are three primary reactions in the sodium manganese oxide high temperature water splitting cyc...
In this paper, solar reactor efficiency analysis of the solar thermochemical two-step zinc oxide-zin...
This paper reports the effect of Ar molar flow-rate on thermodynamic efficiency analysis of zinc oxi...
This paper reports a thermodynamic comparison between the samarium and erbium oxide based solar ther...
In this paper computational thermodynamics modeling of the solar H2 production via twostep thermoche...
The main objective of this work is to develop a hybrid water-splitting cycle that employs the photon...