A new predictive model is developed in this paper to analyze the height of the reactor for continuous production of copper oxy-chloride in the thermochemical Cu–Cl cycle for hydrogen production. The volumetric phase fraction is used to develop an energy balance and integrated spatially to determine the inlet temperature of nitrogen and steam mixtures for continuous production of copper oxy-chloride. The effects of the ratio of mixing power to mass of the suspended particle, the ratio of interfacial surface area of the gas film to the volume of liquid, and diameter of the steam/nitrogen bubble in the reactor, on the height of the reactor are reported for a production capacity of 3 kg of hydrogen per day. Results indicate that a smaller ratio...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
Advancement of the thermochemical copper–chlorine (Cu–Cl) cycle for hydrogen production is reviewed ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper performs a thermodynamic equilibrium analysis of individual steps within the copper–chlor...
This paper focuses on the various development areas of the copper-chlorine (Cu–Cl) cycle for hydroge...
The thermochemical copper-chlorine (Cu-Cl) cycle is considered as a sustainable and efficient techno...
The copper-chlorine cycle is one of the most promising thermochemical cycles to produce hydrogen. In...
In the thermochemical water splitting process by Cu-Cl cycle, oxygen gas is produced by an endotherm...
This paper presents new experimental data and modeling of a copper(II) chloride (CuCl2) hydrolysis r...
Issues related to equipment scale-up and process simulation are described for a thermochemical cycle...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
The impact of exit streams containing byproducts of incomplete reactions in an integrated thermochem...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
Advancement of the thermochemical copper–chlorine (Cu–Cl) cycle for hydrogen production is reviewed ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper performs a thermodynamic equilibrium analysis of individual steps within the copper–chlor...
This paper focuses on the various development areas of the copper-chlorine (Cu–Cl) cycle for hydroge...
The thermochemical copper-chlorine (Cu-Cl) cycle is considered as a sustainable and efficient techno...
The copper-chlorine cycle is one of the most promising thermochemical cycles to produce hydrogen. In...
In the thermochemical water splitting process by Cu-Cl cycle, oxygen gas is produced by an endotherm...
This paper presents new experimental data and modeling of a copper(II) chloride (CuCl2) hydrolysis r...
Issues related to equipment scale-up and process simulation are described for a thermochemical cycle...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
The impact of exit streams containing byproducts of incomplete reactions in an integrated thermochem...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
Advancement of the thermochemical copper–chlorine (Cu–Cl) cycle for hydrogen production is reviewed ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...