This paper examines heat recovery in a thermochemical Cu-Cl cycle for efficient hydrogen production. It is essential to recover heat within the Cu-Cl cycle to improve the overall thermal efficiency of the cycle. A major portion of heat recovery can be achieved by cooling and solidifying the molten salt exiting an oxygen reactor. Heat recovery from the molten salt is achieved by dispersing the molten stream into droplets. In this paper, an analytical study and experimental investigation of the thermal phenomena of a falling droplet quenched into water is presented, involving the droplet surface temperature during descent and resulting composition change in the quench process. The results show it is feasible to quench the molten salt droplets...
In this paper, the operating temperature ranges of various solar thermal energy technologies are ana...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
In the thermochemical water splitting process by Cu-Cl cycle, oxygen gas is produced by an endotherm...
This paper examines heat recovery in a thermochemical Cu-Cl cycle for efficient hydrogen production....
This paper investigates the heat transfer and X-ray diffraction patterns of solidified molten salt d...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
An analysis is presented for the heat transfer from molten salt in the copper–chlorine thermochemica...
This paper presents a comparative review of different options for recovering heat from molten CuCl i...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
Heat recovery within the copper–chlorine cycle of hydrogen production is necessary to improve its ov...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
In the present times there is a progressive surge in the energy requirements for industrial and dome...
The present study aims at investigating and simulating the hydrogen cycle production at low temperat...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
In this paper, the operating temperature ranges of various solar thermal energy technologies are ana...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
In the thermochemical water splitting process by Cu-Cl cycle, oxygen gas is produced by an endotherm...
This paper examines heat recovery in a thermochemical Cu-Cl cycle for efficient hydrogen production....
This paper investigates the heat transfer and X-ray diffraction patterns of solidified molten salt d...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
An analysis is presented for the heat transfer from molten salt in the copper–chlorine thermochemica...
This paper presents a comparative review of different options for recovering heat from molten CuCl i...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
Heat recovery within the copper–chlorine cycle of hydrogen production is necessary to improve its ov...
A key challenge facing the future hydrogen economy is a sustainable, lower-cost method of hydrogen p...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
In the present times there is a progressive surge in the energy requirements for industrial and dome...
The present study aims at investigating and simulating the hydrogen cycle production at low temperat...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
In this paper, the operating temperature ranges of various solar thermal energy technologies are ana...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
In the thermochemical water splitting process by Cu-Cl cycle, oxygen gas is produced by an endotherm...