An analysis is reported of a design for a local exhaust ventilation system for the molten cuprous chloride pouring station in an industrial plant. Heat recovery from molten cuprous chloride is a key process within the copper–chlorine (Cu–Cl) cycle of thermochemical water splitting for hydrogen production. Because of particulate matter, dust, and vapors emitted by the molten salt, an effective and safe design is crucial. The design process involves calculating duct diameters to provide the desired duct air velocity through the system. The static pressure is evaluated so that the fan size can be determined. An adequate supply of makeup air must be provided to replace the air exhausted through the ventilation system. The economics of the venti...
A novel integrated system for the production of hydrogen at a high pressure utilizing steel furnace ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
The copper–chlorine (Cu–Cl) thermochemical hydrogen production cycle consists of three chemical reac...
An analysis is reported of a design for a local exhaust ventilation system for the molten cuprous ch...
An analysis is presented for the heat transfer from molten salt in the copper–chlorine thermochemica...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
This paper presents a comparative review of different options for recovering heat from molten CuCl i...
In this paper, the operating temperature ranges of various solar thermal energy technologies are ana...
Hydrogen is known as a clean energy carrier which has the potential to play a major role in addressi...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
Heat recovery within the copper–chlorine cycle of hydrogen production is necessary to improve its ov...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
In a foundry casting line, contaminants are released from a large area. Casting fumes include both v...
Electroplating industry is known as the industry that used chemicals in their process of production....
A novel integrated system for the production of hydrogen at a high pressure utilizing steel furnace ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
The copper–chlorine (Cu–Cl) thermochemical hydrogen production cycle consists of three chemical reac...
An analysis is reported of a design for a local exhaust ventilation system for the molten cuprous ch...
An analysis is presented for the heat transfer from molten salt in the copper–chlorine thermochemica...
The copper–chlorine (Cu–Cl) cycle of thermochemical hydrogen production requires heat recovery from ...
It is important to recover heat within the copper–chlorine cycle of hydrogen production to improve i...
This paper presents a comparative review of different options for recovering heat from molten CuCl i...
In this paper, the operating temperature ranges of various solar thermal energy technologies are ana...
Hydrogen is known as a clean energy carrier which has the potential to play a major role in addressi...
A new predictive model is developed in this paper to analyze the height of the reactor for continuou...
Heat recovery within the copper–chlorine cycle of hydrogen production is necessary to improve its ov...
This paper examines selected design issues associated with reactor scale-up in the thermochemical co...
In a foundry casting line, contaminants are released from a large area. Casting fumes include both v...
Electroplating industry is known as the industry that used chemicals in their process of production....
A novel integrated system for the production of hydrogen at a high pressure utilizing steel furnace ...
This paper examines the evaporative drying of aqueous cupric chloride (CuCl2) droplets in the copper...
The copper–chlorine (Cu–Cl) thermochemical hydrogen production cycle consists of three chemical reac...