The objective of this program is to develop an economical process for hydrogen production, with no additional carbon dioxide emission, through the thermal decomposition of hydrogen sulfide (H{sub 2}S) in H{sub 2}S-rich waste streams to high-purity hydrogen and elemental sulfur. The novel feature of the process being developed is the superadiabatic combustion (SAC) of part of the H{sub 2}S in the waste stream to provide the thermal energy required for the decomposition reaction such that no additional energy is required. The program is divided into two phases. In Phase 1, detailed thermochemical and kinetic modeling of the SAC reactor with H{sub 2}S-rich fuel gas and air/enriched air feeds is undertaken to evaluate the effects of operating c...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
Part I of this paper analyzed sub-quality natural gas (SQNG) pyrolysis and autothermal pyrolysis. Pr...
OAK-B135 A significant ''Hydrogen Economy'' is predicted that will reduce our dependence on petroleu...
• Demonstrate the feasibility of the superadiabatic partial oxidation concept as a basis for develop...
Portions of a bench-scale model of a sulfur-iodine thermochemical water-splitting cycle have been op...
The Hybrid Sulfur (HyS) Thermochemical Process is a means of producing hydrogen via water-splitting ...
Because of the high demand for hydrogen in the oil industries, new technologies for hydrogen product...
This report documents a detailed study to determine the expected efficiency and product costs for pr...
OAK B188 High Efficiency Generation of Hydrogen Fuels using Nuclear Power for the period May 1, 2002...
The production of hydrogen via the thermochemical splitting of water is being considered as a primar...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
As the prices of fossil fuel increase, abundant sub quality natural gas (SQNG) resources become impo...
Thesis (M.Ing. (Nuclear Engineering))--North-West University, Potchefstroom Campus, 2009.The utilisa...
The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for h...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
Part I of this paper analyzed sub-quality natural gas (SQNG) pyrolysis and autothermal pyrolysis. Pr...
OAK-B135 A significant ''Hydrogen Economy'' is predicted that will reduce our dependence on petroleu...
• Demonstrate the feasibility of the superadiabatic partial oxidation concept as a basis for develop...
Portions of a bench-scale model of a sulfur-iodine thermochemical water-splitting cycle have been op...
The Hybrid Sulfur (HyS) Thermochemical Process is a means of producing hydrogen via water-splitting ...
Because of the high demand for hydrogen in the oil industries, new technologies for hydrogen product...
This report documents a detailed study to determine the expected efficiency and product costs for pr...
OAK B188 High Efficiency Generation of Hydrogen Fuels using Nuclear Power for the period May 1, 2002...
The production of hydrogen via the thermochemical splitting of water is being considered as a primar...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
As the prices of fossil fuel increase, abundant sub quality natural gas (SQNG) resources become impo...
Thesis (M.Ing. (Nuclear Engineering))--North-West University, Potchefstroom Campus, 2009.The utilisa...
The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for h...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
Decomposition of sulphuric acid is a key step of sulphur based thermochemical cycles for hydrogen pr...
Part I of this paper analyzed sub-quality natural gas (SQNG) pyrolysis and autothermal pyrolysis. Pr...
OAK-B135 A significant ''Hydrogen Economy'' is predicted that will reduce our dependence on petroleu...