The production of hydrogen from hydrogen sulphide has a twofold goal as it can be seen as a challenging opportunity for combining hydrogen recovery with the abatement of a highly toxic pollutant. Despite the thermodynamics encourage hydrogen sulphide splitting with respect to water splitting, no hydrogen sulphide dissociation process proving a net superiority with respect to others has been exploited at large scale yet. This paper aims at surveying the most important techniques being proposed for hydrogen sulphide splitting, with a particular attention to chemical methods that seem to be promising candidates for real industrial applications. Several processes based on thermal dissociation, catalytic cracking, multistep thermochemical method...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Photocatalytic water splitting is a sustainable technology for the production of clean fuel in terms...
The dissociation of gaseous hydrogen sulphide (H2S) into its components is an energy intensive proce...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
Hydrogen production by water splitting is a holy grail of science, being one route to a non-fossil f...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
The growing demand for energy and stringent pollutant emission control in sour fuels makes it essent...
This paper describes a new hydrogen production process using UV photolysis of aqueous ammonium sulfi...
Hydrogen is currently being used in many industries, from chemical and refining to metallurgical, gl...
Zero emission energy production systems are the main goal of engineering and research efforts. The u...
This paper examines photocatalytic hydrogen production as a clean energy solution to address challen...
Because of the high demand for hydrogen in the oil industries, new technologies for hydrogen product...
In order to elucidate the mechanism of hydrogen sulphide oxidation, the photo-oxidation and thermal ...
A new thermochemical water-splitting process named \u22Sb-I Process\u22 was proposed on the basis of...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Photocatalytic water splitting is a sustainable technology for the production of clean fuel in terms...
The dissociation of gaseous hydrogen sulphide (H2S) into its components is an energy intensive proce...
The first technical developments on thermochemical cycles for hydrogen production are based on the u...
Hydrogen production by water splitting is a holy grail of science, being one route to a non-fossil f...
The photocatalytic production of hydrogen represents a fascinating way to convert and store solar en...
The growing demand for energy and stringent pollutant emission control in sour fuels makes it essent...
This paper describes a new hydrogen production process using UV photolysis of aqueous ammonium sulfi...
Hydrogen is currently being used in many industries, from chemical and refining to metallurgical, gl...
Zero emission energy production systems are the main goal of engineering and research efforts. The u...
This paper examines photocatalytic hydrogen production as a clean energy solution to address challen...
Because of the high demand for hydrogen in the oil industries, new technologies for hydrogen product...
In order to elucidate the mechanism of hydrogen sulphide oxidation, the photo-oxidation and thermal ...
A new thermochemical water-splitting process named \u22Sb-I Process\u22 was proposed on the basis of...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Associated with the rise in energy demand is the increase in the amount of H2S evolved to the enviro...
Photocatalytic water splitting is a sustainable technology for the production of clean fuel in terms...