Methane pyrolysis is one of the possible methods to produce low-carbon hydrogen. One of the most promising catalysts for methane pyrolysis is Fe due to its availability, relatively low cost and high working temperature. In the presented paper, the methane pyrolysis on unsupported (without a carrier) sponge iron in the form of powder was studied in the temperature range of 700–1100 ◦ C. Methane pyrolysis was carried out in a stainless-steel tube reactor with an inner diameter of 10 mm. The reactor was heated locally by propane burner, the length of the heated zone was about 8 cm along the reactor tube. Methane feed rates were about 50, 100, and 200 ml/min, and the residence time of methane in the 8 cm long reaction zone was about 4, 2 and 1 ...
The purpose of our design project is to produce a high purity hydrogen product that emits a low conc...
The overall energy efficiency of the production of pure hydrogen using the pyrolysis oil driven stea...
Hydrogen production plants are among major sources of CO2 emissions into the atmosphere. The objecti...
Using natural gas and sustainable biogas as feed, high-temperature pyrolysis represents a potential ...
Beside steam reforming, methane pyrolysis is an alternative method for hydrogen production. ‘Turquoi...
AbstractIn this paper, iron-based catalysts, calcined at different temperatures (300–800°C), support...
Nowadays, nearly 50% of the hydrogen produced worldwide comes from Steam Methane Reforming (SMR) at ...
Figures 4, 5, 8 & 9 are re-used with the author's permission. Figures 1, 2, 3, 6 & 7 have been remov...
Nowadays, nearly 50% of the hydrogen produced worldwide comes from Steam Methane Reforming (SMR) at ...
The production of methane through the optimization of various operating parameters and the use of di...
Close to 80% of hydrogen is currently produced through emissions-intensive natural gas reforming and...
Decarbonisation of the iron and steel industry would require the use of innovative low-carbon produc...
In this paper, iron-based catalysts, calcined at different temperatures (300–800 °C), supported over...
One leading strategy for developing net-zero carbon emission technologies is to avoid burning fossil...
13 pags., 11 figs., 1 tab.Experiments to investigate the catalytic pyrolysis of methane using an iro...
The purpose of our design project is to produce a high purity hydrogen product that emits a low conc...
The overall energy efficiency of the production of pure hydrogen using the pyrolysis oil driven stea...
Hydrogen production plants are among major sources of CO2 emissions into the atmosphere. The objecti...
Using natural gas and sustainable biogas as feed, high-temperature pyrolysis represents a potential ...
Beside steam reforming, methane pyrolysis is an alternative method for hydrogen production. ‘Turquoi...
AbstractIn this paper, iron-based catalysts, calcined at different temperatures (300–800°C), support...
Nowadays, nearly 50% of the hydrogen produced worldwide comes from Steam Methane Reforming (SMR) at ...
Figures 4, 5, 8 & 9 are re-used with the author's permission. Figures 1, 2, 3, 6 & 7 have been remov...
Nowadays, nearly 50% of the hydrogen produced worldwide comes from Steam Methane Reforming (SMR) at ...
The production of methane through the optimization of various operating parameters and the use of di...
Close to 80% of hydrogen is currently produced through emissions-intensive natural gas reforming and...
Decarbonisation of the iron and steel industry would require the use of innovative low-carbon produc...
In this paper, iron-based catalysts, calcined at different temperatures (300–800 °C), supported over...
One leading strategy for developing net-zero carbon emission technologies is to avoid burning fossil...
13 pags., 11 figs., 1 tab.Experiments to investigate the catalytic pyrolysis of methane using an iro...
The purpose of our design project is to produce a high purity hydrogen product that emits a low conc...
The overall energy efficiency of the production of pure hydrogen using the pyrolysis oil driven stea...
Hydrogen production plants are among major sources of CO2 emissions into the atmosphere. The objecti...