In New Zealand (NZ), titanomagnetite (TTM) ironsand has been commercially processed in a coal-fired rotary kiln process. However, this approach produces high emissions of CO2. Fluidised bed (FB) process allows the use of pure hydrogen gas to reduce ironsand, and as a result, does not produce CO2. However, for conventional hematite ores, reduction in a FB system is usually limited by the onset of particle sticking at temperatures ≳ 800°C. This thesis investigates the reduction of NZ ironsand by hydrogen in the FB system with a key focus on ore sticking behaviour. A laboratory-scale experimental FB reactor has been designed and built for the hydrogen reduction study at high temperatures. Quantitative X-ray diffraction (q-XRD) has been used to...
Direct reduction (DR) of iron ore with hydrogen is a promising alternative ironmaking process with n...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Br...
Surplus coke oven gases (COGs) and low grade hematite ores are abundant in Shanxi, China. Our group ...
Titanomagnetite (TTM) ironsand has been used to produce steel in New Zealand (NZ) for about 40 years...
To reduce the emission of the carbon dioxide (CO2) in New Zealand (NZ), it is proposed to perform di...
Hydrogen gas is a potential alternative reducing agent that could substantially decrease CO2 emissio...
Direct reduction of iron ore in a fluidized bed reactor is usually limited by the onset of particle ...
2020, The Minerals, Metals & Materials Society and ASM International. Direct reduction of iron ore p...
Steel is one of the modern world’s core pillars in engineering and construction materials, but the s...
Currently, the iron and steel industry produces approximately 7% of the total global CO₂ emissions, ...
The reduction in a fluidized bed has been recently developed as one of the most effective methods fo...
The reduction of New Zealand titanomagnetite ironsand in a dilute hydrogen-nitrogen gas mixture was ...
Fluidized bed reduction of iron ore fines is typically inhibited by the onset of sticking at tempe...
Direct reduction of combusted iron powders using renewable energy is one of the keys to ensure a car...
To reduce the emission of greenhouse gases by the steel industry, particularly for ironmaking, the p...
Direct reduction (DR) of iron ore with hydrogen is a promising alternative ironmaking process with n...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Br...
Surplus coke oven gases (COGs) and low grade hematite ores are abundant in Shanxi, China. Our group ...
Titanomagnetite (TTM) ironsand has been used to produce steel in New Zealand (NZ) for about 40 years...
To reduce the emission of the carbon dioxide (CO2) in New Zealand (NZ), it is proposed to perform di...
Hydrogen gas is a potential alternative reducing agent that could substantially decrease CO2 emissio...
Direct reduction of iron ore in a fluidized bed reactor is usually limited by the onset of particle ...
2020, The Minerals, Metals & Materials Society and ASM International. Direct reduction of iron ore p...
Steel is one of the modern world’s core pillars in engineering and construction materials, but the s...
Currently, the iron and steel industry produces approximately 7% of the total global CO₂ emissions, ...
The reduction in a fluidized bed has been recently developed as one of the most effective methods fo...
The reduction of New Zealand titanomagnetite ironsand in a dilute hydrogen-nitrogen gas mixture was ...
Fluidized bed reduction of iron ore fines is typically inhibited by the onset of sticking at tempe...
Direct reduction of combusted iron powders using renewable energy is one of the keys to ensure a car...
To reduce the emission of greenhouse gases by the steel industry, particularly for ironmaking, the p...
Direct reduction (DR) of iron ore with hydrogen is a promising alternative ironmaking process with n...
This thesis was submitted for the degree of Doctor of Philosophy and awarded by Brunel University.Br...
Surplus coke oven gases (COGs) and low grade hematite ores are abundant in Shanxi, China. Our group ...