Area of research
Mechanical Engineering · Biomedical Engineering
Research interest
Research interests include Materials science, Metallurgy, Coke, Slag (welding), Reactivity (psychology), and Spinel.
Understanding Zinc-Containing Species in BOS Dust
Effects of Slag Composition on Phosphorus Segregation to Dicalcium Silicate-Tricalcium Phosphate Solid Solution for Recycling of Basic Oxygen Steelmaking Slags
Transitional Path to Low-Carbon Steel Production: A Review of Current Pathways and Modeling of the Electric Smelting Furnace Process
Characterization of Porosity Changes during Reaction of Coke and Coke Analogues with CO<sub>2</sub> Using Micro‐Computer Tomography
Effects of Minerals and Carbon Structures on the Dissolution of Coke in Liquid Iron
Hydrogen Reduction of Pre-oxidized New Zealand Titanomagnetite Ironsand in a Fluidized Bed Reactor
Effects of Blast Furnace Representative Temperatures and Gas Compositions on Coke Reactivity
Phase transformations during fluidized bed reduction of New Zealand titanomagnetite ironsand in hydrogen gas
Wettability of CaO-SiO2-MgO-Al2O3 Liquid Slag on Solid Al2O3
Dephosphorization Kinetics of Bloated Metal Droplets Reacting with Basic Slag Containing TiO<sub>2</sub>
Interaction Between Mineral Phases in a Goethitic Iron Ore and Fluxing Materials During Sintering
Investigation of the Influence of Slag Basicity on Metal Droplet Dephosphorization
Effects of Simple and Complex Minerals in the Alumina-Silica-Magnetite Ternary System on Coke Analogue Reactivity
Geometallurgical characterisation of a Channel Iron Deposit (CID) Ore
Reduction Kinetics of Oxidized New Zealand Ironsand Pellets in H2 at Temperatures up to 1443 K
Interaction Between Mineral Phases in a Hematite Iron Ore and Fluxing Materials During Sintering
<i>In situ</i> Phase Analysis during Self-sintering of BOS Filter Cake for Improved Recycling
Sticking-Free Reduction of Titanomagnetite Ironsand in a Fluidized Bed Reactor
Phosphorus Partition and Phosphate Capacity of TiO<sub>2</sub> Bearing Basic Oxygen Steelmaking Slags
Zinc removal from basic oxygen steelmaking (BOS) filter cake by sintering
Self-sintering of BOS Filter Cake for Improved Recyclability
The study of the Ca dispersion in coke and effect of Ca and Fe on the coke reactivity using the sole heated oven cokes
Understanding the Self-Sintering Process of BOS Filter Cake for Improving Its Recyclability
Dissolution of Sapphire and Alumina–Magnesia Particles in CaO–SiO2–Al2O3 Liquid Slags
Phosphorus Partition and Phosphate Capacity of Basic Oxygen Steelmaking Slags
<i>In situ</i> neutron diffraction study of the reduction of New Zealand ironsands in dilute hydrogen mixtures
The effect of calcium aluminates on the coke analogue gasification
Sintering of Iron Ores in a Millipot in Comparison with Tablet Testing and Industrial Process
A review of phosphorus partition relations for use in basic oxygen steelmaking
The effect of combinations of iron-bearing minerals and quartz on coke reactivity