Conference Logo ProgramMaster Logo
Conference Tools for MS&T26: Materials Science & Technology
Login
Register as a New User
Help
Submit An Abstract
Propose A Symposium
Presenter/Author Tools
Organizer/Editor Tools

About this Symposium

Meeting MS&T26: Materials Science & Technology
Symposium Advances and Challenges in Decarbonization of the Steel Industry
Sponsorship AIST Metallurgy—Processing, Products and Applications Technology Committee
Organizer(s) Chad R. Cathcart, Stelco
Ashwin Kannan Iyengar, ArcelorMittal Calvert
Gowtham Ganesan, Arcelormittal Research LLC
Scope This symposium will address the current state and future trends in decarbonization of the steel industry, including: novel extraction and refining processes, sequestration of carbon, novel use of hydrogen, electricity and biomass in upstream and downstream processes, process control and modeling, workforce training, logistics and supply chain, recycling of steel, steelmaking coproducts and byproducts, effects of decarbonization on competitiveness of alternative materials, the role of Fe metallics and how they may require adjustments to the steelmaking process, and product life cycle analysis. The symposium format will include plenary, keynote and invited presentations and panel discussions from industry, government and university representatives.
Abstracts Due 05/19/2026

PRESENTATIONS APPROVED FOR THIS SYMPOSIUM INCLUDE


Analyzing the Morphological Evolution of Dendritic Iron During Hydrogen Reduction of Iron Oxides: Insights from Experiments and Phase Field Modeling
Assessing the Mass and Energy Balance of Hydrogen Injection with Top Gas Recycling in a Blast Furnace
Electrolytic Reduction of Iron Oxides in Molten Chloride Electrolytes
Finite Element Modeling of Tertiary Current Distribution in Porous Electrode Flow Electrolysis Cells for Sustainable Iron Production
Looping-Accelerated CO2 Mineralization for Cost-Competitive Cementitious Materials and Hydrogen
Microstructure Evolution in Rapid Nitriding of SACM645 Using Induction Heating
Microstructures and Orientation Relationships in the Reduction of Iron Oxide
Towards Sustainable Iron Production: Kinetics of Laser-Assisted Iron Oxide Reduction in Carbon-Free Environments


Questions about ProgramMaster? Contact programming@programmaster.org | TMS Privacy Policy | Accessibility Statement