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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium REWAS 2022: Decarbonizing the Materials Industry
Presentation Title HIsarna: A Technology to Meet Both the Climate and Circularity Challenges for the Iron and Steel Industry
Author(s) Johan van Boggelen
On-Site Speaker (Planned) Johan van Boggelen
Abstract Scope Over the past decade the European Union has set the ambition to become a carbon neutral and fully circular economy. To achieve this, it will be necessary to develop new technologies and processes that address both issues simultaneously. In this paper the HIsarna ironmaking technology is used as an example where the reduction of CO2 emissions, the use of secondary raw materials as well as the valorisation of by-product streams is considered in the early stages of the process development. In the light of climate change, sustainability, resource efficiency and circularity these aspects should be part of the considerations for any new process being developed, even if their economic viability still needs to be established.
Proceedings Inclusion? Planned:
Keywords Iron and Steel, Sustainability, Extraction and Processing

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Biomass as a CO2-neutral Carbon Substitute for Reduction Processes in Metallurgy
Carbon Footprint Reduction Opportunities in the Manganese Alloys Industry
CO2 as Raw Material for Chemical and Fuel Productions through Electrocatalysis
Effect of Moisture and High Temperature to Separation Properties of Mixed Matrix Membranes
Field Demonstration of the Reversa Mineral Carbonation Process Using Coal and Natural Gas Flue Gas Streams
HIsarna: A Technology to Meet Both the Climate and Circularity Challenges for the Iron and Steel Industry
Iron-ore Reduction Using Green Hydrogen: A Study for Recycling Wastes in Egyptian Steel Industry
Pilot Scale Test of Flue Gas Recirculation for the Silicon Process
PreMa-project Development of New Technologies to Reduce CO2 Emissions in Mn-alloy Production
Pyrometallurgy-based Research Conducted at Mintek towards Decarbonizing the Metals Industry
Solid Oxide Membrane (SOM) Based Technology for Carbon-free Efficient Production of Solar-grade Silicon
Supercritical Carbonation of Steelmaking Slag for the CO2 Sequestration
Tecno-economic Pre-feasibility Study of a Hydrogen Plasma Based Ferromanganese Plant
The Carbon Age: Reimaging the Lifecycle of Fuels and Materials
Towards Green Ferroalloys: Replacement of Fossil Reductants in the Pre-reduction Process of Chromite by Bio-based Alternatives

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