Thomas Echterhof, Ko-Ichiro Ohno
The increasing urgency to meet the UN’s 2030 Sustainable Development Goals and the European Green Deal necessitates substantial advancements in the sustainability of industrial production, particularly in the steel industry. This study aims to explore the modeling and simulation of metallurgical processes to identify and optimize methods that enhance energy efficiency and reduce CO2 emissions during ironmaking and steelmaking. Methodologically, the authors utilize a combination of process simulation tools and analytical techniques to assess the parameters that affect metallurgical operations. The findings reveal that many critical parameters influencing the efficiency of the processes are challenging to measure directly due to the extreme conditions within furnaces and metallurgical vessels. However, through the application of advanced modeling techniques, insights into flow conditions and thermal behaviors can be derived, paving the way for improved process optimization strategies. The research outcomes underscore the potential for innovative processes to achieve significant reductions in carbon emissions, aligning with global sustainability goals. Ultimately, this work contributes valuable knowledge for the development of greener technologies in the steel industry.
@article{2911333a-bf3a-467c-a331-afe87abe7f6a,
title={Modeling and Simulation of Metallurgical Processes in Ironmaking and Steelmaking},
author={Thomas Echterhof and Ko-Ichiro Ohno},
year={2022},
language={en}
}TY - JOUR TI - Modeling and Simulation of Metallurgical Processes in Ironmaking and Steelmaking AU - Thomas Echterhof AU - Ko-Ichiro Ohno PY - 2022 LA - en ER -
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