Muhammad Irfan Ahadian BARUSTAN, Evan COPLAND
The steel industry accounts for about 9% of global carbon dioxide emissions, prompting a need for innovative strategies to mitigate this issue. This study aimed to investigate the effects of hydrogen usage in blast furnaces on the reduction degradation of various ferrous burden materials, namely sinter, lump, and pellets. Employing a reduction degradation test, the research analyzed degradation under different gas mixtures containing hydrogen and carbon monoxide, assessing the impact on gas permeability within the furnace. The results revealed that the extent of reduction degradation varies significantly based on the hydrogen content and type of ferrous materials employed. This study addresses inconsistencies in previous research regarding the influence of hydrogen on reduction degradation and provides valuable insights into optimizing the use of hydrogen as a reducing agent in blast furnace operations, ultimately contributing to lower carbon emissions in the steel production process.
@article{ad3a999e-a6db-4c37-9c88-8e476b5454cc,
title={Reduction Degradation Hydrogen},
author={Muhammad Irfan Ahadian BARUSTAN and Evan COPLAND},
year={2026},
language={en}
}TY - JOUR TI - Reduction Degradation Hydrogen AU - Muhammad Irfan Ahadian BARUSTAN AU - Evan COPLAND PY - 2026 LA - en ER -
Ian Cameron, Mitren Sukhram
This book delves into the intricate processes involved in blast furnace ironmaking, emphasizing the analysis, control, and optimization of operations.
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