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2017 Shengli Wu Cold Strength and High Temperature Behaviors of Self Reducing Briquette Containing Electric Arc Furnace D isijinternational.isijint 2017 013

Shengli WU, Feng CHANG

2026enelectric arc furnace duststeelmakingbriquettingcarbothermic reductionzinc removaldirect reduced iron

Abstract

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Electric arc furnace dust (EAFD) is one of the by-products of the steelmaking industry. This research aims at addressing the challenges associated with EAFD by utilizing pyrometallurgy, specifically through the mixing of EAFD with anthracite to create carbon-containing briquettes for use in reductive metallurgical furnaces (RHF). The study investigates the effects of various briquetting parameters on the strength of green pellets, including reduction temperature, reduction time, and the carbon-to-oxygen (C/O) molar ratio, which are critical for optimizing the metallization rate and the efficiency of zinc removal. The findings indicate that the parameters significantly influence both the strength of the pellets and the rates of metallization and zinc reduction, highlighting the potential for reclaiming valuable materials from EAFD while mitigating environmental impacts. This investigation provides insights into developing sustainable methods for recycling EAFD, which contains high iron content, while contributing to waste management in the steel industry.

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Cite This Work

@article{871917e0-8c5d-4aa3-b327-aa290fcde1e4,
  title={2017 Shengli Wu Cold Strength and High Temperature Behaviors of Self Reducing Briquette Containing Electric Arc Furnace D isijinternational.isijint 2017 013},
  author={Shengli WU and Feng CHANG},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2017 Shengli Wu Cold Strength and High Temperature Behaviors of Self Reducing Briquette Containing Electric Arc Furnace D isijinternational.isijint 2017 013
AU  - Shengli WU
AU  - Feng CHANG
PY  - 2026
LA  - en
ER  -

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