The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace

In ore-based steelmaking, blast furnace (BF) dust is generally recycled to the BF via the sinter or cold-bonded briquettes and injection. In order to recycle the BF sludge to the BF, the sludge has to be upgraded, removing zinc. The literature reports cases of recycling the low-zinc fraction of upgr...

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Main Authors: Anton Andersson, Mats Andersson, Elsayed Mousa, Adeline Kullerstedt, Hesham Ahmed, Bo Björkman, Lena Sundqvist-Ökvist
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/8/12/1057
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spelling doaj-5f59d6002e87436894832254973d29382020-11-25T02:28:10ZengMDPI AGMetals2075-47012018-12-01812105710.3390/met8121057met8121057The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen FurnaceAnton Andersson0Mats Andersson1Elsayed Mousa2Adeline Kullerstedt3Hesham Ahmed4Bo Björkman5Lena Sundqvist-Ökvist6Department of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, SwedenSSAB Europe, 97437 Luleå, SwedenSwerim AB, 97125 Luleå, SwedenSwerim AB, 97125 Luleå, SwedenDepartment of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, SwedenDepartment of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, SwedenDepartment of Civil, Environmental and Natural Resources Engineering, Luleå University of Technology, 97187 Luleå, SwedenIn ore-based steelmaking, blast furnace (BF) dust is generally recycled to the BF via the sinter or cold-bonded briquettes and injection. In order to recycle the BF sludge to the BF, the sludge has to be upgraded, removing zinc. The literature reports cases of recycling the low-zinc fraction of upgraded BF sludge to the BF. However, research towards recycling of the high-zinc fraction of BF sludge within the ore-based steel plant is limited. In the present paper, the high-zinc fraction of tornado-treated BF sludge was incorporated in self-reducing cold-bonded briquettes and pellets. Each type of agglomerate was individually subjected to technical-scale smelting reduction experiments aiming to study the feasibility of recycling in-plant residues to the hot metal (HM) desulfurization (deS) plant. The endothermic reactions within the briquettes decreased the heating and reduction rate leaving the briquettes unreduced and unmelted. The pellets were completely reduced within eight minutes of contact with HM but still showed melt-in problems. Cold-bonded briquettes, without BF sludge, were charged in industrial-scale trials to study the recycling potential to the HM deS plant and basic oxygen furnace (BOF). The trials illustrated a potential for the complete recycling of the high-zinc fraction of BF sludge. However, further studies were identified to be required to verify these results.https://www.mdpi.com/2075-4701/8/12/1057recyclingblast furnace sludgesmelting reductiondesulfurizationbasic oxygen furnacecold-bonded briquettescold-bonded pelletslow-sulfur binders
collection DOAJ
language English
format Article
sources DOAJ
author Anton Andersson
Mats Andersson
Elsayed Mousa
Adeline Kullerstedt
Hesham Ahmed
Bo Björkman
Lena Sundqvist-Ökvist
spellingShingle Anton Andersson
Mats Andersson
Elsayed Mousa
Adeline Kullerstedt
Hesham Ahmed
Bo Björkman
Lena Sundqvist-Ökvist
The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
Metals
recycling
blast furnace sludge
smelting reduction
desulfurization
basic oxygen furnace
cold-bonded briquettes
cold-bonded pellets
low-sulfur binders
author_facet Anton Andersson
Mats Andersson
Elsayed Mousa
Adeline Kullerstedt
Hesham Ahmed
Bo Björkman
Lena Sundqvist-Ökvist
author_sort Anton Andersson
title The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
title_short The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
title_full The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
title_fullStr The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
title_full_unstemmed The Potential of Recycling the High-Zinc Fraction of Upgraded BF Sludge to the Desulfurization Plant and Basic Oxygen Furnace
title_sort potential of recycling the high-zinc fraction of upgraded bf sludge to the desulfurization plant and basic oxygen furnace
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2018-12-01
description In ore-based steelmaking, blast furnace (BF) dust is generally recycled to the BF via the sinter or cold-bonded briquettes and injection. In order to recycle the BF sludge to the BF, the sludge has to be upgraded, removing zinc. The literature reports cases of recycling the low-zinc fraction of upgraded BF sludge to the BF. However, research towards recycling of the high-zinc fraction of BF sludge within the ore-based steel plant is limited. In the present paper, the high-zinc fraction of tornado-treated BF sludge was incorporated in self-reducing cold-bonded briquettes and pellets. Each type of agglomerate was individually subjected to technical-scale smelting reduction experiments aiming to study the feasibility of recycling in-plant residues to the hot metal (HM) desulfurization (deS) plant. The endothermic reactions within the briquettes decreased the heating and reduction rate leaving the briquettes unreduced and unmelted. The pellets were completely reduced within eight minutes of contact with HM but still showed melt-in problems. Cold-bonded briquettes, without BF sludge, were charged in industrial-scale trials to study the recycling potential to the HM deS plant and basic oxygen furnace (BOF). The trials illustrated a potential for the complete recycling of the high-zinc fraction of BF sludge. However, further studies were identified to be required to verify these results.
topic recycling
blast furnace sludge
smelting reduction
desulfurization
basic oxygen furnace
cold-bonded briquettes
cold-bonded pellets
low-sulfur binders
url https://www.mdpi.com/2075-4701/8/12/1057
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