Hydrometallurgical Processes for the Recovery of Metals from Steel Industry By-Products: A Critical Review
Гидрометаллургические процессы извлечения металлов из побочных продуктов сталелитейной промышленности: критический обзор
2020-11-13
SCID: 54.1/8aby6tna
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ZnO/ZnFe2O4 ratioelectric arc furnace (EAF) dusthydrometallurgical processessteel industry by-productszinc removal and Fe-rich residue recovery
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Abstract (AI)
Abstract The state of the art for the recovery of metals from steel industry by-products using hydrometallurgical processes is reviewed. The steel by-products are different slags, dusts, and sludges from a blast furnace (BF), basic oxygen furnace (BOF), electric arc furnace (EAF), and sinter plant, as well as oily mill scale and pickling sludge. The review highlights that dusts and sludges are harder to valorize than slags, while the internal recycling of dusts and sludges in steelmaking is inhibited by their high zinc content. Although the objectives of treating BF sludges, BOF sludges, and EAF dust are similar, i.e., the removal of zinc and the generation of an Fe-rich residue to be returned to the steel plant, these three classes of by-products have specific mineralogical compositions and zinc contents. Because wide variations in the mineralogical composition and zinc content occur, it is impossible to develop a one-size-fits-all flow sheet with a fixed set of process conditions. The reason for the interest in EAF dust is its high zinc content, by far the highest of all steel by-products. However, EAF dust is usually studied from the perspective of the zinc industry. There are not only different concentrations of zinc, but also variations in the all-important ZnO/ZnFe2O4 (zincite-to-franklinite) ratio. In many chemical processes, only the ZnO dissolves, while the ZnFe2O4 is too refractory and reports to the residue. It only dissolves in concentrated acids, or if the dust is pre-treated, e.g., with a reductive roasting step. The dissolution of ZnFe2O4 in acidic solutions also brings significant amounts of iron in solution. Finally, due to its high potassium chloride content, sinter-plant dust could be a source of potassium for the fertilizer industry. Graphical Abstract
Key Findings
1
BF sludges, BOF sludges, and EAF dust share treatment objectives (zinc removal and producing Fe-rich residue) but differ in mineralogy and zinc content, preventing a universal process flow sheet.
2
Dissolving ZnFe2O4 in acidic solutions releases significant iron into solution, and sinter-plant dust high in potassium chloride could serve as a potassium source for fertilizers.
3
Dusts and sludges from steelmaking are harder to valorize via hydrometallurgy than slags, primarily due to high zinc content inhibiting internal recycling.
4
EAF dust has the highest zinc content among steel by-products and is often treated from a zinc-industry perspective rather than steel recycling.
5
Variations in the ZnO/ZnFe2O4 ratio critically affect leaching: ZnO dissolves in many chemical processes, while ZnFe2O4 is refractory and requires concentrated acids or pretreatment (e.g., reductive roasting).
Research Object
Steel industry by-products (slags, dusts, sludges, oily mill scale, and pickling sludge) from BF, BOF, EAF and sinter plants
Research Subject
Hydrometallurgical recovery processes and their effectiveness for metal (especially zinc and iron) extraction, including dissolution behavior (ZnO vs ZnFe2O4), mineralogical variability, process limitations, and generation of Fe-rich residues and potential K recovery
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2020-11-13
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