LAPSE:2024.0056
Published Article

LAPSE:2024.0056
Flotation Characteristics of Amphibole-Type Oxidized Iron Ore via Reverse Anionic Flotation
January 12, 2024
Abstract
To explore the flotation feasibility and flotation law of iron minerals from amphibole-type iron oxide ore with full-size minerals, a systematic study on the flotation behaviors of single minerals hematite, quartz, and amphibole was carried out with the anionic reverse flotation system. The effects of collectors, depressants, activators, and pH on the floatabilities of three single minerals was investigated. The flotation separations of binary mixed minerals and ternary mixed ores were carried out, respectively. The study results show that CaCl2 is adsorbed on the surfaces of quartz and amphibole, which can activate them. The hydroxyl groups of the starch molecular chain were adsorbed on the surfaces of the hematite and amphibole in the form of hydrogen bonds, but were hardly adsorbed on surface of the quartz. Therefore, both hematite and amphibole were depressed, resulting in a poor separation effect of the three single minerals in the anionic flotation system.
To explore the flotation feasibility and flotation law of iron minerals from amphibole-type iron oxide ore with full-size minerals, a systematic study on the flotation behaviors of single minerals hematite, quartz, and amphibole was carried out with the anionic reverse flotation system. The effects of collectors, depressants, activators, and pH on the floatabilities of three single minerals was investigated. The flotation separations of binary mixed minerals and ternary mixed ores were carried out, respectively. The study results show that CaCl2 is adsorbed on the surfaces of quartz and amphibole, which can activate them. The hydroxyl groups of the starch molecular chain were adsorbed on the surfaces of the hematite and amphibole in the form of hydrogen bonds, but were hardly adsorbed on surface of the quartz. Therefore, both hematite and amphibole were depressed, resulting in a poor separation effect of the three single minerals in the anionic flotation system.
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Keywords
amphibole, hematite, reverse anionic flotation
Subject
Suggested Citation
Huangfu M, Hu Y, Zhou Y, Li M, Deng J, Li S, Peng G. Flotation Characteristics of Amphibole-Type Oxidized Iron Ore via Reverse Anionic Flotation. (2024). LAPSE:2024.0056
Author Affiliations
Huangfu M: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Hu Y: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Zhou Y: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Li M: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Deng J: School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China [ORCID]
Li S: School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China [ORCID]
Peng G: Northwest Institute of Mining and Metallurgy, Baiyin 730900, China
Hu Y: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Zhou Y: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Li M: School of Metallurgy Engineering, Anhui University of Technology, Ma’anshan 243002, China
Deng J: School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China [ORCID]
Li S: School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China [ORCID]
Peng G: Northwest Institute of Mining and Metallurgy, Baiyin 730900, China
Journal Name
Processes
Volume
11
Issue
8
First Page
2388
Year
2023
Publication Date
2023-08-08
ISSN
2227-9717
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Original Submission
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PII: pr11082388, Publication Type: Journal Article
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LAPSE:2024.0056
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https://doi.org/10.3390/pr11082388
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[v1] (Original Submission)
Jan 12, 2024
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Jan 12, 2024
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Calvin Tsay
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