LAPSE:2019.0966
Published Article
LAPSE:2019.0966
Increasing Iron and Reducing Phosphorus Grades of Magnetic-Roasted High-Phosphorus Oolitic Iron Ore by Low-Intensity Magnetic Separation−Reverse Flotation
Junhui Xiao, Lingli Zhou
August 15, 2019
High-phosphorus oolitic iron ore, treated by suspended flash magnetic roasting, contained 42.73% iron (mainly present as magnetite) and 0.93% phosphorus (present as collophane). Low-intensity magnetic separation (LIMS) was combined with reverse flotation to increase the iron and reduce the phosphorus contents of the roasted product. The results showed that an optimized iron ore concentrate with an iron grade of 67.54%, phosphorus content of 0.11%, and iron recovery of 78.99% were obtained under LIMS conditions that employed a grind of 95% −0.038 mm and a magnetic field of 0.10 T. Optimized rougher reverse-flotation conditions used a pulp pH of 9 and dosages of toluenesulfonamide, starch, and pine alcohol oil of 800 g/t, 1000 g/t, and 40 g/t, respectively; optimized scavenging conditions used a pulp pH of 9 and dosages of toluenesulfonamide, starch, and pine alcohol oil of 400 g/t, 500 g/t, and 20 g/t, respectively. Study of the mechanism of phosphorus reduction showed that the toluenesulfonamide could be adsorbed on the surface of quartz after the action of starch, but adsorption was significantly weakened. The starch inhibitor negatively affected adsorption on quartz, but positively influenced adsorption of phosphorus minerals.
Keywords
iron increase, low-intensity magnetic separation, phosphorous reduction, phosphorus mineral flotation reagent, reverse flotation, suspended magnetic roast
Subject
Suggested Citation
Xiao J, Zhou L. Increasing Iron and Reducing Phosphorus Grades of Magnetic-Roasted High-Phosphorus Oolitic Iron Ore by Low-Intensity Magnetic Separation−Reverse Flotation. (2019). LAPSE:2019.0966
Author Affiliations
Xiao J: Key Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Miangyang 621010, China; State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technolog [ORCID]
Zhou L: State Key Laboratory of Refractories and Metallurgy, Wuhan University of Science and Technology, Wuhan 030192, China
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Journal Name
Processes
Volume
7
Issue
6
Article Number
E388
Year
2019
Publication Date
2019-06-21
Published Version
ISSN
2227-9717
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Original Submission
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PII: pr7060388, Publication Type: Journal Article
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LAPSE:2019.0966
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doi:10.3390/pr7060388
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Aug 15, 2019
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Aug 15, 2019
 
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Calvin Tsay
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