Enhanced Flotation Of Ultra-fine Apatite And Ca-al Phosphate From Quartz And Muscovite Using Eriez’ Column Flotation Technology - SME Annual Meeting 2022

Society for Mining, Metallurgy & Exploration
M. Fan A. Hobert W. van Dyk
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
11
File Size:
825 KB
Publication Date:
Mar 2, 2022

Abstract

Low flotation recovery and selectivity have been long-standing problems in the treatment of most ultra-fine phosphate ores. This paper investigates the improved flotation of two ultra-fine Brazilian phosphate ores from Itafos’ Arraias project. These ores are predominantly composed of quartz, muscovite, apatite and a Ca-Al phosphate. As a result of fine phosphate dissemination and associated grinding requirements, column flotation was selected for the metallurgical test program to address the inherent limitations of fine particle flotation using conventional flotation cells. Accordingly, both benchtop Denver cell and laboratory column flotation tests were conducted to optimize their respective flotation responses. Improved flotation performance was achieved using column flotation as compared to benchtop mechanical flotation. In column flotation, a P2O5 concentrate grade of 30.5-31.0% was yielded at a flotation recovery of 83.7-85.1% for the 38x0µm generated ultrafines. The benefits of Eriez’ column flotation technology realized from this study include a higher degree of selectivity, increased recovery, and reduced collector dosage as compared to bench-scale mechanical flotation.
Citation

APA: M. Fan A. Hobert W. van Dyk  (2022)  Enhanced Flotation Of Ultra-fine Apatite And Ca-al Phosphate From Quartz And Muscovite Using Eriez’ Column Flotation Technology - SME Annual Meeting 2022

MLA: M. Fan A. Hobert W. van Dyk Enhanced Flotation Of Ultra-fine Apatite And Ca-al Phosphate From Quartz And Muscovite Using Eriez’ Column Flotation Technology - SME Annual Meeting 2022. Society for Mining, Metallurgy & Exploration, 2022.

Export
Purchase this Article for $25.00

Create a Guest account to purchase this file
- or -
Log in to your existing Guest account