Flotation Purification of Spent Anode Slag with Water‑Soluble Kerosene: A Comparative Study - Mining, Metallurgy & Exploration (2024)

Society for Mining, Metallurgy & Exploration
Shiwei Wang Guomin Wei Rongjie Kong
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
17
File Size:
6042 KB
Publication Date:
Feb 6, 2024

Abstract

Owing to the selective oxidation and uneven combustion that occur on the surface of carbon anode, some carbon particles detach and form carbon residue, which is defined as spent anode slag (SAS). The highly graphitized and toxic impurities such as fluorite ( CaF2), corundum (α-Al2O3), and cryolite ( NaAl11O17) are crucial components of SAS resource but are difficult to separate from graphite. This study developed a method of using water-soluble (emulsified) kerosene to separate the carbon particles from the toxic impurities in the SAS resource. The flotation purification approach of utilizing conventional kerosene was experimentally investigated and compared with that of using water-soluble kerosene. The results showed that with the use of emulsified kerosene, the maximum combustible matter recovery of the carbon particles was 89.86% while that of using traditional kerosene was 80.30%. The emulsified kerosene was comprehensively examined by various instruments to clarify its adsorption mechanism on the carbon particle surfaces. Because of the superior dispersibility of emulsified kerosene, it effectively envelops carbon particles with a smooth surface, oxygen-containing functional groups, and hydrophilic C–F bonds, thereby increasing the surface hydrophobicity and flotation responses of targeted carbon particles.
Citation

APA: Shiwei Wang Guomin Wei Rongjie Kong  (2024)  Flotation Purification of Spent Anode Slag with Water‑Soluble Kerosene: A Comparative Study - Mining, Metallurgy & Exploration (2024)

MLA: Shiwei Wang Guomin Wei Rongjie Kong Flotation Purification of Spent Anode Slag with Water‑Soluble Kerosene: A Comparative Study - Mining, Metallurgy & Exploration (2024). Society for Mining, Metallurgy & Exploration, 2024.

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