Desulfurization of Coarse Hemo-Ilmenite Ore

Canadian Institute of Mining, Metallurgy and Petroleum
Liming Huang Claude Gagnon Dan Chen Patrice Nadeau Yuejun Zhang
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
13
File Size:
1734 KB
Publication Date:
Jan 1, 2016

Abstract

"The traditional Denver flotation cell is generally suitable to process material ranging approximately from 5 µm to 300 µm. For floating over 300 µm material, its efficiency is significantly getting lower mainly due to the difficulty to suspend coarse particles uniformly, which decreases the chances of particles to attach to bubbles and increases the chances of detachment.RTFT (Rio Tinto Fer et Titane) owns one of the world’s largest hemo-ilmenite deposits. Considering the whole processing technology, the ore is only crushed to -1180 µm. The crushed ore contains about 0.32% S and most of the sulfur is removed by rotary kilns in the ore preparation plant. In order to achieve a similar S reduction, without emitting SO2 into the air, an alternative technology by flotation was pursued.Laboratory and pilot scale-up tests showed that traditional Denver flotation cell could perfectly remove the sulfur from the material sizing 0-300 µm. For the coarser particle sizes, two different models of equipment were tested to improve flotation efficiency: HF (HydroFloat Separator) from Eriez and CLF from BGRIMM (Beijing General Research Institute of Mining and Metallurgy), China. The D6” HF, which is a device that combines flotation and gravity separation, demonstrated its ability to recover those very coarse particles. As compared to the Denver flotation cell, the modified 25 L CLF coarse particle flotation cell achieved better results at higher pulp solids percentage and with a shorter flowsheet."
Citation

APA: Liming Huang Claude Gagnon Dan Chen Patrice Nadeau Yuejun Zhang  (2016)  Desulfurization of Coarse Hemo-Ilmenite Ore

MLA: Liming Huang Claude Gagnon Dan Chen Patrice Nadeau Yuejun Zhang Desulfurization of Coarse Hemo-Ilmenite Ore. Canadian Institute of Mining, Metallurgy and Petroleum, 2016.

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