Desilication Application and Defoaming Mechanism of XK-28 Collector in Iron Ore - Mining, Metallurgy & Exploration (2021)

Society for Mining, Metallurgy & Exploration
Zhao Tonglin Li Min Xu Bing Ma Fangyuan Xian Yushuai
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
13
File Size:
940 KB
Publication Date:
Jul 21, 2021

Abstract

The study explored a new combination amine collector (XK-28) that can obtain better flotation index and defoaming rate for magnetic iron ore. A pure quartz mineral test indicates that dodecylamine, XK-I, or XK-II has good collection effect on quartz and their best flotation pH is in the range of 6–7. The experimental results of a combination collector (XK-I:XK-II = 2:8.) show that the separation effect for quartz and magnetite is better than that of a single collector. The single factor for actual mineral test shows that when the combined reagent is used as the collector, the best conditions are pH = 7, 90 g/t dosage, and XK-I:XK-II = 2:8, which is consistant with the pure mineral test. The difference for dodecylamine as a collector is that the optimal dodecylamine dosage is 60 g/t. Under the best conditions of actual ore test, dodecylamine and XK-28 are respectively used as the collector to compare the flotation indexes. Study results indicate the magnetite grade using XK-28 as the collector is higher by 3.02% than that of using dodecylamine, recovery is increased by 1.92% over that of using dodecylamine. Based on the measurement results of zeta potential, uses of XK-28 can slightly increase the zeta potential difference of quartz and magnetite to enhance the flotation effect. The mechanism of action between the XK-28 collector and the actual ore from the Gongchangling plant is physical adsorption, and this adsorption also has hydrogen bond formation. Contact angle results shows that XK-28 improves the hydrophobicity of quartz better than dodecylamine. Compared with dodecylamine, XK-28 is more sparsely arranged on the surface of the foam. The foam produced by the XK-28 collector has better air permeability and it is more likely to merge and disappear with bubbles.
Citation

APA: Zhao Tonglin Li Min Xu Bing Ma Fangyuan Xian Yushuai  (2021)  Desilication Application and Defoaming Mechanism of XK-28 Collector in Iron Ore - Mining, Metallurgy & Exploration (2021)

MLA: Zhao Tonglin Li Min Xu Bing Ma Fangyuan Xian Yushuai Desilication Application and Defoaming Mechanism of XK-28 Collector in Iron Ore - Mining, Metallurgy & Exploration (2021). Society for Mining, Metallurgy & Exploration, 2021.

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