Citation: | Ban Xiaoqi, Gu Pan, Yin Wanzhong, Yao Jin, Chi Dongrui, Guo Wanzhong. Study on Reverse Flotation Process of Magnesite and Dolomite in Dodecylamine System[J]. Multipurpose Utilization of Mineral Resources, 2022, 43(5): 126-130. doi: 10.3969/j.issn.1000-6532.2022.05.021 |
Through the single mineral flotation test, the flotation behavior of magnesite and dolomite in the dodecylamine flotation system and the influence of the regulator Fe3+ on the floatability of the two minerals were studied. Based on Fourier Infrared Spectroscopy (FTIR) and contact angle test, the mechanism of Fe3+ was studied. The flotation test results show that in the dodecylamine system, under the natural pH condition of the pulp, the floatability of dolomite is better than that of magnesite. There is a certain floatation difference between magnesite and dolomite, and the addition of a small amount of Fe3+ significantly improves the floatation difference of the two minerals. Infrared spectroscopy test results show that the adsorption of dodecylamine on the surface of dolomite is mainly electrostatic adsorption, dolomite CO32− out-of-plane bending vibration and CO32− in-plane bending vibration are almost unchanged, and -CH3 and -CH2 are symmetrical and asymmetrical. The peak value of extensional vibration increases. The contact angle test results show that the addition of a small amount of Fe3+ enhances the hydrophobicity of dolomite, which has the effect of activating dolomite.
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Effect of DDA dosage on floatability of magnesite, dolomite
Effect of pH value on the floatability of magnesite, dolomite
Effect of ferric ion dosage on floatability of magnesite, dolomite
Infrared spectroscopy analysis of dolomite with dodecylamine
Infrared spectroscopy analysis of magnesite with dodecylamine
Effect of Fe3+ dosage on the contact angle of magnesite, dolomite