Effect of acid surface dissolution pretreatment on the selective flotation of ilmenite from olivine and pyroxene

Q1 Earth and Planetary Sciences
Parisa Semsari Parapari, Mehdi Irannajad, Akbar Mehdilo
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引用次数: 37

Abstract

The influence of acid surface dissolution as a pretreatment method on the improvement of ilmenite selective flotation from olivine-pyroxene was studied by carrying out the flotation experiments in micro and laboratory (flotation cell) scales. The microflotation experiments show that after surface dissolution, the flotation recovery of ilmenite improves from 73.5% to 92.1% at a pH of 6.3, while that of olivine-pyroxene decreases from 59.6% to 44.6%. The improvement of ilmenite floatability is in good accordance with the relative content of Fe3 + in ilmenite surface which increases from 48.5% to 59.8% after surface dissolution as evidenced by XPS analysis. This conversion increases the formation of an insoluble layer of ferric iron oleate, and enhances ilmenite hydrophobicity. FTIR spectra and zeta potential measurements indicated that the adsorption of oleate ions on the surface of olivine-pyroxene decreases significantly after surface dissolution. As evidenced by ICP analysis, this can be due to the dissolution of Fe cations as the active sites from the olivine-pyroxene surface. The cell flotation experiments show that before surface dissolution, an optimal concentrate with 21.2% TiO2 and 78.3% recovery is achieved using 1000 g/t sodium oleate, 100 g/t Pb(NO3)2 (activator) and 80 g/t quebracho (depressant). After surface dissolution, the best concentrate containing 25.6% TiO2 and 80.6% recovery is obtained in the presence of 1000 g/t collector and 100 g/t activator without any depressant agent. As a general result, the acid surface dissolution pretreatment enhances the selectivity of ilmenite flotation and its separation efficiency.

Abstract Image

酸性表面溶解预处理对橄榄石和辉石选择性浮选钛铁矿的影响
通过微观和实验室(浮选池)两种尺度的浮选试验,研究了酸表面溶解作为预处理方法对改善橄榄石-辉石中钛铁矿选择性浮选的影响。微浮选实验表明,在pH = 6.3的条件下,表面溶解后钛铁矿的浮选回收率由73.5%提高到92.1%,而橄榄石-辉石的浮选回收率由59.6%下降到44.6%。钛铁矿可浮性的提高与钛铁矿表面Fe3 +的相对含量有良好的关系,表面溶解后钛铁矿表面Fe3 +的相对含量由48.5%增加到59.8%。这种转化增加了油酸铁不溶层的形成,并增强了钛铁矿的疏水性。FTIR光谱和zeta电位测量结果表明,橄榄石-辉石表面溶解后,油酸盐离子在其表面的吸附显著降低。ICP分析表明,这可能是由于铁离子作为活性位点从橄榄石-辉石表面溶解所致。浮选试验结果表明,在表面溶解前,油酸钠用量为1000 g/t,活化剂为100 g/t Pb(NO3)2,抑制剂为80 g/t,可获得TiO2含量为21.2%,回收率为78.3%的最佳精矿。表面溶解后,在捕收剂用量为1000 g/t、活化剂用量为100 g/t、不添加任何抑制剂的条件下,可获得TiO2含量为25.6%、回收率为80.6%的最佳精矿。结果表明,酸表面溶解预处理提高了钛铁矿浮选的选择性和分离效率。
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来源期刊
International Journal of Mineral Processing
International Journal of Mineral Processing 工程技术-工程:化工
CiteScore
3.02
自引率
0.00%
发文量
0
审稿时长
11.1 months
期刊介绍: International Journal of Mineral Processing has been discontinued as of the end of 2017, due to the merger with Minerals Engineering. The International Journal of Mineral Processing covers aspects of the processing of mineral resources such as: Metallic and non-metallic ores, coals, and secondary resources. Topics dealt with include: Geometallurgy, comminution, sizing, classification (in air and water), gravity concentration, flotation, electric and magnetic separation, thickening, filtering, drying, and (bio)hydrometallurgy (when applied to low-grade raw materials), control and automation, waste treatment and disposal. In addition to research papers, the journal publishes review articles, technical notes, and letters to the editor..
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