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Selective flotation of scheelite from calcite using Al-Na2SiO3 polymer as depressant and Pb-BHA complexes as collector

机译:使用Al-Na2SiO3聚合物作为抑制剂和PB-BHA复合物作为收集器的抑制剂和PB-BHA络合物选择性浮选

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摘要

In previous studies, by regulating the Pb/BHA ratio and pH, lead complexes of benzohydroxamic acid (Pb-BHA) have been proven to be selective for the separation of scheelite from calcium minerals. In this study, sodium silicate (Na2SiO3) and Al-Na2SiO3 polymer were used as depressants for the further separation of scheelite from calcite. Flotation results indicated that both scheelite and calcite were depressed by Na2SiO3, while Al-Na2SiO3 polymer gave good selectivity. The depressing ability of Na2SiO3 for calcite was significantly improved due to the formation of some Al-Na2SiO3 species with aluminum ions, while the reverse was true for scheelite. Zeta potential results indicated that both colloidal Na2SiO3 and Al-Na2SiO3 particles were negatively charged and difficult to adsorb on the negative scheelite surface through electrostatic attraction, especially for Al-Na2SiO3. Xray photoelectron spectroscopy analysis results showed that the Al-Na2SiO3 adsorbed amount on the scheelite surface was less than the Na2SiO3 adsorbed amount, while the reverse was true on the calcite surface. Binding energy analysis results indicated that calcium cations of scheelite and calcite surfaces could bond to oxygen atoms of Na2SiO3/Al-Na2SiO3 through chemisorption. However, compared with Na2SiO3, Al-Na2SiO3 showed weaker chemisorption on the scheelite surface, but adsorbed more powerfully onto the calcite surface. Therefore, Al-Na2SiO3 showed excellent selectivity for scheelite and calcite, which has been successfully applied at the Shizhuyuan mine.
机译:在先前的研究中,通过调节Pb / BHA比和pH,已被证明苯羟羟肟酸(Pb-BHA)的铅配合物用于从钙矿物中分离硅藻土。在该研究中,使用硅酸钠(Na 2 SiO 3)和Al-Na2SiO3聚合物作为抑制剂,用于进一步分离胶铁石。浮选结果表明,通过Na2SiO3抑制了Schelite和方解石,而Al-Na2SiO3聚合物的选择性良好。由于铝离子的一些Al-Na2SiO3种类形成,Na2SiO3对方解石的抑制能力显着改善,而逆转为单胞石。 Zeta电位结果表明,通过静电吸引,胶体Na 2 SiO 3和Al-Na2SiO3颗粒均负荷且难以吸附在阴性白细胞表面上,特别是对于Al-Na2SiO3。 X射线光电子体光谱分析结果表明,亚麻体表面上的Al-Na2SiO3吸附量小于Na 2 SiO 3吸附量,而在方解石表面上逆转。结合能量分析结果表明,通过化学吸附,硅藻土和方解石表面的钙阳离子可以粘合到Na 2 SiO3 / Al-Na2SiO3的氧原子。然而,与Na2SiO3相比,Al-Na2SiO3在肌岩表面上显示出较弱的化学吸附,但是在方解石表面上更有力地吸附。因此,Al-Na2SiO3表现出优异的白钨矿和方解石的选择性,该方解石已成功应用于静辉源矿。

著录项

  • 来源
    《Minerals Engineering》 |2018年第2018期|共6页
  • 作者单位

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

    Cent S Univ Sch Minerals Proc &

    Bioengn Changsha 410083 Hunan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

    Scheelite; Calcite; Pb-BHA complexes; Al-Na2SiO3 polymer; Zeta potential; PS;

    机译:Schelite;方解石;Pb-BHA络合物;Al-Na2sio3聚合物;Zeta潜力;PS;

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