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首页> 外文期刊>Applied Surface Science >Synergistic adsorption of lanthanum ions and fatty acids for efficient rare-earth phosphate recovery: Surface analysis and ab initio molecular dynamics studies
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Synergistic adsorption of lanthanum ions and fatty acids for efficient rare-earth phosphate recovery: Surface analysis and ab initio molecular dynamics studies

机译:镧离子和脂肪酸的协同吸附高效稀土磷酸盐恢复:表面分析和AB ININIO分子动力学研究

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摘要

Rare earth elements (REE) are indispensable in our daily life but they naturally occur in minerals, which are generally difficult to concentrate by the froth flotation method. Considering the significant affinity of lanthanum ions for phosphate species as well as for carboxylate groups, the influence of a lanthanum salt (LaCl3) on the adsorption of carboxylate species on monazite surface [(La,Ce,Nd)PO4] was investigated by bubble/particle adhesion tests, X-ray photoelectron spectroscopy (XPS), and atomistic simulations based on density functional theory (DFT). Both theoretical and experimental results demonstrated that lanthanum ions adsorb on the phosphate groups of monazite surface under the LaClCO3 form with a significant adsorption energy. Also, the hydrophobization of the monazite surface with fatty acids is considerably improved in presence of LaCl3, which is in accordance with DFT calculations: the lanthanum ions pre-adsorbed on monazite surface act as highly attractive adsorption sites for carboxylate collectors. In particular, these bridging cations significantly increase the adsorption energy of carboxylate collectors, from 344 to 420 kJ.mol(-1) in absolute value. This synergistic adsorption will allow developing new methods for efficient monazite recovery from complex ores, a promising step for the recovery of critical raw materials.
机译:稀土元素(REE)在我们的日常生活中是必不可少的,但它们在矿物质中自然发生,这通常难以通过泡沫浮选方法集中精力。考虑到磷酸盐物质以及羧酸镧,镧盐(LACL3)对羧酸酯表面上羧酸盐物质的影响[(LA,Ce,Nd)PO4]的影响,通过泡起保持对羧酸盐物质的影响粒子粘附试验,X射线光电子能谱(XPS)和基于密度泛函理论(DFT)的原子模拟。理论和实验结果都证明,镧离子在LacLCO 3形式下吸附在含有显着的吸附能下的单桥表面的磷酸盐基团。此外,在LACL3的存在下,具有脂肪酸的单桥表面的疏水化在LACL3的存在下显着改善,这与DFT计算:预吸附在单桥表面上的镧离子充当羧酸酯收集器的高吸附性位点。特别地,这些桥接阳离子显着增加了羧酸盐收集器的吸附能量,从344至420kJ.mol(-1)中的绝对值。这种协同吸附将允许从复合矿石中开发高效的Monazite恢复的新方法,这是恢复批判原材料的有希望的步骤。

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  • 来源
    《Applied Surface Science》 |2020年第1期|146725.1-146725.10|共10页
  • 作者单位

    Univ Lorraine CNRS GeoRessources F-54000 Nancy France|Bur Rech Geol & Minieres Water Environm Proc & Anal Dept Waste & Raw Mat & Recycling Unit 3 Ave Claude Guillemin BP 36009 F-45060 Orleans France;

    Univ Lorraine CNRS GeoRessources F-54000 Nancy France;

    Univ Lorraine CNRS GeoRessources F-54000 Nancy France|Natl Univ Sci & Technol MISIS Leninsky Pr 4 Moscow 119049 Russia;

    Bur Rech Geol & Minieres Water Environm Proc & Anal Dept Waste & Raw Mat & Recycling Unit 3 Ave Claude Guillemin BP 36009 F-45060 Orleans France;

    Univ Lorraine CNRS LCPME F-54000 Nancy France;

    Univ Lorraine CNRS LPCT F-54000 Nancy France;

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

    Flotation; Monazite; Lanthanum chloride; Carboxylate; Activation; DFT;

    机译:浮选;单一;氯化镧;羧酸盐;活化;DFT;

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