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首页> 外文期刊>Applied Surface Science >Lead ion modification and its enhancement for xanthate adsorption on smithsonite surface
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Lead ion modification and its enhancement for xanthate adsorption on smithsonite surface

机译:铅离子改性及其在黄铁矿表面吸附黄药的增强作用

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In this study, the interaction between Pb ions and a smithsonite surface was investigated, and its effect on the xanthate adsorption of a mineral surface was evaluated. Micro-flotation tests indicated that the smithsonite flotation in a PbNO3 solution (5x10(-5) mol/L) was approximately doubled with respect to that without Pb ion modification, where the xanthate functioned as a collector. The results of inductively coupled plasma mass spectroscopy suggested that the modification of Pb ions can be achieved via ion adsorption and exchange on the mineral surface. The potential structure of a Pb-modified smithsonite surface was investigated via Visual MINTEQ and X-ray photoelectron spectroscopy. During the modification, large amounts of Pb species, including PbCO3 and Pb-3(CO3)(2)(OH)(2), were formed on the smithsonite surface. The results of Fourier transform infrared spectroscopy and time-of-flight secondary-ion mass spectrometry indicated that Pb modification increased the number of active Pb sites for xanthate adsorption to improve the formation of hydrophobic Pb-xanthate precipitate. The adsorption tests revealed that Pb modification enhanced the stability of the xanthate products on the smithsonite surface. Therefore, the interaction of Pb ions with the smithsonite surfaces enhanced the strength and stability of the hydrophobic layer, resulting in the enhanced hydrophobization of smithsonite.
机译:在这项研究中,研究了Pb离子与铁矾石表面之间的相互作用,并评估了其对矿物表面黄药吸附的影响。微浮选试验表明,相对于未经Pb离子改性的黄原酸盐作为捕收剂的情况,PbNO3溶液(5x10(-5)mol / L)中的铁矿浮选大约翻了一倍。电感耦合等离子体质谱的结果表明,可通过离子在矿物表面上的吸附和交换来实现Pb离子的改性。通过视觉MINTEQ和X射线光电子能谱研究了Pb改性的新铁矿表面的潜在结构。在改性过程中,在铁锌矿表面上形成了大量的Pb物种,包括PbCO3和Pb-3(CO3)(2)(OH)(2)。傅里叶变换红外光谱和飞行时间二次离子质谱分析的结果表明,Pb修饰增加了黄药吸附的活性Pb位置,从而改善了疏水性Pb-黄药沉淀的形成。吸附测试表明,Pb改性增强了黄铁酸盐产品在铁锌矿表面上的稳定性。因此,Pb离子与菱铁矿表面的相互作用增强了疏水层的强度和稳定性,从而导致了菱铁矿疏水性的增强。

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