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The Interaction Force between Scheelite and Scheelite/Fluorite/Calcite Measured Using Atomic Force Microscopy

机译:使用原子力显微镜测量的硅藻土和荧光/方解石之间的相互作用力

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The mechanism of the formation of the hydrophobic agglomerate in fine scheelite flotation was studied using zeta potential measurement, contact angle measurement, optical microscope measurement, and atomic force microscopy (AFM) colloid probe technology. Zeta potential measurement results confirmed the adsorption of sodium oleate on scheelite, fluorite, and calcite surface and surface potential difference at different pH values of ultrapure water. Contact angle measurement results confirmed the surface of nature scheelite, fluorite, and calcite was hydrophilic, and the surface after thread by sodium oleate solution was hydrophobic. The optical microscope measurement results confirmed the agglomerates could really form in ultrapure water of pH 8 or 10 and in 1?mM sodium oleate solution of pH 10. The agglomerations were empty and not tight in ultrapure water. On the contrary, the hydrophobic agglomerations were larger and denser after treated with sodium oleate solution than that of in ultrapure water. According to the AFM experiment results, the interaction forces on hydrophilic scheelite-scheelite and scheelite-fluorite were repulsive at pH 5.6 and attractive at pH 8 or 10. However, the interaction forces on hydrophilic scheelite-calcite were attractive at pH 5.6, 8 or 10. The interaction forces on hydrophobic scheelite-scheelite, scheelite-fluorite, and scheelite-calcite were attractive strongly due to the existence of hydrophobic force. The measurement results of the interaction forces were in good agreement with the changes of zeta potential and contact angle at different conditions. The combined results could be beneficial to understand the interaction force in fine scheelite flotation.
机译:使用Zeta电位测量,接触角测量,光学显微镜测量和原子力显微镜(AFM)胶体探头技术研究了细胞石浮选中疏水聚集在细硅藻土浮选中形成的机理。 Zeta潜在的测量结果证实了在超纯水的不同pH值下对硅藻土,萤石和方解石表面和表面电位差的吸附。接触角测量结果证实了自然的白纤维,萤石和方解石的表面是亲水性的,并且通过油酸钠溶液螺纹后表面是疏水的。光学显微镜测量结果证实了附聚物可以在pH8或10的超纯水中真正形成,在1μlH10的pH10中的溶液中的纯水。附聚物是空的,在超纯水中不紧密。相反,疏水性聚集体在用钠酸钠溶液处理之后较大,更浓,而不是超纯水。根据AFM实验结果,在pH 5.6的pH 5.6中释放亲水性Scheelite-SCHEELITE上的相互作用力,并在pH8或10时吸引。然而,亲水性白细胞 - 方解石上的相互作用力在pH 5.6,8或10.由于疏水力的存在,疏水性白细胞 - 氟钛矿 - 氟土和白细胞 - 方解石上的相互作用力强烈地具有吸引力。相互作用力的测量结果与不同条件下的Zeta电位的变化很好。合并的结果可能有利于了解精细的白皮岩浮选中的相互作用力。

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