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Interpretation of Hydrophobization Behavior of Dodecylamine on Muscovite and Talc Surface through Dynamic Wettability and AFM Analysis

机译:动态润湿性和AFM分析解释十二烷基胺在白云母和滑石表面的疏水化行为

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In this study, a new approach, “dynamic wettability”, and atomic force microscopy (AFM) imaging analysis techniques were successfully used to characterize the hydrophobization mechanism of the collector dodecylamine (DDA) on muscovite and talc surfaces. The attachment of bubbles to the minerals was studied through the dynamic contact angle to gain a detailed understanding of the hydrophobization mechanism of DDA on a muscovite and talc surface. AFM imaging and interaction forces were performed to explain the DDA adsorption mechanism on both minerals. Finally, flotation tests were performed to verify the effectiveness of these techniques. After treatments with DDA, the contact angles became much larger compared to initial angles, particularly for muscovite, and the attachment of bubbles on the talc surface was much easier than muscovite due to its natural hydrophobicity. From AFM imaging, both the muscovite and talc showed a similar tendency; the higher the DDA concentration, the more the adsorbed amount. However, the adsorbed amount of DDA on talc surface was obviously more than that on muscovite. As far as interaction forces are concerned, the maximum attractions occurred at certain different concentrations respectively for muscovite and talc and agreed well with the AFM-imaging results. Moreover, results obtained from flotation tests were promising and quite in agreement with the phenomenon of these techniques.
机译:在这项研究中,成功​​使用了一种新方法“动态润湿性”和原子力显微镜(AFM)成像分析技术来表征白云母和滑石表面上收集剂十二烷基胺(DDA)的疏水化机理。通过动态接触角研究了气泡与矿物的附着,以详细了解DDA在白云母和滑石表面的疏水化机理。进行原子力显微镜成像和相互作用力来解释DDA在两种矿物上的吸附机理。最后,进行浮选试验以验证这些技术的有效性。用DDA处理后,接触角比初始角大得多,尤其是对于白云母,由于其天然的疏水性,气泡在滑石表面的附着比白云母容易得多。从原子力显微镜成像,白云母和滑石都显示出类似的趋势。 DDA浓度越高,吸附量越多。但是,滑石表面DDA的吸附量明显大于白云母。就相互作用力而言,白云母和滑石的最大吸引力分别出现在某些不同浓度下,与原子力显微镜成像结果吻合良好。而且,从浮选试验获得的结果是有希望的,并且与这些技术的现象完全一致。

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