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Water emulsions of dibutyl dixantogen and their interaction with the surface of highly oriented pyrolytic graphite and silicon dioxide

机译:二丁基双黄原胶水乳液及其与高取向热解石墨和二氧化硅表面的相互作用

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摘要

Aqueous micro-emulsions of dibutyl dixantogen as an active compound of commercial flotation agent are produced and analyzed using the methods of dynamic light scattering and zeta potential measurements. It is found that the typical hydrodynamic diameter of dixantogen drops is of the order of 300 nm and their zeta potentials are negative. The effect exerted on properties of hydrophobic (pyrolytic graphite) and hydrophilic (silicon dioxide) surfaces by pretreatment with micro-emulsions is examined using the atomic-force microscopy method and colloid probe (SiO2 micro-sphere). The long-range highamplitude attraction forces, probably of capillary nature, are revealed between the probe and substrata after the contact with dixantogen for 1 min. It is supposed that these forces are conditioned by the action of gas nano-structures (nano-bubbles, nano-cavities, etc.) initiated on the surface rendered hydrophobic by dixantogen.
机译:使用动态光散射和ζ电位测量的方法,生产并分析了作为商业浮选剂活性成分的二丁基二黄原胶的水微乳液。已发现,双黄原剂滴的典型流体动力学直径为300nm量级,并且其ζ电位为负。使用原子力显微镜法和胶体探针(SiO2微球),通过微乳液预处理对疏水性(热解石墨)和亲水性(二氧化硅)表面的性能产生了影响。与dixantogen接触1分钟后,在探针和基质之间会显示出可能具有毛细管性质的远距离高振幅吸引力。据推测,这些力是由在由双黄原胶赋予疏水性的表面上引发的气体纳米结构(纳米气泡,纳米腔等)的作用所调节的。

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