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Kinetics of Bubble-Particle Interaction, Surface Hydrophobicity and Interfacial Phenomena in Sulfide Mineral Flotation

机译:硫化矿物浮选中泡泡颗粒相互作用,表面疏水性和界面现象的动力学

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Kinetics of bubble-particle interaction, surface hydrophobicity and interfacial phenomena in sulfide mineral flotation are discussed in this paper. Results of the measurements of a bubble and mineral induction time (IT) and detachment force (DF), vacuum of bubble evolution (VE) and mineral floatability are discussed for pyrite, galena, chalcocite and chalcopyrite. Natural wetting and wetting induced by xanthates with different lengths of alkyl chains are examined. Experiments show the existence of several maxima of hydrophobicity on dependences of pH and electrochemical potential. These maxima are attributed as the reflection of mineral surface heterogeneity due to xanthate adsorption and the presence of cationic and anionic centres with uncompensated positive and negative charges. These charges can be neutralised by both regulation pH and applied potential. The aim of this paper is to evaluate a thickness of the rupturing film and to estimate how long the bubble-mineral interactions are according to the experimental values of IT, in order to develop a procedure for comparing of the results of DF and atomic force measurements in the same dimensionality, and to compare the results of the experimental studies on the wettability of sulfides with those predicted by the models of physics of capillarity.
机译:本文讨论了硫化物矿物浮选中泡沫颗粒相互作用,表面疏水性和界面现象的动力学。的气泡和矿物诱导时间(IT)和剥离力(DF)测量的结果,气泡演进(VE)和矿物的可浮的真空是为黄铁矿,方铅矿,辉铜矿和黄铜矿的讨论。检查具有不同长度的烷基链的黄原酸盐诱导的天然润湿和润湿。实验表明pH和电化学潜力的依赖性的几个疏水性的存在。这些最大值由于黄原酸盐吸附和阳离子和阴离子中心的存在而归因于矿物表面异质性的反射,并且具有未补偿的正和负荷。这些电荷可以通过调节pH和施加的潜力来中和。本文的目的是评价的厚度破裂薄膜的并多长时间气泡矿物相互作用根据IT的实验值来估算,以便制定程序,对于DF的结果和原子力测量的比较在相同的维度,并比较毛细血管模型预测的硫化物润湿性的实验研究结果。

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