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SIGNIFICANCE OF ION INTERACTIONS IN FLOTATION IN SALINE AND BRINE SOLUTIONS

机译:盐水和盐水溶液中浮选中离子相互作用的重要性

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There is anecdotal evidence for the significant effects of salt ions on the flotation separation of coal and minerals using process water of high salt content. Examples include flotation of soluble salt minerals such as potash, trona and borax in brine solutions, and coal flotation in saline water. Although some of the effects are expected, some do not seem to be encompassed by classical theories of colloid science. Several experimental and modelling techniques for determining solution viscosity and surface tension, bubble-particle attachment time, contact angle, atomic force microscopy, sum-frequency vibrational spectroscopy and molecular dynamics simulation have been used to provide further information on air-solution and solid-solution interfacial phenomena, especially the interfacial water structure due to the presence of dissolved ions. These studies indicate that the ion specific effect is the most significant factor influencing flotation in saline and brine solutions.
机译:存在盐离子对使用高盐含量的工艺水的煤和矿物质浮选分离的显着证据。实例包括可溶性盐矿物质的浮选,如盐水溶液中的钾盐,天鹅和硼砂,以及盐水中的煤浮选。虽然预期了一些效果,但有些效果似乎没有被胶体科学理论涵盖。用于确定溶液粘度和表面张力,气泡颗粒附着时间,接触角,原子力显微镜,和频振动光谱和分子动力学模拟的几种实验和建模技术已被用于提供关于空气溶液和固溶体的进一步信息界面现象,特别是由于溶解离子的存在而界面水结构。这些研究表明,离子特异性效应是影响盐水和盐水溶液中浮选的最重要因素。

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