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Aggregation of ultra-fine scheelite particles induced by hydrodynamic cavitation

机译:水动力空化诱导的超细白钨矿颗粒聚集

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Hydrodynamic cavitation enhanced ultra-fine particles flotation could be mainly due to the generation of nanobubbles in the process of cavitation, and their role in bridging particles to form aggregates. In this paper, the aggregation behavior of ultra-fine scheelite particles induced by hydrodynamic cavitation was investigated. Investigation was carried out through flotation tests, zeta potential measurements, turbidity determination and microscopic imaging. The results of flotation tests confirm that hydrodynamic cavitation can enhance the ultra-fine scheelite particles aggregation and their flotation. Nanobubbles generated by cavitation make the solid particles less negatively charged, thereby reducing the repulsive force between particles. With a low sodium oleate (NaOl) concentration, particle aggregates start to form in the slurry treated by hydrodynamic cavitation, while few aggregates are generated in the slurry without cavitation treatment. As NaOl concentration increases in the slurry pre-treated by cavitation, the formation of a network structure consisting of hydrophobized mineral particles, conventional bubbles and nanobubbles enhances the flotation recovery of ultra-fine scheelite particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:流体动力空化增强的超细颗粒浮选可能主要是由于在空化过程中产生了纳米气泡,以及它们在将颗粒桥接形成聚集体中的作用。本文研究了水力空化引起的超细白钨矿颗粒的聚集行为。通过浮选试验,ζ电势测量,浊度测定和显微成像进行了研究。浮选试验的结果证实,水力空化可以增强白钨矿超细颗粒的聚集和浮选。空化产生的纳米气泡使固体颗粒带负电的程度降低,从而降低了颗粒之间的排斥力。在低油酸钠(NaOl)浓度下,通过水力空化处理的浆液中开始形成颗粒聚集体,而未经空化处理的浆液中几乎不产生聚集体。随着通过气穴预处理的浆液中NaOl浓度的增加,由疏水化矿物颗粒,常规气泡和纳米气泡组成的网络结构的形成增强了超细白钨矿颗粒的浮选回收率。 (C)2016 Elsevier B.V.保留所有权利。

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