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Rebound and attachment involving single bubble and particle in the separation of plastics by froth flotation

机译:通过泡沫浮选分离塑料中的单个气泡和颗粒的回弹和附着

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Bubble-particle interaction is critical to the separation of particles by flotation which can be used in plastic recycling. The two particular processes of the interaction (rebound and attachment) are examined visually using high-speed photography in a laboratory scale flotation column. The effects of surfactant (concentration and type) and plastic material on these two stages are also studied quantitatively. The considered surfactants are Tea Saponin, SDBS and CTMAB, while the plastic materials are polyethylene, polypropylene and Teflon. A simple model of bubble attachment time is developed to analyse and interpret the experimental data. The results show that the presence of surfactant significantly affects the rebound process of a gas bubble, while the type of surfactant and plastic material seem to have slight effect. The bubble attachment process is a strong function of the surfactant and plastic material, which can be associated with the changing of bubble size and its hydrodynamic fluid resistance, contact angle on solid surface, as well as surface tension and viscosity of the solution. Such results are helpful for evaluation and analysis of the plastic flotation process, especially for the selection of reagents and objects at an early stage of design. (c) 2015 Elsevier B.V. All rights reserved.
机译:气泡与颗粒之间的相互作用对于通过浮选分离颗粒至关重要,可用于塑料回收。在实验室规模的浮选柱中使用高速摄影术目视检查相互作用的两个特定过程(回弹和附着)。还定量研究了表面活性剂(浓度和类型)和塑性材料对这两个阶段的影响。认为的表面活性剂是茶皂素,SDBS和CTMAB,而塑料材料是聚乙烯,聚丙烯和特氟隆。建立了气泡附着时间的简单模型,以分析和解释实验数据。结果表明,表面活性剂的存在显着影响气泡的回弹过程,而表面活性剂和塑料的类型似乎影响不大。气泡附着过程是表面活性剂和塑料材料的强大功能,这可能与气泡大小及其流体动力阻力,固体表面接触角以及溶液的表面张力和粘度的变化有关。这样的结果有助于评估和分析塑料浮选过程,特别是在设计初期就选择试剂和物体。 (c)2015 Elsevier B.V.保留所有权利。

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