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Flotation of coarse particles by hydrodynamic cavitation generated in the presence of conventional reagents

机译:在常规试剂存在下产生的粗颗粒的浮选粗颗粒

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Hydrodynamic cavitation (HC) (typically used to generate submicron bubbles) are frequently examined to improve froth flotation efficiency of ultrafine particles (-38 mu m); however, the study of their effects on flotation parameters during the process of coarse particles ( +100 mu m) was not significantly explored. The main aim of this investigation is to discover the impacts of HC on effective flotation variables and flotation recovery of coarse particles (FRCP). Various surfactants (frothers: Methyl isobutyl carbinol (MIBC) and pine oil (PO), and dodecyl amine (DDA)) were used for the HC conditions. For comparison purposes, two series of flotation experiments in the absence and presence of HC were conducted by using coarse pure quartz particles (-425 + 106 mu m). Variable importance measurements (VIMs) of random forest were applied to compare and assess impacts of flotation parameters (particle size, flotation conventional bubble (CB) size, impeller speed, and air flow rate) on FRCP in the absence and presence of HC. Outputs of VIMs indicated that the negative effect of particle size on FRCP was decreased and the capability of CB for floating coarse particles was improved in the presence of HC. Moreover, VIM results showed that in the presence of HC, the highest FRCP can be achieved when turbulent is lower. Generally, variations in the airflow rate had negligible impacts on FRCP. Flotation experiments suggested that HC in the presence of the collector can overcome the absence of frothers in a flotation system. These results can be used for enhancement of selective separation via froth flotation.
机译:经常检查流体动力空化(通常用于产生亚微米泡泡)以提高超细颗粒的泡沫浮选效率(-38μm);然而,没有显着探索它们在粗颗粒(+100μm)过程中对浮选参数的影响。该调查的主要目的是发现HC对粗颗粒(FRCP)的有效浮选变量和浮选回收的影响。使用各种表面活性剂(塑料:甲基异丁基猪肉(MIBC)和松油(PO)和十二烷基胺(DDA))用于HC条件。为了比较目的,通过使用粗纯石英颗粒(-425 +106μm)进行HC的不存在和存在的两系列浮选实验。应用随机森林的可变重要性测量(Vims)来比较和评估浮选参数(粒度,浮选常规气泡(Cb)尺寸,叶轮速度和空气流速)在缺乏和存在HC的情况下对FRCP的影响。 Vims的输出表明,在HC存在下,降低了粒径对FRCP上的粒度对漂浮粗颗粒的能力。此外,ViM结果表明,在HC的存在下,湍流较低时可以实现最高的FRCP。通常,气流速率的变化对FRCP的影响可忽略不计。浮选实验表明,收集器存在的HC可以克服浮选系统中的缺失。这些结果可用于通过泡沫浮选增强选择性分离。

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