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Determining independent control of dual-frother systems - Gas holdup, bubble size and water overflow rate

机译:确定双重起泡系统的独立控制-气体滞留率,气泡大小和水溢出率

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摘要

In flotation, frothers provide two main functions: control of pulp hydrodynamic properties and control of froth properties. In this paper dual-frother systems (blends) are investigated to determine combinations which provide independence over these two functions. Using a column on an air-water system, Sauter mean bubble diameter (D_(32)) and gas holdup (E_g) were measured as the hydrodynamic properties and water superficial overflow rate (J_(wo)) as the froth property. Blends of Alcohols with Polypropylene Glycols (PPGs) and Polyethylene Glycols (PEGs) were tested. Pre-mixed frother blends did not provide independence. The second approach was to use Alcohols as base and PPGs and PEGs as additives. Candidate blends were eliminated for a variety of reasons: with 1-Hexanol/TetraEG, J_(wo) converged to roughly the same level as TetraEG concentration was increased; with 1-Butanol/PPG, D_(32) increased upon addition of PPG. The search was eventually successful: 1-Butanol/PEG blends gave independent control provided PEG had four or more EO groups. The increase in D_(32) noted with 1-Butanol/PPG blends was traced to partitioning of 1-Butanol to the froth which reduced 1-Butanol concentration below the critical coalescence concentration.
机译:在浮选中,起泡剂提供两个主要功能:控制纸浆的流体动力学性质和控制泡沫性质。在本文中,对双起泡剂系统(共混物)进行了研究,以确定在这两个功能上具有独立性的组合。使用空气-水系统上的色谱柱,测量索特(Sauter)的平均气泡直径(D_(32))和含气量(E_g)作为流体力学性质,测量水的表面溢流率(J_(wo))作为泡沫性质。测试了醇与聚丙二醇(PPG)和聚乙二醇(PEG)的共混物。预混的起泡剂混合物没有提供独立性。第二种方法是使用酒精作为碱,使用PPG和PEG作为添加剂。消除候选混合物的原因有多种:使用1-Hexanol / TetraEG,J_(wo)收敛到与TetraEG浓度增加大致相同的水平;如果使用1-丁醇/ PPG,则添加PPG后D_(32)增加。该搜索最终成功:只要PEG具有四个或多个EO基团,则1-丁醇/ PEG共混物可进行独立控制。 1-丁醇/ PPG混合物中D_(32)的增加可追溯到1-丁醇分配到泡沫中,这将1-丁醇的浓度降低到临界聚结浓度以下。

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