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Frother structure-property relationship: Aliphatic alcohols and bubble rise velocity

机译:其他结构 - 财产关系:脂肪醇和泡沫上升速度

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This study is part of our investigation into the frother structure-property relationship, here focusing on aliphatic alcohols. The structure variation is the length of the alkyl chain (C4 to C7), and position of the methyl branch (-CH3) and hydroxyl (-OH) group in five- and six-carbon alcohols. The property was bubble rise velocity. Single bubble velocity profiles were determined in a 350 cm water column. Velocity at 300 cm as a function of concentration is determined and the concentration to reach minimum velocity at 300 cm (CMV) estimated. The most significant effect is the chain length which decreases CMV by about one order of magnitude for each additional carbon. The next strongest effect is the methyl branch position which decreases CMV as it is moved away from the hydroxyl group. The least effect is the position of OH which nevertheless systematically decreases CMV as it is moved from position C-3 to C-1 (i.e., from the center to the terminus of the molecule). An argument based on surfactant molecule packing on the bubble surface is proposed to account for the effect on CMV. From the results the structure of the most effective aliphatic alcohol frother is suggested. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本研究是我们对诸如紫外线结构性质关系的调查的一部分,这里侧重于脂族醇。结构变化是烷基链(C4至C7)的长度,以及五碳醇中的甲基分支(-CH3)和羟基(-OH)基团的位置。该物业是泡沫上升速度。在350cm水柱中测定单个气泡速度曲线。确定为浓度函数300厘米的速度,估计浓度为300cm(CMV)的浓度达到最小速度。最显着的效果是链长,其为每种额外碳的约一个级别下降约一个级。下一个最强的效果是甲基分支位置,其降低CMV,因为它远离羟基移动。效果最小是OH的位置,然而,最多系统地降低CMV,因为它从位置C-3移动到C-1(即,从中心到分子的末端)。提出了一种基于表面活性剂分子包装在气泡表面上的论据,以解释对CMV的影响。从结果提出了最有效的脂族酒精的结构。 (c)2016 Elsevier Ltd.保留所有权利。

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