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BUBBLE SIZE DISTRIBUTION MEASUREMENTS IN A POROUS MEDIA-AERATED FLOTATION CELL

机译:多孔介质曝气浮选池中气泡大小分布的测量

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Bubble size distribution in a porous media-aerated flotation cell was investigated by using an image analysis technology in this paper. Results showed that it was feasible to determine the bubble size distribution according to image analysis software. For a porous media-aerated flotation cell, bubble size was directly dependent on poles size of porous media. Furthermore, operating parameters of the cell could affect bubble size. Mean bubble diameters increased with increasing of air flow rate. In contrast, it decreased when adding deinking agent. Its decreasing with increasing pulp flow rate under given conditions illustrated the fact that proper turbulence strength at the inlet of air bubbles was favorable for reducing bubble size. Gas holdup increased with increasing air flow rate to some extent, but it had a peak value. Gas holdup would rise obviously when deinking agent existed in the cell. An efficient approach to enhancing bubble surface area flux was to increase air flow rate and keep small bubble size at the same time.
机译:利用图像分析技术研究了多孔介质浮选池中气泡的大小分布。结果表明,利用图像分析软件确定气泡尺寸分布是可行的。对于多孔介质充气浮选池,气泡大小直接取决于多孔介质的极点大小。此外,电池的工作参数可能会影响气泡大小。平均气泡直径随着空气流量的增加而增加。相反,当添加脱墨剂时它减少。在给定条件下,其随纸浆流速的增加而减小,这说明了这样的事实,即在气泡入口处适当的湍流强度有利于减小气泡尺寸。气体滞留量随空气流速的增加而有所增加,但有一个峰值。当电池中存在脱墨剂时,气体滞留率将明显增加。增大气泡表面积通量的有效方法是增加空气流量并同时保持较小的气泡尺寸。

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