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Matte Entrainment by SO2 Bubbles in Copper Smelting Slag

机译:铜冶炼渣中的SO2气泡哑光夹带

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The attachment of copper matte by bubbles in slags, during the copper smelting process, plays a key role in the copper loss. This paper aims to provide an in-depth insight into the copper matte entrainment by bubbles in the copper production. The bubble size distribution and matte film thickness as well as the bubble detachment height were considered based on industrial and laboratory slag samples. The results indicated that most SO2 micro-bubbles in both slag samples were below 650 mu m, which could penetrate the interface and thus transport matte into the slag phase. The matte film thickness surrounding the micro-bubbles tended to be less than 30 mu m and became thinner with increasing bubble size. Furthermore, micro-bubbles larger than 350 mu m could theoretically rise by 0.5m in the slag phase even with the drag force of the matte droplets.
机译:在铜冶炼过程中,铜遮罩通过气泡附着在铜损失期间在铜损中起着关键作用。 本文旨在通过铜生产中的泡沫深入了解铜遮罩夹带。 基于工业和实验室渣样品,考虑了气泡尺寸分布和磨砂膜厚度以及气泡脱离高度。 结果表明,两种渣样品中的大多数SO2微气泡低于650 mu m,这可能会穿透界面,从而将遮罩运输到渣阶段。 微气泡周围的磨砂膜厚度倾向于小于30μm,并随着泡沫尺寸的增加而变薄。 此外,即使用哑光液滴的拖曳力,大于350μm的微气泡也可以在炉渣相中理论上升高0.5米。

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