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Selenium partitioning between slag and matte during smelting

机译:冶炼过程中炉渣和冰沙之间的硒分配

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Copper concentrates usually contain a number of minor as well as precious elements, the control of which in copper smelting processes is often a key to the quality of the anode copper produced and may also have a bearing on the overall economics of the process. During copper smelting, the copper concentrates are partially oxidized to form slag and matte. The molten slag and matte are separated from each other in the settler. The matte being heavier in density settles at the bottom of the furnace and slag being lighter in density floats over the matte and is eventually discarded off. During the separation, selenium is distributed between slag and matte. Selenium is a value added by-product of copper process. The lower recovery of selenium from the copper process is attributed to the high loss of selenium to the discarded slag. Knowledge of the distribution and form of selenium in slag and matte is very important in the control of the selenium loss, although to date very little is known regarding their distribution. The samples of slag and matte were collected from the smelter exit before their separation. Selenium was added in different proportions in the sample. The experiments involving slag-matte separation were performed at 1250A degrees C for 4 hours of soaking time under inert atmosphere in a vertical tubular furnace. The distribution of selenium and the mechanism by which selenium is dissolved in matte and slag have been established by this study.
机译:铜精矿通常包含许多次要和珍贵元素,在铜熔炼过程中对其进行控制通常是所生产阳极铜质量的关键,并且也可能影响该过程的整体经济性。在铜冶炼期间,铜精矿被部分氧化以形成炉渣和无光泽。熔渣和冰渣在沉降器中相互分离。密度较大的磨砂沉淀在炉子的底部,密度较轻的炉渣浮在磨砂上,最终被丢弃。在分离过程中,硒分布在炉渣和冰粗之间。硒是铜工艺的附加值副产品。铜工艺中硒的回收率较低归因于废弃炉渣中硒的大量流失。尽管到目前为止对硒的分布情况知之甚少,但了解矿渣和冰沙中硒的分布和形式对于控制硒的损失非常重要。在分离之前,从冶炼厂出口收集炉渣和冰沙的样品。硒以不同比例添加到样品中。在立式管式炉中,在惰性气氛下,在1250A的温度下进行了4小时的均热时间的熔渣-哑光分离实验。这项研究已经建立了硒的分布以及硒在冰沙和矿渣中的溶解机理。

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