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首页> 外文期刊>Transactions of the Institutions of Mining and Metallurgy, Section C. Mineral Processing and Extractive Metallurgy >Distribution of elements between copper and FeO_x-CaO-SiO_2 slags during pyroprocessing of WEEE: Part 2 - indium
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Distribution of elements between copper and FeO_x-CaO-SiO_2 slags during pyroprocessing of WEEE: Part 2 - indium

机译:WEEE热解过程中铜与FeO_x-CaO-SiO_2炉渣之间元素的分布:第2部分-铟

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摘要

Electronic waste (WEEE) is being generated at a rapidly increasing rate and leading to the removal of scarce and valuable metals from the materials cycle. The search for efficient WEEE reprocessing methods requires reliable data on the distribution of these valuable metals during smelting. In this work the distribution ratio of indium between FeO_x-CaO-SiO_2 slags and copper was examined at an oxygen partial pressure of 10~(-8) MPa (10~(-7) atm) and at 1300°C. The indium distribution ratio was strongly dependant on the CaO content, decreasing as the CaO content increased, but relatively unaffected by the Fe/SiO_2 ratio of the slag over the range examined. Indium was inferred to be present in slag as InO_(1.5). The activity coefficient of lnO_(1.5) was calculated and presented as iso-activity coefficient curves on the copper-saturated FeO_x-CaO-SiO_2 phase diagram. Volatilisation of indium under the oxidising conditions used in this work was insignificant, and it was shown that this is consistent with theoretical expectations. Only in much lower oxygen partial pressure environments can indium volatilisation be expected.
机译:电子废物(WEEE)的产生速度正在迅速增加,并导致从材料循环中去除稀有和有价值的金属。为了寻求有效的WEEE后处理方法,需要在冶炼过程中获得有关这些有价金属分布的可靠数据。在这项工作中,在氧分压为10〜(-8)MPa(10〜(-7)atm)和1300°C的条件下,研究了FeO_x-CaO-SiO_2炉渣与铜之间铟的分布比。铟分布比强烈依赖于CaO含量,随着CaO含量的增加而降低,但在所研究的范围内不受渣的Fe / SiO_2比的影响。推断铟以InO_(1.5)的形式存在于炉渣中。计算了lnO_(1.5)的活度系数,并以等活度系数曲线的形式显示在铜饱和的FeO_x-CaO-SiO_2相图上。在这项工作中使用的氧化条件下,铟的挥发作用微不足道,这表明与理论预期是一致的。只有在较低的氧分压环境下,才能预期铟挥发。

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