The processing of ore by hydrometallurgy or pyrometallurgy typically has a high energy demand, and associated release of carbon dioxide. Thus there is a need to develop more energy-efficient and environmentally-compatible processes. This article demonstrates that deep eutectic solvent (DES) ionic liquids provide one such method since they can be used to selectively dissolve and recover native gold and tellurium, sulphides and tellurides. Ionic liquids are anhydrous salts that are liquid at low temperature. They are powerful solvents and electrolytes with potential for high selectivity in both dissolution and recovery. Deep eutectic solvents are a form of ionic liquid that are mixtures of salts such as choline chloride with hydrogen-bond donors such as urea. DESs are environmentally benign, yet chemically stable and, furthermore, the components are already produced in large quantities at comparable costs to conventional reagents. Electrum, galena and chalcopyrite, as well as tellurobismuthite (Bi₂Te₃), were soluble in DES through an oxidative leach at 45–50 °C. Leaching rates determined by a novel technique employing an optical profiler were very favourable in comparison to the current industrial process of cyanidation. Pyrite was notably insoluble by an oxidative leach. However, pyrite, and indeed any other sulphide, could be selectively dissolved by electrolysis in a DES, thus suggesting a protocol whereby target inclusions could be liberated by electrolysis and then dissolved by subsequent oxidation. Ionometallurgy could thus offer a new set of environmentally-benign process for metallurgy.
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机译:通过湿法冶金或火法冶金加工矿石通常具有较高的能量需求,并且伴随有二氧化碳的释放。因此,需要开发更节能和环保的方法。本文证明了深共晶溶剂(DES)离子液体提供了一种这样的方法,因为它们可用于选择性地溶解和回收天然金和碲,硫化物和碲化物。离子液体是在低温下呈液态的无水盐。它们是强大的溶剂和电解质,在溶解和回收方面均具有很高的选择性。深共熔溶剂是离子液体的一种形式,是盐(例如氯化胆碱)和氢键供体(例如尿素)的混合物。 DES对环境无害,但在化学上稳定,此外,这些组分已经以与传统试剂相当的成本大量生产。 Electrum,方铅矿和黄铜矿以及碲铋铋石(Bi 2 Te 3)在45–50°C下通过氧化浸出可溶于DES。与当前的氰化工业过程相比,通过采用光学轮廓仪的新技术确定的浸出率非常有利。硫铁矿明显不溶于氧化浸出。但是,黄铁矿以及实际上任何其他硫化物都可以通过在DES中电解选择性地溶解,因此提出了一种方案,通过该方法可以通过电解释放目标夹杂物,然后通过后续的氧化作用将其溶解。因此,离子冶金可以为冶金提供一套新的对环境有益的工艺。
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