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Leaching of a pyrite-based ore containing copper using sulfuric acid and hydrogen peroxide

机译:使用硫酸和过氧化氢浸出含有铜的铜矿的矿石

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The oxidation of sulfide-based ores is industrially relevant as it facilitates the extraction of valuable metals and eliminates undesired elements from an ore. Even though oxidation can be done thermally (pyrometallurgy), solution-based (hydrometallurgical) methods are currently sought as they represent a more sustainable option. Here, the leaching of a sulfide ore (32% Fe, 2% Cu) is investigated using a mixture of sulfuric acid and hydrogen peroxide (0.15?M H_(2)SO_(4)and 0.5?M H_(2)O_(2)), in proportions forming a slurry 10% w/w. The leaching process is found to occur in two stages, the first corresponding to an exothermic, peroxide-mediated dissolution, and the second corresponding to an acid-mediated reaction, which appears to be thermoneutral. Control experiments performed with only peroxide confirm that this oxidant is involved in the first stage of the dissolution process. The leaching process leads to copper and iron dissolution (15% and 5%, respectively), as determined using atomic absorption spectrometry (AAS). The mass of pyrite dissolved is estimated from AAS measurements and, from the stoichiometry of the peroxide-mediated dissolution reaction, it is found that ~?80% of the peroxide participates in the dissolution, with the other 20% being decomposed, in a reaction catalyzed by ferric (Fe~(+3)) ions produced during the first stage of the dissolution.
机译:基于硫化物的矿石的氧化是在工业上相关的,因为它有助于提取有价值的金属并从矿石中消除不需要的元素。即使氧化可以热(PyromealLyhurgy),目前正在寻求基于溶液的(氢化冶金)方法,因为它们代表了更可持续的选择。这里,使用硫酸和过氧化氢的混合物研究硫化物矿石(32%Fe,2%Cu)的浸出(0.15·m H_(2)SO_(4)和0.5Ω,H_(2)O_( 2)),以比例形成浆料10%w / w。发现浸出过程发生在两个阶段,第一对应于放热,过氧化介导的溶解和对应于酸介导的反应的第二对应,这似乎是热对抗的。仅通过过氧化物进行的对照实验证实该氧化剂参与溶解过程的第一阶段。使用原子吸收光谱法(AAS)测定,浸出过程导致铜和铁溶解(分别为15%和5%)。从AAS测量估计溶解的溶解质量,并且从过氧化物介导的溶解反应的化学计量中估计,发现~~ 80%的过氧化物参与溶解,在反应中,其他20%分解在溶解的第一阶段产生的铁(Fe〜(+ 3))离子催化。

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