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首页> 外文期刊>Química Nova >Aplica??o de técnicas eletroquímicas no estudo da dissolu??o oxidativa da covelita (CuS) por Thiobacillus ferrooxidans
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Aplica??o de técnicas eletroquímicas no estudo da dissolu??o oxidativa da covelita (CuS) por Thiobacillus ferrooxidans

机译:电化学技术在氧化亚铁硫杆菌对孔雀石(CuS)氧化溶液的研究中的应用

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摘要

Among the copper sulphides, chalcopyrite (CuFeS2), covellite (CuS) and chalcocite (Cu2S) are the most important source of minerals for copper mining industry. The acknowledge of behaviour of these sulphides related with bacterial leaching process are essential for optimization procedures. Despite of its importance, covellite has not deserved much interest of researchers regarding this matter. In this work it was studied the oxidation of covellite by the chemolithotrophic bacterium Thiobacillus ferrooxidans by using electrochemical techniques, such as open circuit potentials with the time and cyclic voltammetry. The experiments were carried out in acid medium (pH 1.8), containing or not Fe2+ as additional energy source, and in different periods of incubation; chemical controls were run in parallel. The results showed that a sulphur layer is formed spontaneously due the acid attack, covering the sulphide in the initial phase of incubation, blocking the sulphide oxidation. However, the bacterium was capable to oxidize this sulphur layer. In the presence of Fe2+ as supplemental energy source, the corrosion process was facilitated, because ocurred an indirect oxidation of covellite by Fe3+, which was produced by T. ferrooxidans oxidation of the Fe2+ added in the medium.
机译:在硫化铜中,黄铜矿(CuFeS2),科弗利特(CuS)和黄铜矿(Cu2S)是铜矿开采行业最重要的矿物来源。这些硫化物的行为与细菌浸出过程有关的公认对于优化程序至关重要。尽管它很重要,但是covellite在这一问题上并没有引起研究人员的兴趣。在这项工作中,研究了通过使用电化学技术(如带时间的开路电势和循环伏安法),通过化学营养型细菌铁氧化硫氧化硫杆菌(Thiobacillus ferrooxidans)对铜沸石的氧化。实验是在酸性介质(pH 1.8)中进行的,该介质含有或不含Fe2 +作为额外的能源,并且在不同的孵育时间段进行;化学控制平行进行。结果表明,由于酸的侵蚀,硫磺层自然形成,在培养初期覆盖了硫化物,阻止了硫化物的氧化。但是,细菌能够氧化该硫层。在存在Fe2 +作为补充能源的情况下,腐蚀过程得以促进,因为发生了由Fe3 +间接引发金缕石氧化的情况,而Fe3 +是由铁氧化三氧化铁对介质中添加的Fe2 +进行氧化而产生的。

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    《Química Nova》 |2002年第1期|共7页
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