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Changes in Metal Leachability through Stimulation of Iron Reducing Communities within Waste Sludge

机译:通过刺激废物污泥中的铁还原社区来改变金属可浸出性

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Bioreduction of ferric iron-rich wastes is a rapidly emerging technology for the extraction/ recovery of metals from low-grade ores and metallurgical wastes. However, despite studies being successful, they have only been demonstrated at laboratory scale and issues relating to economic, industrial scale application have yet to be studied. Using bioreduction as a pre-treatment to increase recovery yield is a relatively new concept. This study examines the biostimulation of microbial communities to induce bioreduction of metalliferous sludge and the effect that this has on the leachability of metals from the waste using dilute sulphuric acid. Data shows an increase in both zinc and copper leachability after bioreduction, with maximum six fold and eleven fold increase (compared to pre-treatment) in the amount of zinc and copper leached respectively.
机译:富铁铁废物的生物还原是一种用于从低品位矿石和冶金废物中提取/回收金属的新兴技术。然而,尽管研究取得了成功,但它们仅在实验室规模得到证实,与经济,工业规模应用有关的问题尚待研究。使用生物还原作为预处理以提高回收率是一个相对较新的概念。这项研究检查了微生物群落的生物刺激作用,以诱导含金属污泥的生物还原,以及这对使用稀硫酸对废物中金属的浸出性的影响。数据显示,生物还原后锌和铜的浸出率均增加,其中浸出的锌和铜的量分别增加了最大六倍和十一倍(与预处理相比)。

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