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The effects of fluoride and aluminum ions on ferrous-iron oxidation and copper sulfide bioleaching with Sulfobacillus thermosulfidooxidans

机译:氟离子和铝离子对热亚磺芽孢杆菌的亚铁氧化和硫化铜生物浸出的影响

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摘要

Microorganisms that grow at high temperatures can improve Fe(ll) bio-oxidation and thereby its technological applications, such as bioleaching and H2S removal. Conversely, elements present in industrial growth media, such as fluoride, can inhibit bacterial growth and iron bio-oxidation. In this work, the influence of fluoride on the kinetics of ferrous-iron bio-oxidation with Sulfobacillus thermosulfidooxidans was investigated. The effects of fluoride concentrations (0-0.5 mmol L~(-1)) on both iron oxidation and bacterial growth rates were assessed. In addition, the effect of the addition of aluminum, which was intended to complex free fluoride and reduce the concentration of HF through the formation of aluminum-fluoride complexes, was also investigated. The results show that 0.5 mmol L~(-1) NaF completely inhibited bacterial growth within 60h. Nevertheless, fluoride toxicity to S. thermosulfidooxidans was minimized by control of the aluminum-fluoride ratio in the system because, at a 2:1 aluminum-fluoride molar ratio, bacterial growth was similar to that observed in the absence of fluoride ions. Despite a slower bacterial growth rate, fluoride concentrations less than the inhibitory concentration increased the Fe(ll) oxidation rate. Successful copper bioleaching (80-100%) from fluoride-containing sulfide ores (1% total fluoiide) was demonstrated in the presence of aluminum.
机译:在高温下生长的微生物可以改善Fe(II)的生物氧化作用,从而改善其技术应用,例如生物浸出和H2S去除。相反,工业生长介质中存在的元素(例如氟化物)可以抑制细菌生长和铁生物氧化。在这项工作中,研究了氟化物对热硫亚砜氧化亚铁生物氧化动力学的影响。评估了氟化物浓度(0-0.5 mmol L〜(-1))对铁氧化和细菌生长速率的影响。此外,还研究了添加铝的作用,该作用旨在络合游离氟化物并通过形成氟化铝络合物降低HF的浓度。结果表明,0.5 mmol L〜(-1)NaF在60h内完全抑制细菌生长。尽管如此,通过控制体系中的氟化铝比例,氟化物对热硫脲氧化酶的毒性得以最小化,因为在氟化铝摩尔比为2:1时,细菌的生长类似于在不存在氟化物离子的情况下观察到的细菌生长。尽管细菌生长速度较慢,但​​氟化物浓度低于抑制浓度会增加Fe(II)的氧化速度。在铝的存在下,成功地从含氟化物的硫化矿石(总氟含量为1%)中成功进行了铜的生物浸出(80-100%)。

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