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Preliminary Study on the Inhibition of Biological Oxidation in Reactive Mine Tailings by Agricultural Residues

机译:残留对农业尾矿生物氧化抑制作用的初步研究

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The decomposition of multi-metal mine tailings pose significant risk to the environment as point sourees of acidic,metal-rich effluents (acid mine drainage [AMD]).The accelerated oxidative dissolution of sulfide minerals in tailings by acidophilic baeterias represented by Acidithiobacillusferrooxidans has been widely reported.The different agricultural residues added into the mediums of Acidithiobacillus ferrooxidans were investigated to study the impact of the acid-generating and Fe2+ oxidation.Six treatments for inhibiting the activity of Acidithiobacillus ferrooxidans were set up with four different agricultural residues.The changes in physicochemical parameters for up to 1 week were analyzed everyday.Differences of treatments were apparent among mediums that added the powder of walnut shell and those that added other three agricultural residues or nothing.These differences included higher pH values,lower redox potentials,and higher concentrations of soluble Fe2+ in the medium added powder of walnut shell.The lab experiment showed that the powder of walnut shell was effective in inhibiting the activity of Acidithiobacillus ferrooxidans The inhibition rote of Fe2+ oxidation measured at the seventh day was 58.41% with adding powder of walnut shell at the concentration of 2g/L.The results suggested that continuous input of walnut shell could control pollution and promote re-vegetation of the area covered by coal mine wastes.
机译:多金属矿山尾矿的分解对酸性,富含金属的废水(酸性矿山排水[AMD])的点源造成了对环境的重大风险。以酸性硫代杆菌铁氧体为代表的嗜酸性细菌加速了尾矿中硫化物矿物的氧化溶解。研究了酸性氧化亚铁硫杆菌培养基中添加的不同农业残留物,以研究酸生成和Fe2 +氧化的影响。建立了四种抑制酸性氧化亚铁硫杆菌酶活性的方法,并用四种不同的农业残留物进行了研究。每天分析长达1周的理化参数。添加核桃壳粉的培养基与添加其他三种农业残留物或不添加其他物质的培养基之间的处理差异明显。这些差异包括较高的pH值,较低的氧化还原电势和较高的浓度添加的介质中可溶性Fe2 +的含量实验表明,该核桃壳粉有效抑制了酸性氧化亚铁硫杆菌的活性。以2g / g的浓度加入核桃壳粉,第七天测得的Fe2 +氧化抑制率达58.41%。 L.结果表明,连续输入核桃壳可以控制污染并促进煤矿废料覆盖地区的植被恢复。

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