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The effect of aluminium and magnesium sulphate on the rate of ferrous iron oxidation by Leptospirillum ferriphilum in continuous culture

机译:硫酸镁对连续培养中Leptospirillum Ferriphilum氧化铁氧化率的影响

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In heap bioleaching the dissolution of gangue minerals from igneous ore materials can lead to the build-up of considerable concentrations of Mg and Al sulphates in the recycled leach solution. This may interfere with microbial ferrous iron oxidation, which drives the oxidation of the target minerals. The kinetics of the oxidation process have been well studied for Leptospirillum and Acidithiobacillus species in tank systems. Although not directly comparable, kinetic parameters derived for tank systems do apply also for heap bioleach conditions. In the present study the effect of solution concentrations of Mg and Al as sulphate at individual concentrations of 0 to 10 g/L and combined concentrations 0 to 16 g/L each has been investigated in continuous culture using Leptospirillum ferriphilum. Increasing the concentrations of the salts increasingly depresses the rate of ferrous iron oxidation and also shifts the viable range more and more into the low potential region. Al significantly reduces the amount of carbon maintained in the reactor (assumed to be commensurate with biomass), whereas Mg actually enhances it at low concentrations. In both cases, however, the rate is always depressed. The results indicate that heap cultures are likely to perform sub-optimally in those operations where build-up of dissolved gangue minerals is not controlled.
机译:在堆生物浸出中,甘蓝矿物的溶解来自火成矿石材料可以导致再循环浸出溶液中相当大浓度的Mg和Al硫酸盐的积聚。这可能干扰微生物氧化铁氧化,其驱动靶矿物的氧化。氧化过程的动力学已经很好地研究了罐系统中的乳螺旋状氧化钛和酸酐物种。虽然没有直接可比较,但是导出用于罐系统的动力学参数也适用于堆生物植物条件。在本研究中,使用Leptospirillulferiphilum在连续培养中研究了Mg和Al的溶液浓度为0至10g / L的硫酸盐,并在连续的培养中研究了0至16g / L.增加盐的浓度越来越抑制铁铁氧化的速率,并且还将可行范围越来越多地移入低潜在区域。 Al显着降低了反应器中保持的碳量(假设与生物量相称),而Mg实际上在低浓度下增强。然而,在这两种情况下,速度始终令人沮丧。结果表明,堆培养物可能在不控制溶解的膨松矿物的积聚的那些操作中进行次次。

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