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首页> 外文期刊>Hydrometallurgy >The kinetics of ferrous ion oxidation by Leptospirillum ferriphilum in continuous culture: The effect of pH
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The kinetics of ferrous ion oxidation by Leptospirillum ferriphilum in continuous culture: The effect of pH

机译:连续培养中费氏钩端螺旋体氧化亚铁离子的动力学:pH的影响

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The kinetics of ferrous ion oxidation by Leptospirillum ferriphilum were studied in continuous culture with a focus on the effect of solution pH (pH 0.8–2.0), assuming that the effect of pH on cell metabolism can be independently studied of reactor context and other reactions common in bioleach heaps. A simplified competitive ferric ion inhibition model and the Pirt Equation were used to analyze the experimental data. The results showed that the maximum specific activity of L. ferriphilum has a symmetrical bell-shaped curve relationship with pH. The maximum specific ferrous-iron oxidation rate, q_(Fe2+)~(max) gave a highest value of 14.54 mmol Fe~(2+)(mmol C h)~(-1) at pH 1.3, and was described by a quadratic function. The steady state carbon biomass in the reactor and the apparent affinity constant, K′_(Fe2+), also increased with increase in pH; however, a slight increase in the carbon biomass was observed beyond pH 1.6. The results also showed that ferric ion precipitation is significant beyond pH 1.3 and about 13% total iron from the feed was lost at pH 2.0. The maximum biomass yield increased linearly with pH, while the culture maintenance coefficient was significantly small in all experiments and was minimum at pH 1.3. The values are indicative of actively growing chemostat cultures. This study shows that microbial ferrous ion oxidation by L. ferriphilum may be sustained at pH lower than pH 0.8 as the microbial activity is much higher than reported values for common mesophilic acidophiles. This may have implications on how bioleach heap operations can be started-up to improve metal recovery.
机译:在连续培养中研究了铁钩端螺旋体对亚铁离子氧化的动力学,着重于溶液pH值(pH 0.8-2.0)的假设,假设pH对细胞代谢的影响可以独立于反应器环境和其他常见反应进行研究。在生物浸出堆中。用简化的竞争性铁离子抑制模型和Pirt方程分析实验数据。结果表明,铁杆乳杆菌的最大比活性与pH值呈对称的钟形曲线关系。最大比铁氧化速率q_(Fe2 +)〜(max)在pH 1.3时具有最高的14.54 mmol Fe〜(2 +)(mmol C h)〜(-1)值,并用二次方程式表示功能。反应器中的稳态碳生物量和表观亲和常数K'_(Fe2 +)也随着pH值的增加而增加;但是,观察到pH超过1.6时,碳生物量略有增加。结果还表明,在pH值超过1.3时,三价铁离子沉淀明显,在pH值2.0时,进料中的总铁损失了约13%。最大生物量产量随pH线性增加,而培养物维持系数在所有实验中均显着较小,在pH 1.3时最低。该值表示积极生长的化学恒温器文化。这项研究表明,由于微生物活性比普通嗜温嗜酸菌的报道值高得多,因此在低于pH 0.8的pH值下,费城乳杆菌对微生物亚铁离子的氧化作用可能会持续。这可能对如何启动生物浸出堆操作以提高金属回收率有影响。

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