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The effect of total iron concentration and iron speciation on the rate of ferrous iron oxidation kinetics of Leptospirillum ferriphilum in continuous tank systems

机译:总铁浓度和铁形状对连续罐系统乳清丝毛杆菌铁纤维氧化动力学速率的影响

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In this study the results from a systematic study of the oxidation kinetics of Leptospirillum ferriphilum in continuous culture at total iron concentrations ranging from 2 to12 g/L are reported. In all experiments the steady-state concentrations of ferrous iron were small and comparable, and at least 97% of was as ferric. Surprisingly, the specific ferrous iron utilisation rate decreased with increasing total iron concentration, while yield coefficients increased. It was noted that the biomass concentration in the reactor (as measured by both CO_2 uptake rate and cell counts) dramatically increased with increasing total iron concentrations, whereas it stayed more or less the same over a wide range of dilution rates at a given total iron concentration. The experimental data was re-analysed in terms of ferrous iron kinetics using Monod kinetics with a ferric inhibition term. The results confirm that the maximum specific iron utilisation rate is itself a function of ferric iron concentration, declining with increasing concentration. It thus appears that high concentrations of ferric iron stimulate microbial growth while at the same time inhibiting the rate of ferrous iron oxidation. It is postulated that these phenomena are related, i.e. that more growth occurs to reduce the load on the individual cell, possibly by sharing some metabolic functions.
机译:在这项研究中,报道了在连续培养的乳化三亿甲骨粒体的氧化动力学的系统研究的结果报道了从2至12g / L的总铁浓度的连续培养。在所有实验中,稳态浓度的铁铁均小且可比,至少97%的是作为铁。令人惊讶的是,在总铁浓度的增加,特定的铁熨烫利用率随着总铁浓度而降低,而产量系数增加。有人指出,随着总铁浓度的增加,反应器中的生物质浓度(通过CO_2摄取率和细胞计数测量)显着增加,而在给定总铁的各种稀释速率下,它在多个稀释速率范围内保持或多或少相同专注。使用具有丙克抑制术语的Monod动力学,根据亚铁动力学重新分析实验数据。结果证实,最大特定的铁利用率本身是铁浓度的函数,浓度越来越多地下降。因此,看起来高浓度的铁铁刺激微生物生长,同时抑制铁氧化率。假设这些现象是相关的,即可能通过共享一些代谢功能来减少各个细胞上的负荷的增加。

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