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The kinetics of ferrous-iron oxidation by Acidithiobacillus ferrooxidans and Leptospirillum ferrooxidans:effect of cell maintenance

机译:亚铁酸硫杆菌和亚铁钩端螺旋体对亚铁氧化的动力学:细胞维持作用

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摘要

The aim of this work was to determine whether or not the variable maintenance equation proposed by Neijssel and Tempest [Arch.Microbiol.107 (1976)215] and modified by Pirt [Arch.Microbiol.133 (1982)300] could expalin the differences in the experimentally determined and predicted yield and maintenance coefficients of the ferrous-iron oxidising bacteria used in bioleaching operations determined under different growth conditions.The results obtained indicated that the maintenance requirement of energy sufficient cultures is a combination of the variable and constant maintenance energy requirements.For this reason,modelling the bioenergetics of energy sufficient cultures assuming a constant amintenance energy requirement results in a significant overestimation of the maximum bacterial yield.However,the variable maintenance equation proposed by Pirt [Arch.Microbiol.133 (1982)300] may be used to determine the maximum bacterial yields and the maintenance coefficients from both energy limited and energy sufficient experiments.This is because this model is able to account for variations is the growth rate as a result of changes in the maintenance requirement due to the micro-organisms being limited by more than one factor.It is thus suggested that the variable maintenance equation be used instead of the constant maintenance equation when quantifying the bioenergetics of micro-organisms unless the energy source is known to be the limiting substrate.
机译:这项工作的目的是确定由Neijssel和Tempest提出的可变维持方程[Arch.Microbiol.107(1976)215]和由Pirt修改的[Arch.Microbiol.133(1982)300]是否可以解释这些差异。实验确定和预测的在不同生长条件下用于生物浸出操作的亚铁氧化细菌的产量和维持系数。结果表明,充足能量培养物的维持要求是可变和恒定维持能量要求的结合因此,在假设恒定的维持能量需求的情况下对能量充足的培养物的生物能学进行建模会导致对最大细菌产量的高估。但是,Pirt提出的可变维持方程[Arch.Microbiol.133(1982)300]可能用于从两种能量限制条件下确定最大细菌产量和维持系数这是因为该模型能够解释由于微生物受一个以上因素限制而导致维护要求发生变化而导致的增长率变化。定量微生物的生物能学时,除非已知能源是限制性底物,否则使用维持方程代替恒定维持方程。

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