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不同污泥龄下莫诺德动力学的有效性——好氧条件下蛋白胨的生物降解

Validity of Monod kinetics at different sludge ages--peptone biodegradation under aerobic conditions.

作者信息

Orhon Derin, Cokgor Emine Ubay, Insel Guclu, Karahan Ozlem, Katipoglu Tugce

机构信息

Turkish Academy of Sciences, Piyade Sokak No. 27, 06550, Cankaya, Ankara, Turkey.

出版信息

Bioresour Technol. 2009 Dec;100(23):5678-86. doi: 10.1016/j.biortech.2009.06.046. Epub 2009 Jul 14.

Abstract

The study presented an evaluation of the effect of culture history (sludge age) on the growth kinetics of a mixed culture grown under aerobic conditions. It involved an experimental setup where a lab-scale sequencing batch reactor was operated at steady-state at two different sludge ages (theta(X)) of 2 and 10 days. The system sustained a mixed culture fed with a synthetic substrate mainly consisting of peptone. The initial concentration of substrate COD was selected around 500 mg COD/L. Polyhydroxyalkanoate (PHA) storage occurred to a limited extent, around 30 mg COD/L for theta(X)=10 days and 15 mg COD/L for theta(X)=2 days. Evaluation of the experimental data based on calibration of two different models provided consistent and reliable evidence for a variable Monod kinetics where the maximum specific growth rate, was assessed as 6.1/day for theta(X)=2 days and 4.1/day for theta(X)=10 days. A similar variability was also applicable for the hydrolysis and storage kinetics. The rate of storage was significantly lower than the levels reported in the literature, exhibiting the ability of the microorganisms to regulate their metabolic mechanisms for adjusting the rate of microbial growth and storage competing for the same substrate. This adjustment evidently resulted in case-specific, variable kinetics both for microbial growth and substrate storage.

摘要

该研究评估了培养历史(污泥龄)对在好氧条件下生长的混合培养物生长动力学的影响。实验设置为在实验室规模的序批式反应器中,于两种不同的污泥龄(θ(X)),即2天和10天,下进行稳态运行。该系统维持一种以主要由蛋白胨组成的合成底物为食的混合培养物。底物化学需氧量(COD)的初始浓度选择在500 mg COD/L左右。聚羟基脂肪酸酯(PHA)的储存程度有限,对于θ(X)=10天约为30 mg COD/L,对于θ(X)=2天约为15 mg COD/L。基于两种不同模型的校准对实验数据进行评估,为可变的莫诺德动力学提供了一致且可靠的证据,其中最大比生长速率,对于θ(X)=2天评估为6.1/天,对于θ(X)=10天评估为4.1/天。类似的变异性也适用于水解和储存动力学。储存速率明显低于文献报道的水平,这表明微生物能够调节其代谢机制,以调整微生物生长和储存速率,因为它们竞争相同的底物。这种调整显然导致了针对具体情况的、微生物生长和底物储存的可变动力学。

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