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好氧、生长缓慢的活性污泥培养物中聚-β-羟基丁酸酯代谢的化学计量学和动力学

Stoichiometry and kinetics of poly-beta-hydroxybutyrate metabolism in aerobic, slow growing, activated sludge cultures.

作者信息

Beun J J, Paletta F, Van Loosdrecht M C, Heijnen J J

机构信息

Kluyver Laboratory for Biotechnology, Delft University of Technology, Julianalaan 67, 2628 BC Delft, The Netherlands.

出版信息

Biotechnol Bioeng. 2000 Feb 20;67(4):379-89. doi: 10.1002/(sici)1097-0290(20000220)67:4<379::aid-bit1>3.0.co;2-2.

Abstract

This paper discusses the poly-beta-hydroxybutyrate (PHB) metabolism in aerobic, slow growing, activated sludge cultures, based on experimental data and on a metabolic model. The dynamic conditions which occur in activated sludge processes were simulated in a 2-L sequencing batch reactor (SBR) by subjecting a mixed microbial population to successive periods of external substrate availability (feast period) and no external substrate availability (famine period). Under these conditions intracellular storage and consumption of PHB was observed. It appeared that in the feast period, 66% to almost 100% of the substrate consumed is used for storage of PHB, the remainder is used for growth and maintenance processes. Furthermore, it appeared that at high sludge retention time (SRT) the growth rate in the feast and famine periods was the same. With decreasing SRT the growth rate in the feast period increased relative to the growth rate in the famine period. Acetate consumption and PHB production in the feast period both proceeded with a zero-order rate in acetate and PHB concentration respectively. PHB consumption in the famine period could best be described kinetically with a nth-order degradation equation in PHB concentration. The obtained results are discussed in the context of the general activated sludge models.

摘要

本文基于实验数据和代谢模型,探讨了好氧、生长缓慢的活性污泥培养物中的聚-β-羟基丁酸酯(PHB)代谢。通过使混合微生物群体经历连续的外部底物可利用期( feast期)和无外部底物可利用期( famine期),在2升序批式反应器(SBR)中模拟活性污泥过程中出现的动态条件。在这些条件下观察到了PHB的细胞内储存和消耗。结果表明,在feast期,消耗的底物中有66%至几乎100%用于PHB的储存,其余用于生长和维持过程。此外,还发现,在高污泥停留时间(SRT)时,feast期和famine期的生长速率相同。随着SRT的降低,feast期的生长速率相对于famine期的生长速率增加。feast期的乙酸盐消耗和PHB产生分别以乙酸盐和PHB浓度的零级速率进行。famine期的PHB消耗在动力学上最好用PHB浓度的n级降解方程来描述。在一般活性污泥模型的背景下讨论了所得结果。

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