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在短污泥停留时间下,C/N 比对聚羟基丁酸酯(PHB)生产序批式反应器性能的影响。

Influence of the C/N ratio on the performance of polyhydroxybutyrate (PHB) producing sequencing batch reactors at short SRTs.

机构信息

Delft University of Technology, Department of Biotechnology, Julianalaan 67, 2628 BC Delft, The Netherlands.

出版信息

Water Res. 2010 Apr;44(7):2141-52. doi: 10.1016/j.watres.2009.12.031. Epub 2009 Dec 28.

Abstract

Many waste streams that are suitable substrates for mixed culture bioplastic (polyhydroxyalkanoate, PHA) production are nutrient limited and may need to be supplemented to allow sufficient growth of PHA accumulating bacteria. The scope of this study was to investigate the necessity of nutrient supplementation for the enrichment of an efficient PHA producing mixed culture. We studied the influence of different degrees of carbon and nitrogen limitation on the performance of an acetate-fed feast-famine sequencing batch reactor (SBR) employed to enrich PHA storing bacteria. The microbial reaction rates in the SBR showed a shift with a change in the limiting substrate: high acetate uptake rates were found in carbon-limited SBRs (medium C/N ratios 6-13.2 Cmol/Nmol), while nitrogen-limited SBRs (medium C/N ratios 15-24 Cmol/Nmol) were characterized by high ammonia uptake rates. Biomass in strongly nitrogen-limited SBRs had higher baseline PHA contents in the SBR, but carbon-limited SBRs resulted usually in biomass with higher maximal PHA storage capacities. The PHA storage capacity in a nitrogen-limited SBR operated at 0.5 d SRT decreased significantly over less than 5 months operation. For the microbial selection and biomass production stage of a PHA production process carbon limitation seems thus favourable and nutrient deficient wastewaters may consequently require supplementation with nutrients for the selection of a stable PHA storing biomass with a high storage capacity.

摘要

许多适合混合培养生物塑料(聚羟基烷酸酯,PHA)生产的废水都是营养物质有限的,可能需要补充营养物质,以允许足够的PHA 积累细菌生长。本研究的范围是调查营养物质补充对于富集高效 PHA 产生混合培养物的必要性。我们研究了不同程度的碳和氮限制对用于富集聚羟基烷酸酯储存细菌的乙酸进料恒化器序批式反应器(SBR)性能的影响。SBR 中的微生物反应速率随着限制底物的变化而发生变化:在碳限制 SBR 中发现了高乙酸摄取率(中 C/N 比为 6-13.2 Cmol/Nmol),而氮限制 SBR (中 C/N 比为 15-24 Cmol/Nmol)的特点是高氨摄取率。在强烈氮限制的 SBR 中,生物量的基线 PHA 含量较高,但在碳限制的 SBR 中,生物量通常具有更高的最大 PHA 储存能力。在运行 SRT 为 0.5d 的氮限制 SBR 中,PHA 储存能力在不到 5 个月的运行时间内显著下降。对于 PHA 生产过程的微生物选择和生物量生产阶段,碳限制似乎是有利的,因此营养不足的废水可能需要补充营养物质,以选择具有高储存能力的稳定 PHA 储存生物量。

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