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碳源对聚磷菌和聚糖原菌竞争的短期影响。

Short-term effects of carbon source on the competition of polyphosphate accumulating organisms and glycogen accumulating organisms.

作者信息

Oehmen A, Yuan Z, Blackall L L, Keller J

机构信息

Advanced Wastewater Management Centre, The University of Queensland, St Lucia, QLD 4072, Australia.

出版信息

Water Sci Technol. 2004;50(10):139-44.

Abstract

The effectiveness of enhanced biological phosphorus removal (EBPR) systems is directly affected by the competition of polyphosphate accumulating organisms (PAOs) and glycogen accumulating organisms (GAOs). This study investigated the short-term effects of carbon source on PAO and GAO performance. The tests were designed to clearly determine the impact of volatile fatty acid (VFA) composition on the performance of two types of biomass, one enriched for PAOs and the other for GAOs. The two populations were enriched in separate reactors using identical operating conditions and very similar influent compositions with acetate as the sole carbon source. The only difference was that a very low level of phosphorus was present in the influent to the GAO reactor. The abundance of PAOs and GAOs was quantified using fluorescence in-situ hybridisation. The results clearly show that there are some very distinctive differences between PAOs and GAOs in their ability to utilise different carbon substrates. While both are able to take up acetate rapidly and completely, the GAOs are far slower at consuming propionate than the PAOs during short-term substrate changes. This provides a potentially highly valuable avenue to influence the competition between PAOs and GAOs. Other VFAs studied seem to be less usable in the short term by both PAOs and GAOs, as indicated by their much lower uptake rates.

摘要

强化生物除磷(EBPR)系统的有效性直接受到聚磷菌(PAOs)和糖原积累菌(GAOs)竞争的影响。本研究调查了碳源对PAO和GAO性能的短期影响。这些试验旨在明确确定挥发性脂肪酸(VFA)组成对两种生物量性能的影响,一种富含PAO,另一种富含GAO。这两种菌群在单独的反应器中富集,采用相同的运行条件和非常相似的进水组成,以乙酸盐作为唯一碳源。唯一的区别是GAO反应器进水中的磷含量非常低。使用荧光原位杂交法定量PAO和GAO的丰度。结果清楚地表明,PAO和GAO在利用不同碳底物的能力方面存在一些非常明显的差异。虽然两者都能够快速、完全地摄取乙酸盐,但在短期底物变化期间,GAO消耗丙酸盐的速度比PAO慢得多。这为影响PAO和GAO之间的竞争提供了一条潜在的极有价值的途径。研究的其他VFA在短期内似乎对PAO和GAO都不太可用,这从它们低得多的摄取率可以看出。

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