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驯化或未驯化活性污泥脉冲进料对碳储存的短期和长期影响。

Short-term and long-term effects on carbon storage of pulse feeding on acclimated or unacclimated activated sludge.

机构信息

Faculty of Civil Engineering, Environmental Engineering Department, Istanbul Technical University, 34469 Maslak, Istanbul, Turkey.

出版信息

Water Res. 2011 May;45(10):3119-28. doi: 10.1016/j.watres.2011.03.026. Epub 2011 Mar 21.

Abstract

This study was aimed to investigate the effect of different feeding patterns on the physiological state of the activated sludge and related microbial composition in an SBR (SRT of 2 days, acetate as the sole carbon source, aerobic conditions). The activated sludge was acclimated to two subsequent feeding patterns, namely to continuous feeding throughout the reaction phase and then to pulse feeding. FISH and microscopy staining procedure (Nile blue) were used to investigate the microbial composition, in combination with quantitative determination of storage. At steady state, storage was significant even under continuous feeding whereas pulse feeding brought a strong increase of both rate and yield of storage. Short-term and long-term effects were clearly distinguishable: the immediate adaptation of biomass coming from continuous feeding to a single spike accounted for a significant portion of the overall increase of both rate and yield of polymer storage that was obtained after long acclimation to pulse feeding. On the contrary, after either type of feeding, both cultures were mainly constituted from the members of Thauera/Azoarcus group. Thus, the same dominant group preferably consumed the acetate via storage or growth depending on acclimation conditions. Our study clearly showed that a progressive increase of storage capacity is not necessarily due to a shift of microbial composition.

摘要

本研究旨在探讨不同的进料方式对 SBR 中活性污泥生理状态及相关微生物组成的影响(SRT 为 2 天,乙酸盐作为唯一碳源,好氧条件)。活性污泥经过两种连续的进料方式的驯化,即整个反应阶段连续进料,然后脉冲进料。采用 FISH 和显微镜染色程序(Nile blue)研究微生物组成,并结合储存的定量测定。在稳定状态下,即使在连续进料下,储存也很明显,而脉冲进料则大大提高了储存的速率和产率。短期和长期的影响是明显可区分的:来自连续进料的生物量对单个尖峰的立即适应,占长期驯化到脉冲进料后获得的聚合物储存速率和产率整体增加的很大一部分。相反,无论采用哪种进料方式,两种培养物主要由 Thauera/Azoarcus 组的成员组成。因此,相同的优势菌群根据驯化条件,通过储存或生长来优先消耗乙酸盐。我们的研究清楚地表明,储存能力的逐步提高不一定是由于微生物组成的变化。

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