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好氧/扩展闲置阶段驱动的生物除磷的诱导机制。

Inducing mechanism of biological phosphorus removal driven by the aerobic/extended-idle regime.

机构信息

College of Environmental Science and Engineering, Hunan University, Changsha, China.

出版信息

Biotechnol Bioeng. 2012 Nov;109(11):2798-807. doi: 10.1002/bit.24543. Epub 2012 May 16.

Abstract

Recently, it was found that excess phosphorus (Pi) removal could be achieved in activated sludge with an aerobic/extended-idle (AEI) process. In this study, batch tests were performed to further reveal the inducing mechanism of Pi removal involved in the AEI process. Unlike the classical anaerobic/aerobic process where an anaerobic Pi release along with a significant polyhydroxyalkanoate (PHA) accumulation drives polyphosphate (poly-P) accumulating organisms (PAOs) to over-store Pi as poly-P, an idle Pi release accompanied by a low-idle PHA production, which is usually considered to be detrimental for biological Pi removal, was observed to induce some cells to effectively uptake Pi in excess of metabolic requirement in the AEI process. With the increase of idle Pi release, Pi removal efficiency linearly increased. The results also showed that a long idle period with a low level of intracellular glycogen could significantly increase Pi release contents, thus remarkably enhancing Pi removal performances. Fluorescence in situ hybridization analysis further revealed that activated sludge in the AEI process contained 37.6% of Accumulibacter (PAOs) and 28.2% of Competibacter and Defluviicoccus-related organisms (glycogen accumulating organisms). This study revealed an actually existent, yet previously unrecognized, inducing mechanism of poly-P accumulation, and this mechanism behind the AEI regime may provide a scientific basis for the development of an alternative strategy for Pi removal from wastewaters.

摘要

最近发现,好氧/扩展闲置(AEI)工艺可实现过量磷(Pi)去除。本研究通过批式实验进一步揭示了 AEI 工艺中涉及的 Pi 去除诱导机制。与经典的厌氧/好氧工艺不同,该工艺中厌氧 Pi 释放伴随着显著的聚羟基烷酸酯(PHA)积累,促使聚磷酸盐(poly-P)积累菌(PAOs)过度储存 Pi 作为 poly-P,而在 AEI 工艺中,观察到闲置 Pi 释放伴随着低水平的 idlePHA 产生,这通常被认为不利于生物 Pi 去除,但却能诱导一些细胞有效摄取超过代谢需求的 Pi。随着闲置 Pi 释放的增加,Pi 去除效率呈线性增加。结果还表明,较长的 idle 期和低水平的细胞内糖原可显著增加 Pi 释放含量,从而显著提高 Pi 去除性能。荧光原位杂交分析进一步揭示,AEI 工艺中的活性污泥含有 37.6%的 Accumulibacter(PAOs)和 28.2%的 Competibacter 和 Defluviicoccus 相关菌(糖原积累菌)。本研究揭示了一种实际存在但以前未被认识到的 poly-P 积累诱导机制,AEI 体系背后的这种机制可能为从废水中去除 Pi 提供一种替代策略的科学依据。

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