GENOCOV, Department of Chemical, Biological and Environmental Engineering, Universitat Autònoma de Barcelona, Spain.
Sci Total Environ. 2019 Mar 20;657:1398-1408. doi: 10.1016/j.scitotenv.2018.12.064. Epub 2018 Dec 7.
Enhanced Biological Phosphorus Removal (EBPR) is based on the enrichment of sludge in polyphosphate accumulating organisms (PAO). Candidatus Accumulibacter is the bacterial community member most commonly identified as PAO in EBPR systems when volatile fatty acids (VFA) are the carbon source. However, it is necessary to understand the role of non-Accumulibacter PAO in the case of wastewater with low VFA content. This work shows the first successful long-term operation of an EBPR system with glutamate as sole carbon and nitrogen source, resulting in the enrichment of sludge in the genus Thiothrix (37%), the family Comamonadaceae (15.6%) and Accumulibacter (7.7%). The enrichment was performed in an anaerobic/anoxic/oxic (A/O) continuous pilot plant, obtaining stable biological N and P removal. This microbial community performed anaerobic P-release with only 18-29% of the observed PHA storage in Accumulibacter-enriched sludge and with slight glycogen storage instead of consumption, indicating the involvement of other carbon storage routes not related to PHA and glycogen. Thiothrix could be clearly involved in P-removal because it is able of accumulating Poly-P, probably without PHA synthesis, but with glutamate involvement. On the other hand, Comamonadaceae could participate in degradation of glutamate and denitrification, but its involvement in P-uptake cannot be reliably concluded.
强化生物除磷(EBPR)是基于聚磷积累菌(PAO)在污泥中的富集。当挥发性脂肪酸(VFA)作为碳源时,Candidatus Accumulibacter 是在 EBPR 系统中最常被鉴定为 PAO 的细菌群落成员。然而,在废水 VFA 含量低的情况下,有必要了解非 Accumulibacter PAO 的作用。本工作首次成功地在以谷氨酸为唯一碳源和氮源的 EBPR 系统中进行了长期运行,导致污泥中硫丝菌属(37%)、丛毛单胞菌科(15.6%)和 Accumulibacter(7.7%)的富集。该富集是在厌氧/缺氧/好氧(A/O)连续中试工厂中进行的,获得了稳定的生物 N 和 P 去除。该微生物群落通过仅在 Accumulibacter 富集污泥中观察到的 PHA 储存的 18-29%进行厌氧 P 释放,并且轻微储存糖原而不是消耗,表明存在与 PHA 和糖原无关的其他碳储存途径。硫丝菌属显然可以参与 P 的去除,因为它能够积累聚磷,可能不需要合成 PHA,但与谷氨酸有关。另一方面,丛毛单胞菌科可能参与谷氨酸的降解和反硝化,但不能可靠地推断其在 P 摄取中的参与。