UCIBIO-REQUIMTE, Department of Chemistry Faculty of Sciences and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
UCIBIO-REQUIMTE, Department of Chemistry Faculty of Sciences and Technology, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
N Biotechnol. 2019 Mar 25;49:112-119. doi: 10.1016/j.nbt.2018.10.003. Epub 2018 Oct 24.
The phototrophic-enhanced biological phosphorus removal system (photo-EBPR) was recently proposed as an alternative photosynthetic process to conventional phosphorus removal. Previous work showed the possibility of obtaining a photo-EBPR system starting from a culture already enriched in polyphosphate accumulating organisms (PAOs). The present work evaluated whether the same could be achieved starting from conventional activated sludge. A sequencing batch reactor inoculated with sludge from a wastewater treatment plant (WWTP) was fed with a mixture of acetate and propionate (75%:25%) and subjected to dark/light cycles to select a photo-EBPR system containing PAOs and photosynthetic organisms, the oxygen providers for the system. The results showed that it is possible to obtain a photo-EBPR system starting from a WWTP sludge, although the process is slower than when started with a sludge already enriched in PAOs. After 15 days of operation, the system could remove 60 ± 2 mg-P/L of phosphorus (approximately 67% of the concentration at the end of dark period) in the light period, from which 13 ± 1 mg-P/L was removed during the phase without external air supply. These results indicate that a photo-EBPR system can be obtained independently of the seed sludge initially used, provided that a suitable operating strategy is implemented, i.e. by imposing conditions that favour the growth and coexistence of PAOs and photosynthetic microorganisms.
光增生物除磷系统 (photo-EBPR) 最近被提议作为一种替代传统除磷的光合作用过程。先前的研究表明,从已经富含聚磷菌 (PAO) 的培养物中获得 photo-EBPR 系统是可能的。本研究评估了是否可以从传统的活性污泥开始实现同样的目标。一个采用污水处理厂 (WWTP) 污泥接种的序批式反应器,以乙酸盐和丙酸盐(75%:25%)的混合物为底物,进行暗/光循环,以选择包含 PAO 和光合生物的 photo-EBPR 系统,这些生物是系统的氧气提供者。结果表明,从 WWTP 污泥中获得 photo-EBPR 系统是可行的,尽管与从已经富含 PAO 的污泥开始相比,这个过程较慢。经过 15 天的运行,该系统可以在光照条件下去除 60±2mg-P/L 的磷(约为黑暗期结束时浓度的 67%),其中在没有外部空气供应的阶段去除了 13±1mg-P/L。这些结果表明,只要采用合适的运行策略,即通过施加有利于 PAO 和光合微生物生长和共存的条件,就可以独立于初始使用的接种污泥获得 photo-EBPR 系统。