Xu Lin-Jian, Pan Yang, Zhang Hao, Feng Xin, Wei Pan-Long, You Xing-Yi
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Institute of Environmental Biotechnology, Suzhou University of Science and Technology, Suzhou 215009, China.
Huan Jing Ke Xue. 2019 Jul 8;40(7):3179-3185. doi: 10.13227/j.hjkx.201811020.
In a cyclic alternating O/A operation mode, phosphorus accumulating organisms (PAOs) can undertake phosphate removal and enrichment as the main process in wastewater treatment plants. The effects of the concentration of carbon sources during the aerobic stage on phosphate removal and enrichment performance of PAO biofilms, and the microbial population structure in the biofilms, were investigated. The results showed that the aerobic COD concentration decreased from 200 mg·L to 0 mg·L, the phosphorus uptake rate improved by 1.29 times, the phosphorus concentration in effluent stabilized below 0.5 mg·L, the phosphorus release rate increased by 3.56 times, and the phosphate concentration in the circulating solution increased from 27.125 mg·L to 55.91 mg·L. With respect to the change in microbial communities, the identification showed that the abundance of Proteobacteria increased by approximately two times, and the enrichment effects of Rhodocyclaceae and Anaerolineaceae increased by 2.28 and 5 times, respectively. Reducing the concentration of the carbon source in the aerobic section was beneficial to the screening and enrichment of PAOs, strengthening the removal of phosphate in the aerobic section and the release of phosphate in the anaerobic section. This resulted in an enriched phosphate solution. These observations provide a theoretical basis for future urban sewage treatment plants seeking to reduce their carbon demand.
在循环交替的好氧/厌氧运行模式下,聚磷菌(PAOs)可将除磷和富集作为污水处理厂的主要工艺过程。研究了好氧阶段碳源浓度对PAO生物膜除磷和富集性能以及生物膜中微生物种群结构的影响。结果表明,好氧化学需氧量(COD)浓度从200mg·L降至0mg·L,磷吸收速率提高了1.29倍,出水磷浓度稳定在0.5mg·L以下,磷释放速率提高了3.56倍,循环溶液中的磷酸盐浓度从27.125mg·L增加到55.91mg·L。关于微生物群落的变化,鉴定结果表明变形菌门的丰度增加了约两倍,红环菌科和厌氧绳菌科的富集效果分别提高了2.28倍和5倍。降低好氧段碳源浓度有利于PAOs的筛选和富集,增强好氧段磷的去除和厌氧段磷的释放,从而得到富集的磷酸盐溶液。这些观察结果为未来寻求降低碳需求的城市污水处理厂提供了理论依据。