序批式反应器
强化生物除磷
无氧运动
流出物
磷
化学
废水
制浆造纸工业
污水处理
萃取(化学)
色谱法
环境科学
环境工程
活性污泥
生物
工程类
有机化学
生理学
作者
Jixiang Wang,Zejiao Li,Qian Wang,Zhongfang Lei,Tian Yuan,Kazuya Shimizu,Zhenya Zhang,Yasuhisa Adachi,Duu‐Jong Lee,Rongzhi Chen
标识
DOI:10.1016/j.biortech.2021.126439
摘要
In order to sustainably manage wastewater treatment plants and the environment, enhanced biological phosphorus (P) removal (EBPR) was proposed to achieve P recovery through extracting P-rich liquid (i.e., Phostrip) from the bottom of aerobic granular sludge (AGS)-based sequencing batch reactors (SBRs) under no mixing during the anaerobic phase. Results showed both tested bacterial AGS (BAGS) and algal-bacterial AGS (A-BAGS) systems stably produced low effluent P (<0.05 mg-P/L) with little impact on their organics and NH4+-N removals (>99%). The collected P-rich liquids (55-83 mg-P/L) from both systems showed great potential for P recovery of about 83.85 ± 0.57 % (BAGS) or 83.99 ± 0.77% (A-BAGS), which were contributed by the influent P (>95%) and P reserves in granules based on P balance analysis. This study suggests that the AGS-based SBRs coupling the Phostrip holds great potentials for P recovery profit and further reduction in energy consumption.
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