School of Environment, MOE Key Laboratory of Water and Sediment Sciences/State Key Lab of Water Environment Simulation, Beijing Normal University, Beijing 100875, China.
School of Environment, MOE Key Laboratory of Water and Sediment Sciences/State Key Lab of Water Environment Simulation, Beijing Normal University, Beijing 100875, China.
Bioresour Technol. 2017 Feb;226:267-271. doi: 10.1016/j.biortech.2016.12.047. Epub 2016 Dec 16.
This study investigated the long-term treatment performance of a conventional activated sludge (AS) process operating at a microaerobic DO level (0.5-1.0mg·L) in the aeration tank and a long settling time of >10h in the clarification tank for sewage treatment. The microaerobic DO conditions led to severe sludge bulking. However, good sludge/water separation and excellent pollutant removal performance (COD, 95±2%; NH-N, 99±1%; and TN, 69±6%) were stably achieved in the microaerobic AS system during its 150days of continuous operation. This is the first report to demonstrate that a long settling time effectively overcame the effect of severe filamentous bulking in conventional AS process, and that microaerobic DO conditions achieved excellent simultaneous nitrification and denitrification reactions in the aeration tank. The process characteristics of the microaerobic AS system differed substantially from those existing biological denitrification processes, including A/O, CANON, and OLAND processes.
本研究考察了在曝气池微氧 DO 水平(0.5-1.0mg·L)和澄清池 >10h 长沉降时间下运行的传统活性污泥(AS)工艺的长期处理性能,用于污水处理。微氧 DO 条件导致严重的污泥膨胀。然而,在微氧 AS 系统连续运行 150 天期间,仍稳定地实现了良好的污泥/水分离和优异的污染物去除性能(COD,95±2%;NH-N,99±1%;和 TN,69±6%)。这是首次报道表明长沉降时间有效地克服了传统 AS 工艺中严重丝状膨胀的影响,并且微氧 DO 条件在曝气池中实现了优异的同步硝化反硝化反应。微氧 AS 系统的工艺特性与现有的生物脱氮工艺(包括 A/O、CANON 和 OLAND 工艺)有很大不同。