Liang Yuhai, Li Dong, Zhang Xiaojing, Zeng Huiping, Zhang Jie
a Key Laboratory of Water Quality Science and Water Environment Recovery Engineering , Beijing University of Technology , Beijing 100124 , People's Republic of China.
Environ Technol. 2015 Mar-Apr;36(5-8):946-52. doi: 10.1080/09593330.2014.969327. Epub 2014 Oct 17.
Completely autotrophic nitrogen removal over nitrite (CANON) process was considered as one of the most efficient and economical nitrogen removal processes, which was suitable for treating wastewater with low ratio of carbon to nitrogen. In this study, an enlarging start-up strategy for CANON process was proposed, and a 40-L CANON reactor was successfully started by seeding 2-L mature biofilm containing both aerobic ammonia-oxidizing bacteria (AerAOB) and anaerobic ammonia-oxidizing bacteria (AnAOB). The effects of dissolved oxygen (DO), ammonia loading rate and the ratio of air inflow to water inflow (Qair/Qwater) on nitrogen removal performance were investigated. The distribution of AerAOB and AnAOB was analysed using fluorescence in situ hybridization (FISH) technique. The system reached a maximum NRR of 3.11 kg N m(-3) d(-1) with a removal efficiency of 89.5%, and the average value in steady state was 2.42±0.26 and (83.07 ± 6.89)%, respectively. Analysis of influence factors showed the important role of high DO (around 5 mg L(-1)), for the high-rate nitrogen removal, and the Qair/Qwater should be controlled at 28-40 for stable operation. FISH results suggested that AerAOB and AnAOB predominated in the reactor, with proportions of 46.8% and 39.3%, respectively. This study demonstrated that the biofilter operated with high effluent DO was a feasible setup for CANON process.
亚硝酸盐完全自养脱氮(CANON)工艺被认为是最有效且经济的脱氮工艺之一,适用于处理碳氮比低的废水。本研究提出了一种CANON工艺的扩大启动策略,并通过接种2L含有好氧氨氧化细菌(AerAOB)和厌氧氨氧化细菌(AnAOB)的成熟生物膜,成功启动了一个40L的CANON反应器。研究了溶解氧(DO)、氨负荷率和空气流入与水流入之比(Qair/Qwater)对脱氮性能的影响。采用荧光原位杂交(FISH)技术分析了AerAOB和AnAOB的分布。该系统达到了3.11 kg N m(-3) d(-1)的最大氮去除率(NRR),去除效率为89.5%,稳态下的平均值分别为2.42±0.26和(83.07 ± 6.89)%。影响因素分析表明,高溶解氧(约5 mg L(-1))对高速率脱氮起着重要作用,为实现稳定运行,Qair/Qwater应控制在28-40。FISH结果表明,AerAOB和AnAOB在反应器中占主导地位,比例分别为46.8%和39.3%。本研究表明,以高出水溶解氧运行的生物滤池是CANON工艺的一种可行设置。