Yu De-Shuang, Zhou Tong, Li Jin, Wang Xiao-Xia, Wu Guo-Dong, Wang Xiao-Jing
School of Environmental Science and Engineering, Qingdao University, Qingdao 266071, China.
Huan Jing Ke Xue. 2017 Aug 8;38(8):3369-3376. doi: 10.13227/j.hjkx.201702023.
The effect of pH shock on nitrogen removal performance of marine anaerobic ammonium-oxidizing bacteria (MAAOB) treating saline wastewater was studied by employing an ASBR reactor. Dynamic characteristics of the MAAOB were simulated by the Andrew model and Ratkowsky model. The results indicated that the reactor had the best nitrogen removal efficiency when the pH value was 7-8. The nitrogen removal rate (NRR) was (0.30±0.04) kg·(m·d), and the total nitrogen removal efficiency (TNRE) was (76.73±5.74)%. When the pH value was 8.5, FA had a mean concentration of 14.22 mg·L and little effect on nitrogen removal. The NRR was (0.30±0.02) kg·(m·d). However, NO-N accumulated and it was not completely removed. When the pH values were 6.5 and 9, the concentrations of FA were 0.22 mg·L and 37.84 mg·L, respectively, the NRRs were (0.10±0.02) and (0.15±0.02) kg·(m·d), and the TNREs were (23.04±9.88)% and (42.12±5.52)%. The tolerance of the MAAOB in alkaline condition was stronger than that in acidic condition. The Andrew model was modified to determine the relationship between NRR and FA. Other parameters such as NRR, , and were also achieved simultaneously. These are key to describing the nitrogen removal process of MAAOB.
采用序批式生物反应器(ASBR)研究了pH冲击对处理含盐废水的海洋厌氧氨氧化细菌(MAAOB)脱氮性能的影响。利用Andrew模型和Ratkowsky模型模拟了MAAOB的动力学特性。结果表明,当pH值为7-8时,反应器的脱氮效率最佳。脱氮率(NRR)为(0.30±0.04)kg·(m·d),总氮去除效率(TNRE)为(76.73±5.74)%。当pH值为8.5时,游离氨(FA)的平均浓度为14.22mg·L,对脱氮影响较小。NRR为(0.30±0.02)kg·(m·d)。然而,亚硝酸盐氮(NO-N)积累且未被完全去除。当pH值为6.5和9时,FA的浓度分别为0.22mg·L和37.84mg·L,NRR分别为(0.10±0.02)和(0.15±0.02)kg·(m·d),TNRE分别为(23.04±9.88)%和(42.12±5.52)%。MAAOB在碱性条件下的耐受性强于酸性条件。对Andrew模型进行修正以确定NRR与FA之间的关系。同时还获得了其他参数,如NRR、[此处原文缺失相关参数内容]和[此处原文缺失相关参数内容]。这些是描述MAAOB脱氮过程的关键。