Volcke E I P, Loccufier M, Noldus E J L, Vanrolleghem P A
BIOMATH, Department of Applied Mathematics, Biometrics and Process Control, Ghent University, Coupure links 653, B-9000 Gent, Belgium.
Water Sci Technol. 2007;56(6):145-54. doi: 10.2166/wst.2007.591.
This contribution deals with the behaviour of a SHARON reactor for nitrogen removal from wastewater streams with high ammonium concentrations. A system analysis is performed on a two-step nitrification model, describing the behaviour of such a reactor. Steady states are identified through direct calculation using a canonical state space model representation. Practical operation of a SHARON reactor aims at reaching ammonium conversion to nitrite only (nitritation), while suppressing further conversion to nitrate. It is shown how this desired behaviour can be obtained by setting the dilution rate dependent on the influent ammonium concentration. The impact of microbial growth characteristics on the suitable operating region is examined, as well as the effect of reactor temperature and pH. Advice is given for robust reactor design and operation.
本文论述了SHARON反应器对高铵浓度废水进行脱氮的行为。对描述此类反应器行为的两步硝化模型进行了系统分析。通过使用规范状态空间模型表示进行直接计算来确定稳态。SHARON反应器的实际运行旨在仅实现铵向亚硝酸盐的转化(亚硝化),同时抑制进一步转化为硝酸盐。结果表明,如何通过根据进水铵浓度设置稀释率来获得这种理想行为。研究了微生物生长特性对合适运行区域的影响,以及反应器温度和pH值的影响。为稳健的反应器设计和运行提供了建议。