Liu Yiwen, Ni Bing-Jie
Advanced Water Management Centre, The University of Queensland, St Lucia, Brisbane, Queensland 4072, Australia.
Sci Rep. 2015 Feb 3;5:8204. doi: 10.1038/srep08204.
The application of anaerobic ammonium oxidation (Anammox) process is often limited by the slow growth rate of Anammox bacteria. As the essential substrate element that required for culturing Anammox sludge, Fe (II) is expected to affect Anammox bacterial growth. This work systematically studied the effects of Fe (II) addition on Anammox activity based on the kinetic analysis of specific growth rate using data from batch tests with an enriched Anammox sludge at different dosing levels. Results clearly demonstrated that appropriate Fe (II) dosing (i.e., 0.09 mM) significantly enhanced the specific Anammox growth rate up to 0.172 d(-1) compared to 0.118 d(-1) at regular Fe (II) level (0.03 mM). The relationship between Fe (II) concentration and specific Anammox growth rate was found to be well described by typical substrate inhibition kinetics, which was integrated into currently well-established Anammox model to describe the enhanced Anammox growth with Fe (II) addition. The validity of the integrated Anammox model was verified using long-term experimental data from three independent Anammox reactors with different Fe (II) dosing levels. This Fe (II)-based approach could be potentially implemented to enhance the process rate for possible mainstream application of Anammox technology, in order for an energy autarchic wastewater treatment.
厌氧氨氧化(Anammox)工艺的应用常常受到Anammox细菌生长速率缓慢的限制。作为培养Anammox污泥所需的必需底物元素,Fe(II)有望影响Anammox细菌的生长。本研究基于对特定生长速率的动力学分析,利用不同投加量下富集Anammox污泥的批次试验数据,系统地研究了添加Fe(II)对Anammox活性的影响。结果清楚地表明,与常规Fe(II)水平(0.03 mM)下的0.118 d⁻¹相比,适当的Fe(II)投加量(即0.09 mM)能显著提高Anammox的特定生长速率,最高可达0.172 d⁻¹。研究发现,Fe(II)浓度与Anammox特定生长速率之间的关系可用典型的底物抑制动力学很好地描述,该动力学被整合到目前已建立完善 的Anammox模型中,以描述添加Fe(II)后Anammox生长的增强情况。利用来自三个不同Fe(II)投加量水平的独立Anammox反应器的长期实验数据,验证了整合后的Anammox模型的有效性。这种基于Fe(II)的方法有可能用于提高工艺速率,以便Anammox技术能够在主流应用中实现,从而实现能源自给自足的废水处理。