Biomass aggregation influences NaN3 short-term effects on anammox bacteria activity

作者: A Pedrouso , A Val del Rio , JL Campos , R Méndez , A Mosquera-Corral

DOI: 10.2166/WST.2016.587

关键词:

摘要: The main bottleneck to maintain the long-term stability of the partial nitritation-anammox processes, especially those operated at low temperatures and nitrogen concentrations, is the undesirable development of nitrite oxidizing bacteria (NOB). When this occurs, the punctual addition of compounds with the capacity to specifically inhibit NOB without affecting the process efficiency might be of interest. Sodium azide (NaN3) is an already known NOB inhibitor which at low concentrations does not significantly affect the ammonia oxidizing bacteria (AOB) activity. However, studies about its influence on anammox bacteria are unavailable. For this reason, the objective of the present study was to evaluate the effect of NaN3 on the anammox activity. Three different types of anammox biomass were used: granular biomass comprising AOB and anammox bacteria (G1), anammox enriched granules (G2) and previous anammox granules disaggregated (F1). No inhibitory effect of NaN3 was measured on G1 sludge. However, the anammox activity decreased in the case of G2 and F1. Granular biomass activity was less affected (IC50 90 mg/L, G2) than flocculent one (IC50 5 mg/L, F1). Summing up, not only does the granular structure protect the anammox bacteria from the NaN3 inhibitory effect, but also the AOB act as a barrier decreasing the inhibition.

参考文章(21)
John Crank, The mathematics of diffusion ,(1956)
N Morales, A Val del Rio, JR Vázquez-Padín, R Gutiérrez, R Fernández-González, P Icaran, F Rogalla, JL Campos, R Méndez, A Mosquera-Corral, None, Influence of dissolved oxygen concentration on the start-up of the anammox-based process: ELAN® Water Science and Technology. ,vol. 72, pp. 520- 527 ,(2015) , 10.2166/WST.2015.233
Bin Ma, Shanyun Wang, Shenbin Cao, Yuanyuan Miao, Fangxu Jia, Rui Du, Yongzhen Peng, Biological nitrogen removal from sewage via anammox: Recent advances. Bioresource Technology. ,vol. 200, pp. 981- 990 ,(2016) , 10.1016/J.BIORTECH.2015.10.074
Andrew Eaton, A.E. Greenberg, Lenore S. Clesceri, Standard methods for the examination of water and wastewater Published in <b>1998</b> in Washington DC) by American public health association. ,(1992)
G. Stedman, 591. Mechanism of the azide–nitrite reaction. Part II Journal of The Chemical Society (resumed). pp. 2949- 2954 ,(1959) , 10.1039/JR9590002949
M. Strous, J. J. Heijnen, J. G. Kuenen, M. S. M. Jetten, The sequencing batch reactor as a powerful tool for the study of slowly growing anaerobic ammonium-oxidizing microorganisms Applied Microbiology and Biotechnology. ,vol. 50, pp. 589- 596 ,(1998) , 10.1007/S002530051340
Yuanyue Wang, Yawei Wang, Yuansong Wei, Meixue Chen, In-situ restoring nitrogen removal for the combined partial nitritation-anammox process deteriorated by nitrate build-up Biochemical Engineering Journal. ,vol. 98, pp. 127- 136 ,(2015) , 10.1016/J.BEJ.2015.02.028
Satoshi Okabe, Mamoru Oshiki, Yoshitaka Takahashi, Hisashi Satoh, N2O emission from a partial nitrification-anammox process and identification of a key biological process of N2O emission from anammox granules. Water Research. ,vol. 45, pp. 6461- 6470 ,(2011) , 10.1016/J.WATRES.2011.09.040
Shijian Ge, Shanyun Wang, Xiong Yang, Shuang Qiu, Baikun Li, Yongzhen Peng, Detection of nitrifiers and evaluation of partial nitrification for wastewater treatment: A review. Chemosphere. ,vol. 140, pp. 85- 98 ,(2015) , 10.1016/J.CHEMOSPHERE.2015.02.004
Boran Kartal, Marcel M. M. Kuypers, Gaute Lavik, Jos Schalk, Huub J. M. Op den Camp, Mike S. M. Jetten, Marc Strous, Anammox bacteria disguised as denitrifiers: nitrate reduction to dinitrogen gas via nitrite and ammonium Environmental Microbiology. ,vol. 9, pp. 635- 642 ,(2007) , 10.1111/J.1462-2920.2006.01183.X