Efficient reactivation of anammox sludge after prolonged storage using a combination of batch and continuous reactors

被引:2
|
作者
Takeda P.Y. [1 ]
Paula C.T. [1 ]
Giglio G.L. [1 ]
Borges A.D.V. [1 ]
Pereira T.D.S. [2 ]
Damianovic M.H.R.Z. [1 ]
机构
[1] Biological Processes Laboratory (LPB), São Carlos School of Engineering (EESC), University of São Paulo (USP), Av. João Dagnone, 1100, Santa Angelina, São Carlos, São Paulo
[2] Empresa de Pesquisa Agropecuária de Minas Gerais (EPAMIG) - Instituto Tecnológico de Agropecuária de Pitangui (ITAP), MG = Minas Gerais Agricultural Research Agency - Pitangui Institute of Agricultural Technology, Rodovia BR - MG 352 Km 35 Zona Rural, Pita
关键词
Biomass preservation; Granular sludge; High-rate mainstream anammox reactor; Inoculum; Reactor start-up; Upflow sludge bed reactor;
D O I
10.1007/s11356-023-31355-1
中图分类号
学科分类号
摘要
Due to the slow growth rate of anammox bacteria, enriched sludge is required for the rapid start-up of anammox-based reactors. However, it is still unclear if long-term stored anammox sludge (SAS) is an effective source of inoculum to accelerate reactor start-up. This study explored the reactivation of long-term SAS and developed an efficient protocol to reduce the start-up period of an anammox reactor. Although stored for 13 months, a low level of the specific anammox activity of 28 mg N/g VSS/d was still detected. Experimental Phase 1 involved the direct application of SAS to an upflow sludge bed reactor (USB) operated for 90 d under varying conditions of hydraulic retention time and nitrogen concentrations. In Phase 2, batch runs were executed prior to the continuous operation of the USB reactor. The biomass reactivation in the continuous flow reactor was unsuccessful. However, the SAS was effectively reactivated through a combination of batch runs and continuous flow feed. Within 75 days, the anammox process achieved a stable rate of nitrogen removal of 1.3 g N/L/day and a high nitrogen removal efficiency of 84.1 ± 0.2%. Anammox bacteria (Ca. Brocadia) abundance was 37.8% after reactivation. These overall results indicate that SAS is a feasible seed sludge for faster start-up of high-rate mainstream anammox reactors. © 2023. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
引用
收藏
页码:2408 / 2418
页数:10
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