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Autotrophic nitrogen removal by a two-step SBR process applied to mixed agro-digestate

机译:通过两步SBR工艺去除自养氮,将其应用于混合农业消化物

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The aim of this research was to evaluate the applicability of partial-nitritation/anammox processes for biological N removal from a centrifuge supernatant coming from a full scale anaerobic digester fed on a mixture of piggery manure, poultry manure, and agro-wastes. Stable partial nitritation was achieved at pilot-scale (650 L SBR), obtaining a suitable influent for the anammox lab-scale SBR reactor (3 L). The anammox lab scale reactor was fed with increasing fractions of the partial nitritation effluent, blended with synthetic wastewater. In the last 100 days no dilution was used. The nitrogen loading rate applied to the anammox reactor was 0.5-0.6 g N L-1 d(-1) and the average nitrogen removal was 91 +/- 10%. During the first days of operation with undiluted supernatant, the maximum anammox activity in the SBR decreased, but recovered afterwards, suggesting the ability of the anammox biomass to acclimate to the wastewater. N2O emissions in both reactors were also measured. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估部分硝化/厌氧氨氧化工艺对于从以猪粪,家禽粪便和农业废料的混合物喂养的全规模厌氧消化器的离心机上清液中去除生物氮的适用性。在中试规模(650 L SBR)上实现了稳定的部分硝化,获得了适合厌氧氨纶实验室规模SBR反应器(3 L)的进水。在厌氧氨氧化实验室规模的反应器中,加入越来越多的部分亚硝化废水,并与合成废水混合。在最近的100天中,未使用稀释液。应用于厌氧氨氧化反应器的氮气装载速率为0.5-0.6 g N L-1 d(-1),平均氮去除率为91 +/- 10%。在未经稀释的上清液运行的第一天中,SBR中最大的厌氧氨氧化活性降低,但随后恢复,这表明厌氧氨化生物质能够适应废水。还测量了两个反应器中的N2O排放量。 (C)2014 Elsevier Ltd.保留所有权利。

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