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Ammonia removal from mixed dewatering liquors by three different deammonification technologies

机译:通过三种不同的脱水技术从混合脱水液中取出氨

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Deammonification is an established biological nitrogen removal process for dewatering liquors from anaerobic digestion. Different deammonification technologies are being commercialised varying in control philosophy, biomass structure and reactor design. In this study three different pilot scale deammonification technologies were investigated to assess total nitrogen removal from mixed (pre and post digestion) dewatering liquors originated from thermal hydrolysis based anaerobic digestion process. The technologies tested included a suspended sludge sequencing batch reactor (S-SBR), a moving bed biofilm reactor (MEDIA) and a granular sludge sequencing batch reactor (G-SBR). This is the first study to compare side-by-side, three different deammonification technologies. All tested technologies were operated according to the manufacturer guidelines and demonstrated suitable nitrogen removal at loads varying between 0.3-0.8 kgN m(-3) d(-1). During the operation of three technologies, periods of poor effluent quality due to disruptions or imbalances in the biological reactions were observed. The S-SBR had the lowest number of imbalances with 14 cases relating to free nitrous acid inhibition. Both S-SBR and MEDIA presented the highest nitrogen removal rate with 0.72 and 0.68 kgN m(-3) d(-1), respectively. The G-SBR achieved nitrogen removal rates of 0.31 kgN m(-3) d(-1) while presenting the highest number of imbalances that were related to inhibitive concentration of free ammonia or free nitrous acid of anammox. These inhibitions were caused by the control system relying on surrogate measurements for ammonia. Finally, only the S-SBR was operated at temperatures below 20 degrees C, caused by seasonal fluctuations, but still achieved nitrogen removal rates of 0.30 kgN m(-3) d(-1). The number of deammonification technologies is growing, however, only a few but contradictive comparison studies exist. This comparison study can provide support for selection of sidestream deammonification technologies, by identifying the critical parameters.
机译:Deammonification是一种具有来自厌氧消化的脱水液体的已建立的生物氮去除方法。不同的Deamonification Technologies正在对照哲学,生物量结构和反应堆设计中的商业化不同。在这项研究中,研究了三种不同的先导级脱模技术,以评估来自混合(前后消化)脱水液体的总氮去除,所述脱水液体来自热水解的厌氧消化方法。测试的技术包括悬浮的污泥测序批量反应器(S-SBR),移动床生物膜反应器(介质)和颗粒污泥测序批量反应器(G-SBR)。这是第一次进行比较,并排进行三种不同的脱泥化技术。根据制造商指南操作所有测试技术,并在0.3-0.8kgnm(-3)d(-1)之间的载荷下显示出合适的氮去除。在三种技术的运作期间,观察到生物反应中的破坏或不平衡因生物反应中的破坏而差的差的时间。 S-SBR具有最低数量的不平衡,具有14例与游离亚硝酸抑制有关。 S-SBR和培养基均呈现出最高的氮去除率,分别具有0.72和0.68kgnm(-3)d(-1)。 G-SBR达到0.31kgnm(-3)d(-1)的氮去除速率,同时呈现与厌氧氧氧抑制或游离亚硝酸的抑制浓度有关的最大数量的不平衡。这些抑制是由依赖于氨的替代测量的控制系统引起的。最后,仅在低于20摄氏度的温度下运行S-SBR,由季节性波动引起,但仍然达到0.30kgnm(-3)d(-1)的氮去除速率。然而,Deammonification技术的数量正在增长,然而,只存在少数但矛盾的比较研究。通过识别关键参数,该比较研究可以提供对选择侧流Deammonification技术的支持。

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