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Influence of dissolved oxygen concentration on the start-up of the anammox-based process: ELAN (R)

机译:溶解氧浓度对基于厌氧氨氧化工艺的启动的影响:ELAN(R)

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The anammox-based process ELAN (R) was started-up in two different sequencing batch reactor (SBR) pilot plant reactors treating municipal anaerobic digester supernatant. The main difference in the operation of both reactors was the dissolved oxygen (DO) concentration in the bulk liquid. SBR-1 was started at a DO value of 0.4 mg O-2/L whereas SBR-2 was started at DO values of 3.0 mg O-2/L. Despite both reactors working at a nitrogen removal rate of around 0.6 g N/(L d), in SBR-1, granules represented only a small fraction of the total biomass and reached a diameter of 1.1 mm after 7 months of operation, while in SBR-2 the biomass was mainly composed of granules with an average diameter of 3.2 mm after the same operational period. Oxygen microelectrode profiling revealed that granules from SBR-2 where only fully penetrated by oxygen with DO concentrations of 8 mg O2/L while granules from SBR-1 were already oxygen penetrated at DO concentrations of 1 mg O2/L. In this way granules from SBR-2 performed better due to the thick layer of ammonia oxidizing bacteria, which accounted for up to 20% of all the microbial populations, which protected the anammox bacteria from non-suitable liquid media conditions.
机译:在两个不同的顺序批处理反应器(SBR)中试工厂反应器中启动了基于厌氧氨处理的过程ELAN(R),该反应器处理市政厌氧消化池上清液。两个反应器运行的主要区别是散装液体中的溶解氧(DO)浓度。 SBR-1以DO值为0.4 mg O-2 / L开始,而SBR-2以DO值为3.0 mg O-2 / L开始。尽管两个反应器均以约0.6 g N /(L d)的脱氮率工作,但在SBR-1中,颗粒仅占总生物质的一小部分,并且在运行7个月后直径达到1.1 mm,而在在相同的操作时间后,SBR-2生物质主要由平均直径为3.2 mm的颗粒组成。氧气微电极分析显示,溶解氧浓度为8 mg O2 / L的SBR-2颗粒仅被氧完全渗透,而溶解氧浓度为1 mg O2 / L的SBR-1颗粒已经被氧渗透。以这种方式,由于氨氧化细菌的厚层,来自SBR-2的颗粒表现得更好,氨氧化细菌占所有微生物种群的20%,从而保护了厌氧氨氧化细菌免受不合适的液体培养基条件的侵害。

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