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Producing nitrite from anodic ammonia oxidation to accelerate anammox in a bioelectrochemical system with a given anode potential

机译:在给定阳极电位的生物电化学系统中,通过阳极氨氧化生产亚硝酸盐以加速厌氧氨氧化

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摘要

Requirement of NO presence in feed is one barrier of anammox process for the application since NO is not a frequent composition in most wastewaters. In this study, anodic oxidation of NH to NO was realized in a single-chamber bioelectrochemical system with an anodic potential of -0.5 V. The NO product compensated its lack in the feed to accelerate the anammox. As a result, the anammox efficiency increased by at least 29.2%. When the potential was removed, the nitrogen removal in these two reactors had no significant differences. The SEM images and FISH analysis suggested that the abundance of anammox bacteria was obviously higher in R2.
机译:饲料中NO的存在是厌氧氨氧化工艺应用的一大障碍,因为在大多数废水中NO并不是常见的成分。在这项研究中,在单腔生物电化学系统中将NH阳极氧化为NO,阳极电位为-0.5V。NO产物补偿了进料中的缺乏,从而加速了厌氧氨氧化反应。结果,厌氧氨氧化效率提高了至少29.2%。当去除电位时,这两个反应器中的氮去除没有显着差异。扫描电镜图像和FISH分析表明,R2中厌氧菌的丰度明显更高。

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