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新型“尿液亚硝化球菌”对氨的氧化在低pH值下对工艺干扰敏感,在中性pH值下对铁限制敏感。

Ammonia oxidation by novel " Nitrosacidococcus urinae" is sensitive to process disturbances at low pH and to iron limitation at neutral pH.

作者信息

Faust Valentin, van Alen Theo A, Op den Camp Huub J M, Vlaeminck Siegfried E, Ganigué Ramon, Boon Nico, Udert Kai M

机构信息

Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Dübendorf, Switzerland.

ETH Zürich, Institute of Environmental Engineering, 8093 Zürich, Switzerland.

出版信息

Water Res X. 2022 Oct 4;17:100157. doi: 10.1016/j.wroa.2022.100157. eCollection 2022 Dec 1.

Abstract

Acid-tolerant ammonia-oxidizing bacteria (AOB) can open the door to new applications, such as partial nitritation at low pH. However, they can also be problematic because chemical nitrite oxidation occurs at low pH, leading to the release of harmful nitrogen oxide gases. In this publication, the role of acid-tolerant AOB in urine treatment was explored. On the one hand, the technical feasibility of ammonia oxidation under acidic conditions for source-separated urine with total nitrogen concentrations up to 3.5 g-N L was investigated. On the other hand, the abundance and growth of acid-tolerant AOB at more neutral pH was explored. Under acidic conditions (pH of 5), ammonia oxidation rates of 500 mg-N L d and 10 g-N g-VSS d were observed, despite high concentrations of 15 mg-N L of the AOB-inhibiting compound nitrous acid and low concentration of 0.04 mg-N L of the substrate ammonia. However, ammonia oxidation under acidic conditions was very sensitive to process disturbances. Even short periods of less than 12 h without oxygen or without influent resulted in a complete cessation of ammonia oxidation with a recovery time of up to two months, which is a problem for low maintenance applications such as decentralized treatment. Furthermore, undesirable nitrogen losses of about 10% were observed. Under acidic conditions, a novel AOB strain was enriched with a relative abundance of up to 80%, for which the name " Nitrosacidococcus urinae" is proposed. While members were present only to a small extent (0.004%) in urine nitrification reactors operated at pH values between 5.8 and 7, acid-tolerant AOB were always enriched during long periods without influent, resulting in an uncontrolled drop in pH to as low as 2.5. Long-term experiments at different pH values showed that the activity of " Nitrosacidococcus urinae" decreased strongly at a pH of 7, where they were also outcompeted by the acid-sensitive AOB . The experiment results showed that the decreased activity of " Nitrosacidococcus urinae" correlated with the limited availability of dissolved iron at neutral pH.

摘要

耐酸氨氧化细菌(AOB)可为新应用打开大门,例如在低pH值下进行部分亚硝化。然而,它们也可能带来问题,因为在低pH值下会发生化学亚硝酸盐氧化,导致有害氮氧化物气体的释放。在本出版物中,探讨了耐酸AOB在尿液处理中的作用。一方面,研究了在酸性条件下对总氮浓度高达3.5 g-N/L的源分离尿液进行氨氧化的技术可行性。另一方面,探讨了在更接近中性的pH值下耐酸AOB的丰度和生长情况。在酸性条件(pH为5)下,尽管存在15 mg-N/L的AOB抑制化合物亚硝酸的高浓度以及0.04 mg-N/L的底物氨的低浓度,但仍观察到氨氧化速率分别为500 mg-N/L·d和10 g-N/g-VSS·d。然而,酸性条件下的氨氧化对过程干扰非常敏感。即使是短至不到12小时的无氧或无进水期也会导致氨氧化完全停止,恢复时间长达两个月,这对于分散处理等低维护应用来说是个问题。此外,还观察到约10%的不良氮损失。在酸性条件下,富集了一种新型AOB菌株,其相对丰度高达80%,为此提出了“尿亚硝化球菌(Nitrosacidococcus urinae)”这一名称。虽然在pH值介于5.8和7之间运行的尿液硝化反应器中,这些成员仅少量存在(0.004%),但在长期无进水期间,耐酸AOB总是会富集,导致pH值不受控制地降至低至2.5。在不同pH值下的长期实验表明,“尿亚硝化球菌”的活性在pH为7时大幅下降,在该pH值下它们也会被酸敏感的AOB竞争淘汰。实验结果表明,“尿亚硝化球菌”活性的下降与中性pH值下溶解铁的可用性有限有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3611/9574496/6dd3f0ea1325/ga1.jpg

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