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Growth of Nitrosococcus-Related Ammonia Oxidizing Bacteria Coincides with Extremely Low pH Values in Wastewater with High Ammonia Content

机译:高氨氮废水中pH值极低的硝化球菌相关氨氧化细菌的生长

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摘要

Ammonia oxidation decreases the pH in waste-waters where alkalinity is limited relative to total ammonia. The activity of ammonia oxidizing bacteria (AOB), however, typically decreases with pH and often ceases completely in slightly acidic wastewaters. Nevertheless, nitrification at low pH has been reported in reactors treating human urine, but it has been unclear which organisms are involved. In this study, we followed the population dynamics of ammonia oxidizing organisms and reactor performance in synthetic fully hydrolyzed urine as the pH decreased over time in response to a decrease in the loading rate. Populations of the β-proteobacterial Nitrosomonas europaea lineage were abundant at the initial pH close to 6, but the growth of a possibly novel Nitrosococcus-related AOB genus decreased the pH to the new level of 2.2, challenging the perception that nitrification is inhibited entirely at low pH values, or governed exclusively by β-proteobacterial AOB or archaea. With the pH shift, nitrite oxidizing bacteria were not further detected, but nitrous acid (HNO_2) was still removed through chemical decomposition to nitric oxide (NO) and nitrate. The growth of acid-tolerant γ-proteobacterial AOB should be prevented, by keeping the pH above 5.4, which is a typical pH limit for the N. europaea lineage. Otherwise, the microbial community responsible for high-rate nitrification can be lost, and strong emissions of hazardous volatile nitrogen compounds such as NO are likely.
机译:氨氧化会降低废水的pH值,而碱度相对于总氨而言是有限的。但是,氨氧化细菌(AOB)的活性通常随pH值降低,并且在弱酸性废水中通常会完全停止。尽管如此,据报道在处理人尿的反应器中在低pH条件下硝化作用,但尚不清楚涉及哪些生物。在这项研究中,我们追踪了氨氧化生物的种群动态和合成的完全水解尿液中反应器的性能,这是由于pH随负载率的降低而随时间而降低的。在初始pH接近6时,β-Proteobacterialeuropaea europaea菌谱系的种群很丰富,但是可能存在新的与Nitrosoccuscus相关的AOB属的生长使pH降低到了2.2的新水平,这挑战了人们的观念,即硝化被完全抑制低pH值,或仅由β-变形杆菌AOB或古细菌控制。随着pH值的变化,亚硝酸盐氧化细菌不再被检测到,但亚硝酸(HNO_2)仍通过化学分解成一氧化氮(NO)和硝酸盐的方式除去。应通过使pH值保持在5.4以上来防止耐酸的γ-变形杆菌AOB的生长,该值是欧洲猪笼草谱系的典型pH极限。否则,负责高速硝化的微生物群落可能会丢失,并且可能会大量排放有害的挥发性氮化合物,例如NO。

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  • 来源
    《Environmental Science & Technology》 |2017年第12期|6857-6866|共10页
  • 作者单位

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Duebendorf, Switzerland;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 6047 Kastanienbaum, Switzerland;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Duebendorf, Switzerland,Institute of Environmental Engineering, ETH Zuerich, 8093 Zuerich, Switzerland,Center for Microbial Communities, Department of Chemistry and Bioscience, Aalborg University, 9100 Aalborg, Denmark,Department of Biotechnology, Delft University of Technology, Delft, 2629 HZ, The Netherlands;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Duebendorf, Switzerland,Department of Civil and Environmental Engineering, Northwestern University, Evanston, Illinois 60208, United States;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 6047 Kastanienbaum, Switzerland;

    Laboratory for Air Pollution/Environmental Technology, Empa, Swiss Federal Laboratories for Materials Science and Technology, 8600 Duebendorf, Switzerland;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Duebendorf, Switzerland,Institute of Environmental Engineering, ETH Zuerich, 8093 Zuerich, Switzerland;

    Eawag, Swiss Federal Institute of Aquatic Science and Technology, 8600 Duebendorf, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:57:36

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