水铁矿驱动Feammox处理污泥消化液中的氨氮
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X703.1

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国家自然科学基金(21777016)


Removing ammonia in sludge digester liquor by driving Feammox with ferrihydrite
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    摘要:

    异化铁还原耦合厌氧氧化(Feammox)是自然环境中普遍存在的氨氮去除途径,但该过程在污水处理领域的研究及应用还比较少。以含氨氮的污泥消化液为对象,研究其在厌氧条件下由水铁矿驱动Feammox进行脱氮的效果。结果表明:经过48 d厌氧处理后,NH4+-N去除率和总氮去除率分别为72.4%和57.5%,而未投加水铁矿的对照组中NH4+-N去除率和总氮去除率分别为7.6%和2.5%;在投加水铁矿的反应器内检测到Fe (Ⅱ)的持续产生;以同位素标记的15NH4+-N进料,在投加水铁矿的反应器顶空中检出30N2,证明了Feammox的发生;实时定量PCR (qPCR)结果显示,Feammox功能微生物Acidimicrobiaceae A6菌表达活跃。高通量测序表明,在投加水铁矿的反应器内富集了多种铁还原菌;同时,向反应器内投加水铁矿和腐殖质后,NH4+-N去除率达88.35%,总氮去除率达73.75%,对反应器内铁氧化物组成和形态分析发现,腐殖质减弱了铁氧化物钝化速度,有利于水铁矿保持活性并持续参与Feammox脱氮。

    Abstract:

    Dissimilar iron reduction coupled with anaerobic oxidation (Feammox) is a common pathway to oxidize ammonia nitrogen in natural environment, which however has been rarely reported in sewage treatment. In this study, the sludge digester liquor was used as the NH4+-N source to study the NH4+-N removal during Feammox driven by adding ferrihydrite under anaerobic conditions. The results showed that after 48 days of anaerobic incubation, the NH4+-N removal efficiency and total nitrogen removal efficiency were 72.4% and 57.5%, respectively, while the NH4+-N removal efficiency and total nitrogen removal efficiency in the reactor without adding ferrihydrite were 7.6% and 2.5%, respectively. The continuous production of Fe(Ⅱ) was detected in the ferrihydrite-added reactor. After feeding with isotope-labeled 15NH4+-N as the NH4+-N source, 30N2 was detected in the headspace of the ferrihydrite-added reactor, which proved the occurrence of Feammox. Real-time quantitative PCR(qPCR) results showed that Acidimicrobiaceae A6 expressed actively. High-throughput 16S rDNA showed that a variety of iron-reducing bacteria were significantly enriched. After simultaneously adding ferrihydrite and humus into the reactor, the removal efficiency of NH4+-N further increased to 88.35%, and the removal efficiency of total nitrogen reached 73.75%. The analysis of the composition and morphology of iron oxides added in the reactors showed that humus weakened the passivation rate of iron oxides, which was beneficial for ferrihydrite to maintain activity and continue to participate in Feammox.

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梁松,杨亚飞,张耀斌.水铁矿驱动Feammox处理污泥消化液中的氨氮[J].土木与环境工程学报(中英文),2022,44(1):168-176. LIANG Song, YANG Yafei, ZHANG Yaobin. Removing ammonia in sludge digester liquor by driving Feammox with ferrihydrite[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2022,44(1):168-176.10.11835/j. issn.2096-6717.2021.103

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  • 收稿日期:2021-05-04
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  • 在线发布日期: 2021-11-25
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