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一阶段厌氧氨氧化和硫氰酸盐驱动的自养反硝化协同去除硫氰酸盐和氮:途径和机制。

One-stage anammox and thiocyanate-driven autotrophic denitrification for simultaneous removal of thiocyanate and nitrogen: Pathway and mechanism.

机构信息

School of Environmental Science and Engineering, Shandong University, Shandong 266237, China.

School of Environmental Science and Engineering, Shandong University, Shandong 266237, China; The Fifth Prospecting Team of Shandong Coal Geology Bureau, Jinan, Shandong 250215, China.

出版信息

Water Res. 2024 Nov 1;265:122268. doi: 10.1016/j.watres.2024.122268. Epub 2024 Aug 21.

Abstract

The coupled process of anammox and reduced-sulfur driven autotrophic denitrification can simultaneously remove nitrogen and sulfur from wastewater, while minimizing energy consumption and sludge production. However, the research on the coupled process for removing naturally toxic thiocyanate (SCN) is limited. This work successfully established and operated a one-stage coupled system by co-cultivating mature anammox and SCN-driven autotrophic denitrification sludge in a single reactor. In this one-stage coupled system, the average total nitrogen removal efficiency was 89.68±3.33 %, surpassing that of solo anammox (81.80±2.10 %) and SCN-driven autotrophic denitrification (85.20±1.54 %). Moreover, the average removal efficiency of SCN reached 99.50±3.64 %, exceeding that of solo SCN-driven autotrophic denitrification (98.80±0.65 %). The results of the N stable isotope tracer labeling experiment revealed the respective reaction rates of anammox and denitrification as 106.38±10.37 μmol/L/h and 69.07±8.07 μmol/L/h. By analyzing metagenomic sequencing data, Thiobacillus_denitrificans was identified as the primary contributor to SCN degradation in this coupled system. Furthermore, based on the comprehensive analysis of nitrogen and sulfur metabolic pathways, as well as the genes associated with SCN degradation, it can be inferred that the cyanate (CNO) pathway was responsible for SCN degradation. This work provided a deeper insight into coupling anammox with SCN-driven autotrophic denitrification in a one-stage coupled system, thereby contributing to the development of an effective approach for wastewater treatment involving both SCN and nitrogen.

摘要

该耦合工艺可同时去除废水中的氮和硫,同时最大限度地减少能源消耗和污泥产生。然而,对于去除自然毒性硫氰酸盐 (SCN) 的耦合工艺研究有限。本工作通过在单反应器中共同培养成熟的厌氧氨氧化和 SCN 驱动自养反硝化污泥,成功建立和运行了一级耦合系统。在该一级耦合系统中,平均总氮去除效率为 89.68±3.33%,高于单独的厌氧氨氧化(81.80±2.10%)和 SCN 驱动自养反硝化(85.20±1.54%)。此外,SCN 的平均去除效率达到 99.50±3.64%,高于单独的 SCN 驱动自养反硝化(98.80±0.65%)。N 稳定同位素示踪标记实验的结果表明,厌氧氨氧化和反硝化的各自反应速率分别为 106.38±10.37 μmol/L/h 和 69.07±8.07 μmol/L/h。通过分析宏基因组测序数据,确定 Thiobacillus_denitrificans 是该耦合系统中 SCN 降解的主要贡献者。此外,基于氮和硫代谢途径以及与 SCN 降解相关的基因的综合分析,可以推断 CNO 途径是 SCN 降解的原因。这项工作深入了解了在一级耦合系统中厌氧氨氧化与 SCN 驱动自养反硝化的耦合,为开发同时处理 SCN 和氮的废水处理有效方法提供了依据。

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