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用生物炭投加强化 Anammox 工艺实现氮去除:表面官能团的作用。

Anammox process dosed with biochars for enhanced nitrogen removal: Role of surface functional groups.

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai 200240, China.

Shanghai Environmental Sanitation Engineering Design Institute Co. Ltd., No. 11, Lane 345, Shilong Road, Shanghai 200232, China.

出版信息

Sci Total Environ. 2020 Dec 15;748:141367. doi: 10.1016/j.scitotenv.2020.141367. Epub 2020 Aug 8.

Abstract

Biochar is an inexpensive redox-active carbon material that has been demonstrated to enhance microbial nitrogen-transforming processes. However, how redox-active biochar affects anammox remains unclear. Here, the effects of three functionally distinct biochars produced from corn stover biomass at varied pyrolysis temperatures (CS300, CS500, CS800) were evaluated as additives on the anammox performance in three reactors (R300, R550, R800) over the long term, during which nitrogen loading rate was either increased drastically (pulse strategy) or gradually (gradual strategy). Nitrogen removal was achieved at 86.5% (R300), 77.1% (Control), 59.3% (R550) and 57.7% (R800) under pulse strategy, and at 95.4% (R300), 92.3% (R550), 86.2% (Control) and 82.0% (R800) under gradual strategy, respectively. Compared with Control, addition of CS300 increased abundance of Candidatus Kuenenia with superior anammox activity. CS300 enriched with reduced functional groups (phenolic/hydroquinone) could donate electrons to support bioenergetics of anammox metabolism, whereas electron-accepting CS800 functioned inversely. Overall, this study highlights the importance of surface functional groups and redox property of biochar such that determines whether its addition impose stimulatory or suppressive effect on anammox process.

摘要

生物炭是一种廉价的氧化还原活性碳材料,已被证明可以增强微生物的氮转化过程。然而,氧化还原活性生物炭如何影响厌氧氨氧化仍不清楚。在这里,我们评估了三种功能不同的由玉米秸秆生物质在不同热解温度下制备的生物炭(CS300、CS500、CS800)作为添加剂对长期运行的三个反应器(R300、R550、R800)中厌氧氨氧化性能的影响,其中氮负荷率要么急剧增加(脉冲策略),要么逐渐增加(逐渐策略)。在脉冲策略下,氮去除率分别达到 86.5%(R300)、77.1%(对照)、59.3%(R550)和 57.7%(R800),在逐渐策略下,氮去除率分别达到 95.4%(R300)、92.3%(R550)、86.2%(对照)和 82.0%(R800)。与对照相比,添加 CS300 增加了具有优异厌氧氨氧化活性的 Candidatus Kuenenia 的丰度。富含还原官能团(酚/对苯二酚)的 CS300 可以提供电子来支持厌氧氨氧化代谢的生物能量学,而电子接受的 CS800 则相反。总的来说,本研究强调了生物炭表面官能团和氧化还原性质的重要性,这决定了其添加对厌氧氨氧化过程是产生刺激还是抑制作用。

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