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在 50°C 下实现单污泥硝化/反硝化的开拓性研究。

Pioneering on single-sludge nitrification/denitrification at 50 °C.

机构信息

Center for Microbial Ecology and Technology (CMET), Ghent University, Coupure Links 653, 9000, Gent, Belgium.

Center for Microbial Ecology and Technology (CMET), Ghent University, Coupure Links 653, 9000, Gent, Belgium; Research Group of Sustainable Energy, Air and Water Technology, University of Antwerp, Groenenborgerlaan 171, 2020, Antwerpen, Belgium.

出版信息

Chemosphere. 2020 Aug;252:126527. doi: 10.1016/j.chemosphere.2020.126527. Epub 2020 Mar 17.

Abstract

Thermophilic nitrification has been proven in lab-scale bioreactors at 50 °C. The challenge is now to develop a solution for thermophilic nitrogen removal, integrating nitrification with denitrification and aerobic carbon removal. This pioneering study aimed at a single-sludge nitrification/denitrification process at 50 °C, through exposing nitrification in a step by step approach to anoxia and/or organics. Firstly, recurrent anoxia was tolerated by a nitrifying community during long-term membrane bioreactor (MBR) operation (85 days), with high ammonium oxidation efficiencies (>98%). Secondly, five organic carbon sources did not affect thermophilic ammonium and nitrite oxidation rates in three-day aerobic batch flask incubations. Moving to long-term tests with sequencing batch reactors (SBR) and MBR (>250 days), good nitrification performance was obtained at increasing COD/N ratios (0, 0.5, 1, 2 and 3). Thirdly, combining nitrification, recurrent anoxia and presence of organic carbon resulted in a nitrogen removal efficiency of 92-100%, with a COD/N of 4.8 ± 0.6 and a nitrogen removal rate of 50 ± 14 mg N g VSS d. Overall, this is the first proof of principle thermophilic nitrifiers can cope with redox fluctuations (aerobic/anoxic) and the aerobic or anoxic presence of organic carbon, can functionally co-exist with heterotrophs and that single-sludge nitrification/denitrification can be achieved.

摘要

在 50°C 的实验室规模生物反应器中已经证明了嗜热硝化作用的存在。现在的挑战是开发一种解决方案,用于实现嗜热脱氮,将硝化作用与反硝化作用和有氧碳去除相结合。这项开创性的研究旨在实现 50°C 下的单污泥硝化/反硝化工艺,通过逐步使硝化作用处于缺氧和/或有机物环境中来实现。首先,在长期的膜生物反应器(MBR)运行(85 天)中,硝化菌群能够耐受反复缺氧,铵氧化效率高达 98%以上。其次,在为期三天的有氧批式烧瓶培养中,五种有机碳源不会影响嗜热铵和亚硝酸盐氧化速率。在采用序批式反应器(SBR)和 MBR 的长期试验中(>250 天),随着 COD/N 比(0、0.5、1、2 和 3)的增加,硝化性能良好。第三,将硝化作用、反复缺氧和有机物的存在相结合,可实现 92-100%的氮去除效率,COD/N 为 4.8±0.6,氮去除速率为 50±14mg N g VSS d。总的来说,这是第一个证明原则上嗜热硝化菌能够应对氧化还原波动(好氧/缺氧)以及有氧或缺氧条件下存在有机物,能够与异养生物共存,并且可以实现单污泥硝化/反硝化的证据。

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