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采用低溶解氧的中试规模连续活性污泥工艺对成熟垃圾渗滤液进行部分硝化和反硝化。

Partial nitrification and denitrification of mature landfill leachate using a pilot-scale continuous activated sludge process at low dissolved oxygen.

机构信息

School of Environment and Energy, South China University of Technology, Guangzhou 510006, China; The Key Lab of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, China.

School of Environment and Energy, South China University of Technology, Guangzhou 510006, China; The Key Lab of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, China.

出版信息

Bioresour Technol. 2016 Oct;218:580-8. doi: 10.1016/j.biortech.2016.07.008. Epub 2016 Jul 5.

Abstract

Controlling of low dissolved oxygen (DO) levels (0.1-0.5mg/L), a cost-effective strategy, was applied to a pilot-scale anoxic-oxic-oxic-anoxic process for partial nitrification and denitrification of mature landfill leachate. High ammonium removal efficiency, stable nitrite accumulation rate and total nitrogen removal efficiency was higher than 95.0%, 90.0% and 66.4%, respectively, implying potential application of this process for nitrogen removal of mature landfill leachate. Efficient nitrite accumulation in the first oxic reactor depended on low DO conditions and sufficient alkalinity. However, operational limit was mainly decided by actual hydraulic retention time (AHRT) of the first oxic reactor and appeared with AHRT less than 13.9h under DO of 0.3-0.5mg/L. High-throughput sequencing analysis demonstrated significant change of bacterial diversity in the first oxic reactor after a long-term operation and dominant bacteria genus Nitrosomonas was shown to be responsible for NH4(+)-N removal and nitrite accumulation under low DO levels.

摘要

控制低溶解氧(DO)水平(0.1-0.5mg/L)是一种具有成本效益的策略,已应用于中试规模的缺氧-好氧-好氧-缺氧工艺中,用于部分硝化和成熟垃圾渗滤液的反硝化。高氨氮去除效率、稳定的亚硝酸盐积累率和总氮去除效率分别高于 95.0%、90.0%和 66.4%,表明该工艺具有应用于成熟垃圾渗滤液中去除氮的潜力。在第一好氧反应器中高效积累亚硝酸盐取决于低 DO 条件和足够的碱度。然而,操作限制主要由第一好氧反应器的实际水力停留时间(AHRT)决定,在 DO 为 0.3-0.5mg/L 时,当 AHRT 小于 13.9h 时就会出现这种情况。高通量测序分析表明,在长期运行后,第一好氧反应器中的细菌多样性发生了显著变化,在低 DO 水平下,优势菌属硝化菌负责 NH4(+)-N 的去除和亚硝酸盐的积累。

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