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Partial nitritation and o-cresol removal with aerobic granular biomass in a continuous airlift reactor

机译:连续气提反应器中需氧颗粒生物质的部分硝化和邻甲酚去除

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摘要

Several chemical industries produce wastewaters containing both, ammonium and phenolic compounds. As an alternative to treat this kind of complex industrial wastewaters, this study presents the simultaneous partial nitritation and o-cresol biodegradation in a continuous airlift reactor using aerobic granular biomass. An aerobic granular sludge was developed in the airlift reactor for treating a high-strength ammonium wastewater containing 950+/-25 mg N-NH⁺₄ L⁻¹. Then, the airlift reactor was bioaugmented with a pnitrophenol-degrading activated sludge and o-cresol was added progressively to the ammonium feed to achieve 100 mg L⁻¹. The results showed that stable partial nitritation and full biodegradation of o-cresol were simultaneously maintained obtaining a suitable effluent for a subsequent anammox reactor. Moreover, two o-cresol shock-load events with concentrations of 300 and 1000 mg L⁻¹ were applied to assess the capabilities of the system. Despite these shock load events, the partial nitritation process was kept stable and o-cresol was totally biodegraded. Fluorescence in situ hybridization technique was used to identify the heterotrophic bacteria related to o-cresol biodegradation and the ammonia oxidising bacteria along the granules.
机译:几个化学工业生产的废水中含有铵和酚类化合物。作为处理这类复杂工业废水的替代方法,本研究提出了使用好氧颗粒生物质在连续空运反应器中同时进行部分硝化和邻甲酚的生物降解。在气举反应器中开发了一种好氧颗粒污泥,用于处理含950 +/- 25 mg N-NH 3 L -1的高强度铵废水。然后,用对硝基苯酚降解的活性污泥对空运反应器进行生物强化,并向铵进料中逐渐加入邻甲酚,以得到100mg L -1。结果表明,同时维持了邻甲酚的稳定的部分硝化和完全生物降解,从而为随后的厌氧氨氧化反应器提供了合适的废水。此外,还应用了两个浓度分别为300和1000 mg L -1的邻甲酚冲击负荷事件来评估系统的功能。尽管发生了这些冲击负荷事件,但部分硝化过程仍保持稳定,邻甲酚被完全生物降解。荧光原位杂交技术用于鉴定与邻甲酚生物降解有关的异养细菌和沿颗粒的氨氧化细菌。

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  • 作者

    Jemaat Zulkifly;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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