首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Improved nitrogen removal in upflow anaerobic sludge blanket (UASB) reactors by incorporation of Anammox bacteria into the granular sludge
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Improved nitrogen removal in upflow anaerobic sludge blanket (UASB) reactors by incorporation of Anammox bacteria into the granular sludge

机译:通过将厌氧细菌掺入颗粒污泥中,提高了上流厌氧污泥层反应器(UASB)中的氮去除率

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Upflow anaerobic sludge blanket reactors may offer a number of advantages over conventional mixed-tank, SBR, and biofilm reactors, including high space-loading, low footprint, and resistance to shocks and toxins. In this study, we assessed the use of upflow anaerobic sludge blanket (UASB) reactor technology as applied to anaerobic ammonia removal, or Anammox. Four 200 ml UASB reactors were inoculated with 50% (by volume) anaerobic granular sludge and 50% flocular sludge from different sources (all with the potential for containing Anammox organisms). Tools used to assess the reactors included basic analyses, fluorescent in-situ hybridisation, and mathematical modelling, with statistical non-linear parameter estimation. Two of the reactors showed statistically identical Anammox activity (i.e., identical kinetic parameters), with good ammonia and nitrite removal (0.14 kgNH_x m~(-3) reactor day~(-1), with 99% ammonia removal). The third reactor also demonstrated significant Anammox activity, but with poor identifiability of parameters. The fourth reactor had no statistical Anammox activity. Modelling indicated that poor identifiability and performance in the third and fourth reactors were related to an excess of reduced carbon, probably originating in the inoculum. Accumulation of Anammox organisms was confirmed both by a volume loading much lower than the growth rate, and response to a probe specific for organisms previously reported to mediate Anammox processes. Overall, the UASB reactors were effective as Anammox systems, and identifiability of the systems was good, and repeatable (even compared to a previous study in a rotating biological contactor). This indicates that operation, design, and analysis of Anammox UASB reactors specifically, and Anammox systems in general, are reliable and portable, and that UASB systems are an appropriate technology for this process.
机译:上流式厌氧污泥床反应器与传统的混合罐,SBR和生物膜反应器相比,可提供许多优势,包括高空间负荷,占地面积小,抗冲击和抗毒素性。在这项研究中,我们评估了用于厌氧氨去除或厌氧氨氧化的上流厌氧污泥层(UASB)反应器技术的使用。在四个200 ml UASB反应器中分别接种了50%(按体积计)厌氧颗粒污泥和50%来自不同来源的絮状污泥(所有这些污泥都有可能含有Anammox生物)。用于评估反应堆的工具包括基本分析,荧光原位杂交和数学建模以及统计非线性参数估计。两个反应器显示出统计上相同的厌氧氨氧化活性(即,相同的动力学参数),具有良好的氨和亚硝酸盐去除率(0.14 kg NH_x m·(-3)反应器天·(-1),具有99%的氨去除率。第三反应器也显示出显着的厌氧氨氧化酶活性,但是参数的可识别性较差。第四反应器没有统计的厌氧氨氧化活性。模型表明,第三和第四反应堆的可识别性和性能差与还原碳的过量有关,还原碳的过量可能源自接种物。厌氧菌生物体的积累既可以通过体积加载大大低于生长速率来确认,也可以通过对先前报道的介导厌氧菌过程的生物体特异性探针的反应来确认。总体而言,UASB反应器可作为Anammox系统有效,并且系统的可识别性良好且可重复(甚至与之前在旋转生物接触器中的研究相比)。这表明Anammox UASB反应器(尤其是Anammox系统)的运行,设计和分析是可靠且可移植的,并且UASB系统是该过程的合适技术。

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