首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Formation mechanism of nitrifying granules observed in an aerobic upflow fluidized bed (AUFB) reactor
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Formation mechanism of nitrifying granules observed in an aerobic upflow fluidized bed (AUFB) reactor

机译:好氧上流流化床(AUFB)反应器中硝化颗粒的形成机理

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The influences of trace metals in the wastewater and shear stress by aeration were particularly examined to clarify the formation mechanism of nitrifying granules in an aerobic upflow fluidized bed (AUFB) reactor. It was found that Fe added as a trace element to the inorganic wastewater accumulated at the central part of the nitrifying granules. Another result obtained was that suitable shear stress by moderate aeration (0.07-0.20 L/min/L-bed) promoted granulation. Furthermore, it was successfully demonstrated that pre-aggregation of seed sludge using hematite promoted core formation, leading to rapid production of nitrifying granules. From these results, a nitrifying granulation mechanism is proposed: 1) as a first step, nitrifying bacteria aggregate along with Fe precipitation, and then the cores of granules are formed; 2) as a second step, the aggregates grow to be spherical or elliptical in form due to multiplication of the nitrifying bacteria and moderate shear stress in the reactor, and then mature nitrifying granules are produced. Fluorescence in situ hybridization (FISH) analysis successfully visualized the change in the spatial distribution of nitrifying bacteria in the granules, which supports the proposed granulation mechanism.
机译:特别研究了废水中微量金属和曝气剪切应力的影响,以阐明好氧上流流化床(AUFB)反应器中硝化颗粒的形成机理。发现将Fe作为微量元素添加到硝化颗粒中心部分所累积的无机废水中。获得的另一个结果是通过适度通气(0.07-0.20 L / min / L-床)的合适剪切应力促进了造粒。此外,已经成功地证明了使用赤铁矿对种子污泥进行预聚集促进了核的形成,从而导致硝化颗粒的快速生产。根据这些结果,提出了硝化的造粒机理:1)作为第一步,硝化细菌随着铁的沉淀而聚集,然后形成颗粒的核。 2)作为第二步骤,由于硝化细菌的繁殖和反应器中适度的剪切应力,聚集体以球形或椭圆形的形式生长,然后产生成熟的硝化颗粒。荧光原位杂交(FISH)分析成功地可视化了颗粒中硝化细菌的空间分布变化,这支持了提出的造粒机理。

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