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Microelectrode Measurements of the Activity Distribution in Nitrifying Bacterial Aggregates

机译:硝化细菌聚集物中活性分布的微电极测量

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Microelectrodes for ammonium, oxygen, nitrate, and pH were used to study nitrifying aggregates grown in a fluidized-bed reactor. Local reactant fluxes and distribution of microbial activity could be determined from the microprofiles. The interfacial fluxes of the reactants closely reflected the stoichiometry of bacterial nitrification. Both ammonium consumption and nitrate production were localized in the outer shells, with a thickness of approximately 100 to 120 μm, of the aggregates. Under conditions in which ammonium and oxygen penetrated the whole aggregate, nitrification was restricted to this zone; oxygen was consumed in the central parts of the aggregates as well, probably because of oxidation of dead biomass. A sudden increase of the oxygen concentration to saturation (pure oxygen) was inhibitory to nitrification. The pH profiles showed acidification in the aggregates, but not to an inhibitory level. The distribution of activity was determined by the penetration depth of oxygen during aggregate development in the reactor. Mass transfer was significantly limited by the boundary layer surrounding the aggregates. Microelectrode measurements showed that the thickness of this layer was correlated with the diffusion coefficient of the species. Determination of the distribution of nitrifying activity required the use of ammonium or nitrate microelectrodes, whereas the use of oxygen microelectrodes alone would lead to erroneous results.
机译:用于铵,氧,硝酸盐和pH的微电极用于研究在流化床反应器中生长的硝化聚集体。局部反应物通量和微生物活性的分布可以从微观概况确定。反应物的界面通量紧密反映了细菌硝化的化学计量。铵消耗量和硝酸盐生产量均位于外壳中,聚集体的厚度约为100至120μm。在铵和氧渗透到整个骨料的条件下,硝化作用仅限于该区域。聚集体的中心部分也消耗了氧气,这可能是由于死生物质的氧化所致。氧气浓度突然增加到饱和(纯氧气)会抑制硝化作用。 pH值曲线显示聚集体发生酸化,但未达到抑制水平。活性的分布由反应器中聚集体发展过程中氧气的渗透深度决定。传质受到聚集体周围边界层的明显限制。微电极测量表明,该层的厚度与物质的扩散系数相关。确定硝化活性的分布需要使用铵或硝酸盐微电极,而单独使用氧微电极会导致错误的结果。

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