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Biofilm characteristics in biological denitrification biofilm reactors

机译:生物反硝化生物膜反应器中的生物膜特性

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The biological denitrification method applied to treat municipal sewage containing low levels of nitrogen compounds and contaminated groundwater is very popular. There are few studies in the literature an the treatment of industrial wastewater containing high levels of nitrogen compounds. To assess the feasibility of biofilm and immobilized cells for treating wastewater which contains high-strength nitrogen compounds, the biofilm characteristics of the biological denitrification process in attached-growth reactors were studied. The Richardson-Zaki relationship can adequately describe the bioparticle fluidization phenomenon developed in biological denitrification reactors. The terminal settling velocity of bioparticles was 1.88-5.14 cm/s for activated carbon and 2.98 cm/s for immobilized cells, respectively. The dry density of biofilm grown on activated carbon decreased as the biofilm thickness increased and ranged between 63 and 93 mg/cm(3). The biomass concentration in the reactor varied with the changes in both superficial velocity and biofilm thickness. The maximum biomass concentration occurred at the biofilm thickness of 400-700 mu m. Furthermore, a large amount of biofilm was grown on the surface of immobilized cells and there was only a small amount of microorganisms grown inside the cell beads. [References: 15]
机译:生物反硝化方法用于处理氮含量低且受污染的地下水的城市污水非常流行。文献中很少有处理含高浓度氮化合物的工业废水的研究。为了评估生物膜和固定化细胞处理含高强度氮化合物废水的可行性,研究了附着生长反应器中生物反硝化过程的生物膜特性。 Richardson-Zaki关系可以充分描述生物反硝化反应器中出现的生物颗粒流化现象。对于活性炭,生物颗粒的最终沉降速度分别为1.88-5.14 cm / s和对于固定化细胞而言,为2.98 cm / s。随着生物膜厚度的增加,在活性炭上生长的生物膜的干密度降低,范围在63至93 mg / cm(3)之间。反应器中生物质浓度随表面速度和生物膜厚度的变化而变化。最大生物质浓度发生在生物膜厚度为400-700微米时。此外,大量的生物膜在固定的细胞表面上生长,并且在细胞珠内部仅生长了少量的微生物。 [参考:15]

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