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Evaluation of natural zeolite as microorganism support medium in nitrifying batch reactors: Influence of zeolite particle size

机译:硝化间歇反应器中天然沸石作为微生物载体的评估:沸石粒径的影响

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摘要

An evaluation of natural zeolite as a microorganism carrier in nitrifying reactors operated in batch mode was carried out. Specifically, the influence of zeolite particle sizes of 0.5, 1.0 and 2.0 mm in diameter on microorganism adherence to zeolite, ammonium adsorption capacity and the identification of microbial populations were assessed. The greatest amount of total biomass adhered was observed for a zeolite particle size of 1 mm (0.289 g) which was achieved on the 12th day of operation. The highest ammonium adsorption capacity was observed for a zeolite particle size of 0.5 mm, which was 64% and 31% higher than that observed for particle sizes of 1.0 and 2.0 mm, respectively. The maximum de-sorption values were also found for a zeolite particle size of 0.5 mm, although when equilibrium was reached the ammonium concentrations were similar to those observed for a zeolite particle size of 1.0 mm. It was also found that the experimental data on ammonium adsorption fitted very well to the Freundlich isotherm for the three particle sizes studied. Finally, the nitrifying reactors showed similar microbial populations independently of the particle size used as microorganism carrier. The dominant bacterial community was Gammaproteobacteria making up 80% of the total population found. Betaproteobacteria were also identified and made up 12% approx. of the total population. Ammonium Oxidant Betaproteobacteria and Nitrobacter were also detected. Copyright © 2012 Taylor and Francis Group, LLC.
机译:在以间歇模式运行的硝化反应器中,对天然沸石作为微生物载体进行了评估。具体地,评估了直径为0.5、1.0和2.0mm的沸石颗粒对微生物对沸石的粘附,铵吸附能力和鉴定微生物种群的影响。对于在操作的第12天达到的1毫米(0.289克)沸石颗粒,观察到附着的总生物量最大。对于0.5mm的沸石,观察到最高的铵吸附能力,这分别比对1.0mm和2.0mm的观察到的高64%和31%。对于0.5mm的沸石颗粒,也发现了最大的解吸值,尽管当达到平衡时铵的浓度与1.0mm的沸石颗粒所观察到的相似。还发现,对于三种粒径的氨吸附实验数据非常适合弗氏等温线。最后,硝化反应器显示出相似的微生物种群,与用作微生物载体的粒径无关。占主导地位的细菌群落是丙型杆菌,占发现的总种群的80%。也鉴定了β变形杆菌,约占12%。总人口中的还检测到氧化铵β变形杆菌和硝化细菌。版权所有©2012 Taylor and Francis Group,LLC。

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