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Anammox process for synthetic and practical wastewater treatment using a novel kind of biomass carriers

机译:使用新型生物质载体的厌氧氨氧化工艺处理合成废水和实际废水

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The anammox process, as an alternative to conventional nitrogen removal technologies, has abstracted much attention in recent years. In this study, one column-type reactor using a novel support material-net type acrylic fiber (Biofix)-was used for anammox treatment. The Biofix reactor was operated at 25 degrees C (peak summer temperature, 31.5 degrees C). Over 330 days of operation for synthetic wastewater treatment, the nitrogen loading rates of the reactor were increased to 3.6 kg-N/m(3)/d and T-N removal efficiencies reached to 81.3%. For the practical anaerobic sludge digester liquor treatment, the average TN removal efficiency of 72% was obtained. A protein substance was shown to be the most abundant extracellular polymeric substances (EPS) in the granular sludge with almost two times more in the attached sludge of the Biofix reactor. Considering the EPS levels and observation by scanning electron microscopy, the anammox granules in the Biofix reactor were showing dense state. Results of DNA analyses indicated that the KSU-1 strain might prefer relatively low nutrient levels, while the KU2 strain might be better suited for the high media concentration. Other kinds of bacteria were also identified with the potentials for consuming the dissolved oxygen in the influent and facilitating anammox bacteria surviving under aerobic conditions.
机译:厌氧氨氧化工艺作为传统脱氮技术的替代方法,近年来引起了广泛的关注。在这项研究中,一个使用新型支撑材料的网状丙烯酸纤维(Biofix)的柱式反应器被用于厌氧氨氧化处理。 Biofix反应器在25摄氏度(夏季峰值温度,31.5摄氏度)下运行。经过330天的合成废水处理操作,反应器的氮气负载率提高到3.6 kg-N / m(3)/ d,T-N去除效率达到81.3%。对于实际的厌氧污泥消化池液处理,获得的总TN去除率平均为72%。蛋白物质是颗粒状污泥中含量最高的细胞外聚合物(EPS),而Biofix反应器的附着污泥中含量几乎是后者的两倍。考虑到EPS水平和通过扫描电子显微镜观察,Biofix反应器中的厌氧氨氧化颗粒呈致密状态。 DNA分析结果表明,KSU-1菌株可能更喜欢较低的营养水平,而KU2菌株可能更适合高培养基浓度。还确定了其他种类的细菌,它们具有消耗进水中的溶解氧并促进在有氧条件下存活的厌氧氨氧化细菌的潜力。

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