首页> 外文会议>IWA(International Water Association) International Conference on Biofilm Systems; 20030914-18; Cape Town(ZA) >Enhancement of biofilm formation onto surface-modified hollow-fiber membranes and its application to a membrane-aerated biofilm reactor
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Enhancement of biofilm formation onto surface-modified hollow-fiber membranes and its application to a membrane-aerated biofilm reactor

机译:增强表面改性的中空纤维膜上生物膜的形成及其在膜曝气生物膜反应器中的应用

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Surface-modified hollow-fiber membranes were prepared by radiation-induced grafting of an epoxy-group-containing monomer, glycidylmethacrylate (GMA), onto a polyethylene-based fiber (PE-fiber). The epoxy ring of GMA was opened by introduction of diethylamine (DEA). The bacterial adhesivity to this material (DEA-fiber) was tested by immersion into a nitrifying bacterial suspension. The initial adhesion rates and the amount of attached bacteria of the DEA-fiber were 6-10-fold and 3-fold greater than those of the PE fiber, respectively. A membrane-aerated biofilm reactor (MABR) composed of DEA fibers was developed for partial nitrification with nitrite accumulation. Prior to the nitrification test, it was confirmed that the oxygen supply rate (OSR) was proportional to air pressure up to 100 kPa, allowing easy control of oxygen supply. Stable nitrite accumulation was observed in the partial nitrification test at a fixed oxygen supply throughout the operation period, indicating that oxygen was consumed only by ammonia oxidizers. Furthermore, it was demonstrated that oxygen utilization efficiency (OUE) in the ammonia oxidation process was nearly 100% after 300 h incubation.
机译:通过将含环氧基的单体甲基丙烯酸缩水甘油酯(GMA)辐射诱导接枝到聚乙烯基纤维(PE-fiber)上,制备了表面改性的中空纤维膜。通过引入二乙胺(DEA)打开GMA的环氧环。通过浸入硝化细菌悬浮液中来测试细菌对该材料(DEA纤维)的粘附性。 DEA纤维的初始黏附率和附着细菌数量分别比PE纤维高6-10倍和3倍。开发了一种由DEA纤维组成的膜曝气生物膜反应器(MABR),用于亚硝酸盐积累的部分硝化反应。在硝化试验之前,已确认氧气供应率(OSR)与高达100 kPa的气压成比例,从而可以轻松控制氧气供应。在部分硝化试验中,在整个操作期间内,在固定的氧气供应下观察到了稳定的亚硝酸盐积累,表明氧气仅被氨氧化剂消耗。此外,证明了在300小时的温育后,氨氧化过程中的氧气利用效率(OUE)接近100%。

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