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Removal of NH3-N, NO2-N and UV254 organics by biological activated carbon fiber

机译:生物活性炭纤维去除NH3-N,NO2-N和UV254有机物

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A novel water treatment technique, biological activated carbon fiber (BACF), was applied to remove NH3-N and NO2-N from slightly polluted water. Activated carbon fiber (ACF), inoculated with microorganism, was used as packing material. Its performance was compared with that of biological activated carbon (BAC) and ACF. Much higher efficiency of NH3-N and NO2-N removal from slightly polluted water was achieved by BACF than BAC and ACF. The results of removal efficiency of NH3-N, NO2-N, UV254 organics and microorganism morphology at different period of water treatment suggested that physical adsorption of NH3-N, NO2-N and UV254 organics by BACF was responsible for the first five days, and the quantity microorganism formed on the activated carbon fiber was much less by scanning electron microscope (SEM), but after which NH3-N, NO2-N and UV254 organics were biodegraded by inoculated microorganisms. The dynamic steady state between physical adsorption and biodegradation was about one week. At this period, the appearance, quantity and species of microorganism formed on the activated carbon fiber were also much more. After the system achieved equilibrium, the BACF column exhibited high adaptation to shock loading, elevated temperature, and flow rate. 90.6%, 96.2% and 90.8% removal efficiencies for NH3-N, NO2-N and UV254 organics were respectively achieved during the 45-day operating period. Even on the 45-day operation, the removal efficiency for the three kinds of pollutants was achieved above 72.0%, 60.0% and 55.0%, respectively. The results also demonstrated that NO2-N removal was not affected by NH3-N, which was concluded that the denitrification was occurred in BACF column. A simple periodic backwash system was used to regenerate the used BACF and BAC.
机译:一种新型的水处理技术,即生物活性炭纤维(BACF),用于从轻度污染的水中去除NH3-N和NO2-N。接种了微生物的活性炭纤维(ACF)被用作包装材料。将其性能与生物活性炭(BAC)和ACF进行了比较。与BAC和ACF相比,BACF可以从轻微污染的水中获得更高的NH3-N和NO2-N去除效率。水处理不同时期对NH3-N,NO2-N,UV254有机物的去除效率和微生物形态的结果表明,前五天,BACF物理吸附了NH3-N,NO2-N和UV254有机物,扫描电镜观察发现,活性炭纤维上形成的微生物数量要少得多,但接种后的微生物会降解NH3-N,NO2-N和UV254有机物。物理吸附与生物降解之间的动态稳态约为1周。在此期间,在活性炭纤维上形成的微生物的外观,数量和种类也更多。系统达到平衡后,BACF色谱柱表现出对冲击载荷,高温和流速的高度适应性。在45天的运行期间,分别实现了NH3-N,NO2-N和UV254有机物的90.6%,96.2%和90.8%的去除率。即使在45天的运行中,对三种污染物的去除效率也分别达到72.0%,60.0%和55.0%以上。结果还表明,NH3-N不会影响NO2-N的去除,这表明在BACF色谱柱中发生了反硝化作用。一个简单的定期反冲洗系统用于再生用过的BACF和BAC。

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