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Nitrogen removal via a single-stage PN-Anammox process in a novel combined biofilm reactor

机译:通过单级PN-anammox方法在新型的生物膜反应器中通过单级PN-anammox方法去除

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This study developed a partial nitrification (PN) and anaerobic ammonia oxidation (Anammox) process for treating high-ammonia wastewater using an innovative biofilm system in which ammonia oxidizing bacteria grew on fluidized Kaldnes (K1) carriers and Anammox bacteria grew on fixed acryl resin carriers. The airlift loop biofilm reactor (ALBR) was stably operated for more than 4 months under the following conditions: 35 +/- 2 degrees C, pH 7.5-8.0 and dissolved oxygen (DO) of 0.5-3.5 mg/L. The results showed that the total nitrogen removal efficiency reached a maximum of 75% and the total nitrogen removal loading rate was above 0.4 kg/(d.m(3)). DO was the most efficient control parameter in the mixed biofilm system, and values below 1.5 mg/L were observed in the riser zone for the PN reaction, while values below 0.8 mg/L were observed in the downer zone for the Anammox reaction. Scanning electron microscopy and Fluorescence In Situ Hybridization images showed that most of the nitrifying bacteria were distributed on the K1 carriers and most of the Anammox bacteria were distributed within the acryl resin carriers. Therefore, the results indicate that the proposed combined biofilm system is easy to operate and efficient for the treatment of high-ammonia wastewater.
机译:该研究开发了一种局部硝化(PN)和厌氧氨氧化(厌氧氨氧)方法,用于治疗高氨废水,用于治疗高氨废水,其中氨氧化细菌在流化的kaldnes(K1)载体上生长,并厌氧细菌在固定的丙烯酸树脂载体上增长。在以下条件下,空运环生物膜反应器(ALBR)在以下条件下稳定运行超过4个月:35 +/- 2℃,pH 7.5-8.0,溶解氧(DO)为0.5-3.5mg / L.结果表明,总氮去除效率达到最大值75%,总氮去除负载率高于0.4kg /(d.m(3))。 DO是混合生物膜系统中最有效的控制参数,在PN反应的提升带中观察到1.5mg / L的值,而在抑制区的抑制区中观察到0.8mg / L的值以进行厌氧反应。扫描电子显微镜和原位杂交图像的荧光显示,大多数硝化细菌在K1载体上分布,大部分厌氧菌细菌分布在丙烯酸树脂载体内。因此,结果表明,拟议的合并的生物膜系统易于操作和高效治疗高氨废水。

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