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Study on Anti-Ammonia Load Capacity of Zeolite-Ceramics Biological Aerated Filter (Z-C BAF)

机译:沸石陶瓷曝气生物滤池(Z-C BAF)的抗氨负荷能力研究

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The anti-ammonia shock load capacity of zeolite-ceramics biological aerated filter is studied. It is turned out that anti-ammonia shock load process can be divided into two processes of absorption and release, during which the effluent ammonia nitrogen concentration is always less than 4mg/L. In adsorption process, the ammonia nitrogen removal mainly occurs in the 0~35cm zeolite layer, accounting for 84% of total removal rate, adsorption of zeolite accounting for 96.15% of total ammonia removal. In the release process, ammonia nitrogen concentration increases firstly and then decreases along the filter. Along with the time the peak of NH3-N moves from the headpiece to the bottom of the filter, and gradually decreases. 4h after the shock load, the effluent ammonia nitrogen concentration returns to normal level. This indicates that the zeolite-ceramic BAF can withstand short-term ammonia nitrogen shock load and operate long-term. The column height, influent ammonia nitrogen concentration and flow rate can affect the dynamic adsorption process of ammonia nitrogen. BDST model can be used to predict column height Z and penetration time t at different flow rates.
机译:研究了沸石陶瓷曝气生物滤池的抗氨冲击载荷能力。事实证明,抗氨冲击负荷过程可分为吸收和释放两个过程,在此过程中,出水氨氮浓度始终小于4mg / L。在吸附过程中,氨氮的去除主要发生在0〜35cm的沸石层中,占总去除率的84%,沸石的吸附占总氨去除率的96.15%。在释放过程中,氨氮浓度先沿过滤器升高,然后降低。随着时间的流逝,NH3-N的峰值从机头移动到过滤器的底部,并逐渐减小。冲击负荷后4h,出水氨氮浓度恢复到正常水平。这表明沸石-陶瓷BAF可以承受短期氨氮冲击负荷并可以长期运行。柱高,进水氨氮浓度和流速会影响氨氮的动态吸附过程。 BDST模型可用于预测不同流速下的柱高Z和穿透时间t。

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