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High-rate nitrification of electronic industry wastewater by using nitrifying granules

机译:使用硝化颗粒,电子工业废水的高速硝化

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Nitrifying granules have a high sedimentation property and an ability to maintain a large amount of nitrifying bacteria in a reaction tank. Our group has examined the formation process of nitrifying granules and achieved high-rate nitrification for an inorganic synthetic wastewater using these granules. In this research, a pilot-scale test plant with an 850-liter reaction tank was assembled in a semiconductor manufacturing factory in order to conduct a continuous water conduction test using real electronics industry wastewater. The aim was to observe the formation of nitrifying granules and determine the maximum ammonia removal rate. The average granule diameter formed during the experiment was 780 mu m and the maximum ammonia removal rate was observed to be 1.5 kgN.m(-3).day(-1) at 20 degrees C, which is 2.5-5 times faster than traditional activated sludge methods. A fluorescence in situ hybridization analysis showed that beta-proteobacterial ammonia oxidizing bacteria and the Nitrospira-like nitrite-oxidizing bacteria dominate the bacteria population in the granules, and their strong aggregation capacity might confer some benefits to the formation of these nitrifying granules.
机译:硝化颗粒具有高沉降性质和在反应罐中保持大量硝化细菌的能力。我们的组研究了硝化颗粒的形成过程,并使用这些颗粒实现了无机合成废水的高速硝化。在该研究中,在半导体制造工厂组装了一种具有850升反应槽的试验尺度试验装置,以使用真正的电子工业废水进行连续的防水试验。目的是观察硝化颗粒的形成并确定最大的氨去除率。在实验期间形成的平均颗粒直径为780μm,观察到最大的氨去除速率为1.5kgn.m(-3).deg,20摄氏度,比传统快2.5-5倍活性污泥方法。原位杂交分析的荧光表明,β-植物氨氨氧化细菌和氮素样硝酸盐氧化细菌在颗粒中的细菌群体主导,它们的强聚集能力可能会对这些硝化颗粒的形成产生一些益处。

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