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Study on Micro-polluted Raw Water Treatment by Rectangular Biological Sedimentation Tanks

机译:矩形生物沉积罐的微污染原水处理研究

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Two reactors simulated rectangular sedimentation tank were used to treat micro-polluted raw water under same conditions. The reactor No.1 simulated rectangular sedimentation tank and rectangular biological sedimentation tank was simulated by the reactor No.2, in which three-dimensional elastic fillers were hanged. The process of biofilm developing in the reactor No.2 was researched to determine the optimal retention time of the reactor No.2. After determine the best retention time, comparing ammonia, CODMn, turbidity and other water quality indicators in the tpo reactors that operated steadily was used to compare the treatment effect of organic. Then, the factors that affect th removal of ammonia were analyzed. The results show that e reactor No.2 could hang the biofilm naturally and successf y and its optimal retention time is 1.5h. In the process of stable operation, the removal rates of ammonia, CODMn, turbidity in the reactor No.2 are 30.07%, 21.78% and 76.76% respectively that are all above the reactor No.l. So hanging the biofil in the rectangular sedimentation tanks to treat micro-pollute raw water has a certain research value.
机译:两种反应器模拟矩形沉降罐用于在相同条件下处理微污染的原水。反应器No.1模拟矩形沉淀罐和矩形生物沉降罐的反应器No.2模拟,其中三维弹性填料悬挂。研究了反应器中发育的生物膜的过程,研究了反应器No.2的最佳保留时间。在确定最佳保留时间之后,使用稳定运行的TPO反应器中的氨,CODMN,浊度和其他水质指示器来比较有机的治疗效果。然后,分析了影响氨的去除的因素。结果表明,电子反应堆No.2可以自然和成功率悬挂生物膜,其最佳保留时间为1.5h。在稳定运行的过程中,氨,Codmn,反应器中浊度的去除率分别为30.07%,21.78%和76.76%,全部在反应器中以上。所以悬挂在矩形沉降罐中的生物污水液,以治疗微污染的原水有一定的研究价值。

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