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Treat River Sewage by Constructed Rapid Infiltration System

机译:内置快速渗滤系统处理河流污水

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In order to improve the quality of the river water, raise constructed rapid infiltration(CRI) system was constructed. Practice shows that the location and layout of this ecological engineering conform to the source of pollution, and the system is a new technology which combines natural, social and economic systems in one. In effluent of CRI, the removal rates of CODcr, NH3-N, TN, BOD5, SS and TP are 89%, 99%, 30%, 98%, 87% and 55% respectively. The contaminant concentrations of CODcr, NH3-N and BOD5 are 40mg/l, 0.391 mg/l and 3.2 mg/l respectively, and they meet 1 A standard requirement of Pollutant Discharge Standard of Municipal Wastewater Treatment Plant, however the treatment efficiencies of TN and TP are low. It suggests that when improve the CRI technique, TN must be the key to the study. In order to bring the CRI into wider use, structures, materials and front-end solutions of CRI must be changing to raise removal efficiencies of TN, TP and SS.
机译:为了提高河水水质,提出了构建人工快速入渗(CRI)系统。实践证明,该生态工程的位置和布局符合污染源,该系统是一种将自然,社会,经济三者结合为一体的新技术。在CRI废水中,CODcr,NH3-N,TN,BOD5,SS和TP的去除率分别为89%,99%,30%,98%,87%和55%。 CODcr,NH3-N和BOD5的污染物浓度分别为40mg / l,0.391mg / l和3.2mg / l,满足市政污水处理厂污染物排放标准1 A的标准要求,但是TN的处理效率和TP低。这表明,在改进CRI技术时,TN必须是研究的关键。为了更广泛地使用CRI,必须改变CRI的结构,材料和前端解决方案,以提高TN,TP和SS的去除效率。

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