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Identification of the Most Efficient Methods for Improving Water Quality in Rapid Urbanized Area Using the MIKE 11 Modelling System

机译:使用MIKE 11建模系统识别改善快速城市化地区水质的最有效方法

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The Liangtan River basin is shared by Jiulongpo, Shaping a and Beibei district in Chongqing, China. The Liangtan River pilot project comprised identification of key pollution sources leading the Liangtan River basin pollution and the most efficient projects and technology for improving water quality in rapid urbanized area using the MIKE 11 modeling system. Ammonia-N (NH4-N) and chemical oxygen demand (COD) were found to be most illustrative representing nutrient load from municipal and diffuse rural sources and industrial sources, respectively. The scenario modelling for 2015 shows that in terms of improving the water quality, the different sectors should be addressed in the following order: Urban wastewater, industrial pollution load, rural wastewater, livestock pollution load, domestic solid waste and fertilizer pollution load. The largest improvements to water quality by 2015 can be achieved by enhancing municipal wastewater treatment to meet higher wastewater discharge standards for nutrients and by supporting investment in clean technology at the 50 largest industrial enterprises.
机译:凉坡流域由中国重庆的九龙坡,沙坪a和北be区共享。凉滩河试点项目包括确定导致凉滩河流域污染的关键污染源以及使用MIKE 11建模系统改善快速城市化地区水质的最有效项目和技术。发现氨氮(NH4-N)和化学需氧量(COD)最具代表性,分别代表了市政和分散农村来源以及工业来源的养分负荷。 2015年的情景模型表明,就改善水质而言,应按以下顺序解决不同部门:城市废水,工业污染负荷,农村废水,牲畜污染负荷,生活垃圾和化肥污染负荷。到2015年,最大的水质改善可通过加强市政废水处理以达到更高的养分废水排放标准,以及支持50家最大的工业企业对清洁技术的投资来实现。

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