Environmental Science and Engineering College, Dalian Maritime University, Dalian, 116026, China.
National Marine Environmental Monitoring Center, Dalian, 116023, China.
Environ Sci Pollut Res Int. 2021 May;28(20):25733-25747. doi: 10.1007/s11356-020-11932-4. Epub 2021 Jan 20.
In the development of a land-sea coordination management strategy, it is necessary to analyze pollution sources and loads of pollutants entering the sea. This study estimated the sources and transport of total nitrogen (TN) and total phosphorus (TP) entering Bohai Bay in Tianjin, a lower plain urban watershed, using a SPAtially Referenced Regression On Watershed attributes (SPARROW) model. We calibrated the model using TN and TP data from 26 and 27 sites, respectively. The results demonstrated that the R values of TN and TP were both above 0.99. In 2013, the TN load delivered to Bohai Bay was 21,320 ton, which could be traced to various sources: upstream (39%), industrial discharge (10%), sewage discharge (34%), fertilizer application (3%), livestock breeding (7%), aquaculture (5%), and rural communities (2%). The TP load delivered to Bohai Bay was 1504 ton, which originated from upstream (33%), industrial discharge (5%), sewage discharge (21%), fertilizer application (5%), livestock breeding (12%), aquaculture (10%), and rural communities (14%). Rational management of the water resources in streams, enhancement of water circulation between rivers and wetlands, and making full use of the effect of both land and water on pollutant retention are the suitable strategies in watershed management, reducing marine pollution.
在制定陆海统筹管理策略时,需要分析入海污染物的污染源和负荷。本研究采用 SPAtially Referenced Regression On Watershed attributes (SPARROW) 模型,估算了天津低平原城市流域入海的总氮(TN)和总磷(TP)的来源和输运。我们使用来自 26 个和 27 个站点的 TN 和 TP 数据分别对模型进行了校准。结果表明,TN 和 TP 的 R 值均在 0.99 以上。2013 年,TN 负荷进入渤海湾的量为 21320 吨,可追溯到多个来源:上游(39%)、工业排放(10%)、污水排放(34%)、化肥施用(3%)、畜牧业(7%)、水产养殖(5%)和农村社区(2%)。TP 负荷进入渤海湾的量为 1504 吨,来源于上游(33%)、工业排放(5%)、污水排放(21%)、化肥施用(5%)、畜牧业(12%)、水产养殖(10%)和农村社区(14%)。流域管理的适宜策略是合理管理溪流水资源,增强河流与湿地之间的水循环,充分发挥水陆对污染物截留的作用,从而减少海洋污染。