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Assessing how spatial variations of land use pattern affect water quality across a typical urbanized watershed in Beijing, China

机译:评估土地利用模式的空间变化如何影响北京北京典型城市化流域的水质

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摘要

Understanding the relationship between land use patterns and water quality in urbanized areas can provide insight into urban water quality management. In this study, a self-organizing map (SOM) and a linear mixed effects (LME) model were applied to explore the spatiotemporal patterns of nutrients and their relationship with land use characteristics in the highly urbanized Beiyun River watershed. The SOM classified 324 sampling data from 2014 to 2015 at 25 typical river sampling sites into nine clusters, with differences in land use patterns and seasonal (rainy and dry seasons) distributions. In the urbanized upstream reach of the river, concentrations of most pollutants were low, while in downstream sites the concentrations were higher for these pollution parameters. Nitrate-N (NO3--N), however, exhibited the opposite pattern, probably due to the sources of pollutants and biochemical processes. The explanatory ability of the LME model in the established urbanized area and newly developed area in the upstream portion of the watershed was much better than in the downstream area, probably due to the influence of upstream nutrient contributions and the point source inputs in the downstream area. These statistical results indicated that sewage disposal and the main urbanized land use types were the most important drivers of river contamination. Forest land positively or negatively influenced river water quality depending on its spatial location as well as the water quality indicators. Therefore, sewage disposal as well as spatial non-stationarity of land-use impacts should be taken into consideration to reduce water pollution in the Beiyun River watershed.
机译:了解城市化地区土地利用模式与水质之间的关系,可以深入了解城市水质管理。在该研究中,应用了一种自组织地图(SOM)和线性混合效果(LME)模型来探讨高度城市化北云河流域中的营养素的时空模式及其与土地利用特征的关系。 SOM分类324 2014年到2015年的抽样数据在25个典型的河流采样点分为九个集群,土地利用模式和季节性(多雨和干燥季节)分配差异。在河流的城市化上游抵达中,大多数污染物的浓度低,而在下游部位,这些污染参数浓度较高。然而,硝酸盐-N(NO3 - N)表现出相反的模式,可能是由于污染物和生化过程的来源。 LME模型在分水岭上游部分的建立的城市化区域和新发达地区的解释能力远比下游区域好多多数,可能是由于上游营养贡献的影响和下游地区的点源输入。这些统计结果表明,污水处理和主要的城市化土地使用类型是河流污染最重要的驱动因素。根据其空间位置以及水质指标,林地积极地或负面影响河水质量。因此,应考虑污水处理以及土地利用影响的空间非公平性,以减少北云河流域的水污染。

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