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Spatial Pattern Analysis of Heavy Metals in Beijing Agricultural Soils Based on Spatial Autocorrelation Statistics

机译:基于空间自相关统计的北京农业土壤重金属空间格局分析

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This study explored the spatial pattern of heavy metals in Beijing agricultural soils using Moran’s I statistic of spatial autocorrelation. The global Moran’s I result showed that the spatial dependence of Cr, Ni, Zn, and Hg changed with different spatial weight matrixes, and they had significant and positive global spatial correlations based on distance weight. The spatial dependence of the four metals was scale-dependent on distance, but these scale effects existed within a threshold distance of 13 km, 32 km, 50 km, and 29 km, respectively for Cr, Ni, Zn, and Hg. The maximal spatial positive correlation range was 57 km, 70 km, 57 km, and 55 km for Cr, Ni, Zn, and Hg, respectively and these were not affected by sampling density. Local spatial autocorrelation analysis detected the locations of spatial clusters and spatial outliers and revealed that the pollution of these four metals occurred in significant High-high spatial clusters, Low-high, or even High-low spatial outliers. Thus, three major areas were identified and should be receiving more attention: the first was the northeast region of Beijing, where Cr, Zn, Ni, and Hg had significant increases. The second was the southeast region of Beijing where wastewater irrigation had strongly changed the content of metals, particularly of Cr and Zn, in soils. The third area was the urban fringe around city, where Hg showed a significant increase.
机译:这项研究使用Moran的空间自相关I统计量,探索了北京农业土壤中重金属的空间格局。全局Moran的I结果表明,Cr,Ni,Zn和Hg的空间依赖性随不同的空间权重矩阵而变化,并且基于距离权重它们具有显着且正的全局空间相关性。四种金属的空间依赖性与距离成比例关系,但对于Cr,Ni,Zn和Hg,这些尺度效应分别存在于13 km,32 km,50 km和29 km的阈值距离内。 Cr,Ni,Zn和Hg的最大空间正相关范围分别为57 km,70 km,57 km和55 km,并且不受采样密度的影响。局部空间自相关分析检测到了空间簇和空间离群点的位置,发现这四种金属的污染发生在明显的高-高空间簇,低-高甚至高-低空间离群中。因此,确定了三个主要领域,应该引起更多关注:第一个是北京的东北地区,那里的Cr,Zn,Ni和Hg显着增加。第二个是北京的东南地区,那里的污水灌溉极大地改变了土壤中金属的含量,尤其是铬和锌的含量。第三个区域是城市周围的城市边缘,汞含量显着增加。

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