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Spatial network analysis of surface soil pollution from heavy metals and some other elements: a case study of the Baotou region of China

机译:重型金属表面土壤污染的空间网络分析及其他元素 - 以中国包头地区为例

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PurposeWith the development of heavy industry, urban soil suffers serious pollution, which threatens the sustainable development of cities. Understanding the spatial distribution characteristics of surface soil pollution aids in pollution prevention and control and promotes sustainable development.Materials and methodsWe use China's Baotou as an example. Based on the data of 2820 sampling points in main urban areas and some suburban areas of Baotou, we constructed a relationship network model for sampling points in surface soil by using the complex network method. We combined the network method with spatial geographic information to analyze the spatial agglomeration characteristics of the surface soil pollution in Baotou China.Results and discussionSampling points at Dalahai Village (including 506D, 538B, and 538D) and Hayenaobao Village (including 509C, 541A, and 541C), Puerhantu Town within the Kundulun District have the most serious pollution problems, and they are all concentrated in the tailings dam. Sampling points 328D and 544A are scattered in the Leng Community, Kunhe Town, Kundulun District and Changhan Village, Haringer Township, Jiuyuan District, but they have a close co-anomaly relationship with the tailings dam. We suggest that these areas should be unified to give priority to pollution control. There is an obvious difference for Al2O3, B, Hg, and U, which are abnormal in the power plant ash storage pools, but normal at the tailings dam. Consequently, pollution control for power plant ash storage pools needs to be different from pollution control at the tailings dam. Sampling points at the Fengying Community (including 580A and 580B), Kunhe Town, Kundulun District, and Gaoyoufang Village (579D and 643B), Rare Earth Road, Qingshan District as well as other sampling points upstream of the Kundulun River have a close co-anomaly relationship with the tailings dam. It is necessary to strengthen the purification treatment of sewage upstream of the Kundulun River to reduce the spread of pollutants.ConclusionsThese results provide a theoretical basis for the government to formulate specific cross-regional collaborative governance measures.
机译:目的是重工业的发展,城市土壤遭受严重污染,这威胁着城市的可持续发展。了解地表土壤污染助剂的空间分布特征污染防治促进,促进可持续发展。材料和方法用来中国包头作为一个例子。基于主要城市地区2820个采样点的数据和包头的一些郊区,我们通过使用复杂的网络方法构建了一种用于表面土中的采样点的关系网络模型。我们将网络方法与空间地理信息相结合,分析了包头中国地表土壤污染的空间凝聚特征。达拉海村(包括506D,538B和538D)和Hayenaobao村(包括509C,541A和541C),昆树村区普国田镇有最严重的污染问题,它们都集中在尾矿坝。采样点328D和544A分散在九源区哈林镇昆河乡,昆河镇,隆格镇,但他们与尾矿大坝有一个紧密的共同异常关系。我们建议应统一这些领域以优先考虑污染控制。 Al2O3,B,HG和U存在明显的差异,在发电厂灰储存池中异常,但在尾矿坝处正常。因此,电厂灰储存池的污染控制需要与尾矿坝污染控制不同。枫花群落的采样点(包括580A和580B),昆河镇,昆树村区和高友坊村(579D和643B),稀土路,青山区以及昆山河上游的其他采样点有一个密切的共同与尾矿大坝的异常关系。有必要加强昆鲁洪河上游污水的净化处理,以减少污染物的传播。结论结果为政府提供了制定特定的跨区域协作治理措施的理论依据。

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