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首页> 外文期刊>International Journal of Environmental Research and Public Health >Hotspot Analysis of Spatial Environmental Pollutants Using Kernel Density Estimation and Geostatistical Techniques
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Hotspot Analysis of Spatial Environmental Pollutants Using Kernel Density Estimation and Geostatistical Techniques

机译:基于核密度估计和地统计技术的空间环境污染物热点分析

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Concentrations of four heavy metals (Cr, Cu, Ni, and Zn) were measured at 1,082 sampling sites in Changhua county of central Taiwan. A hazard zone is defined in the study as a place where the content of each heavy metal exceeds the corresponding control standard. This study examines the use of spatial analysis for identifying multiple soil pollution hotspots in the study area. In a preliminary investigation, kernel density estimation (KDE) was a technique used for hotspot analysis of soil pollution from a set of observed occurrences of hazards. In addition, the study estimates the hazardous probability of each heavy metal using geostatistical techniques such as the sequential indicator simulation (SIS) and indicator kriging (IK). Results show that there are multiple hotspots for these four heavy metals and they are strongly correlated to the locations of industrial plants and irrigation systems in the study area. Moreover, the pollution hotspots detected using the KDE are the almost same to those estimated using IK or SIS. Soil pollution hotspots and polluted sampling densities are clearly defined using the KDE approach based on contaminated point data. Furthermore, the risk of hazards is explored by these techniques such as KDE and geostatistical approaches and the hotspot areas are captured without requiring exhaustive sampling anywhere.
机译:在台湾中部彰化县的1,082个采样点测量了四种重金属(Cr,Cu,Ni和Zn)的浓度。研究中将危险区定义为每种重金属含量超过相应控制标准的地方。本研究考察了空间分析在确定研究区域内多个土壤污染热点方面的应用。在初步调查中,核密度估计(KDE)是一种用于从一组观察到的危害事件中对土壤污染进行热点分析的技术。此外,该研究还使用地统计技术(例如顺序指示器模拟(SIS)和指示器克里金(IK))估算每种重金属的危险概率。结果表明,这四种重金属存在多个热点,它们与研究区域的工厂和灌溉系统位置密切相关。此外,使用KDE检测到的污染热点与使用IK或SIS估算的热点几乎相同。使用KDE方法基于污染点数据明确定义了土壤污染热点和污染的采样密度。此外,通过诸如KDE和地统计方法之类的技术探索了危险风险,并且无需在任何地方进行详尽采样就可以捕获热点区域。

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