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The analysis of soil cores polluted with certain metals using the Box—Cox transformation

机译:使用Box-Cox变换分析某些金属污染的土壤核心

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摘要

To define the soil properties for a given area or country including the level of pollution, soil survey and inventory programs are essential tools. Soil data transformations enable the expression of the original data on a new scale, more suitable for data analysis. In the computer-aided interactive analysis of large data files of soil characteristics containing outliers, the diagnostic plots of the exploratory data analysis (EDA) often find that the sample distribution is systematically skewed or reject sample homogeneity. Under such circumstances the original data should be transformed. The Box—Cox transformation improves sample symmetry and stabilizes spread. The logarithmic plot of a profile likelihood function enables the optimum transformation parameter to be found. Here, a proposed procedure for data transformation in univariate data analysis is illustrated on a determination of cadmium content in the plough zone of agricultural soils. A typical soil pollution survey concerns the determination of the elements Be (16 544 values available), Cd (40 317 values), Co (22 176 values), Cr (40 318 values), Hg (32 344 values), Ni (34 989 values), Pb (40 344 values), V (20 373 values) and Zn (36 123 values) in large samples.
机译:要确定给定地区或国家的土壤特性(包括污染水平),土壤调查和清单计划是必不可少的工具。土壤数据转换可以使原始数据以新的规模表达,更适合于数据分析。在包含异常值的土壤特征大数据文件的计算机辅助交互式分析中,探索性数据分析(EDA)的诊断图经常发现样品分布系统地偏斜或拒绝了样品的同质性。在这种情况下,原始数据应进行转换。 Box-Cox转换可改善样品对称性并稳定扩散。轮廓似然函数的对数图使得可以找到最佳变换参数。在此,通过确定农业土壤耕作区中的镉含量,说明了在单变量数据分析中建议的数据转换程序。典型的土壤污染调查涉及以下元素的确定:Be(可提供16 544个值),Cd(40 317个值),Co(22 176个值),Cr(40 318个值),Hg(32 344个值),Ni(34个值)大样本中的Pb(值为40344),Vb(值为20373)和Zn(值为36123)。

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