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Spatial heterogeneity distribution of soil total nitrogen and total phosphorus in the Yaoxiang watershed in a hilly area of northern China based on geographic information system and geostatistics

机译:基于地理信息系统和地统计学的华北丘陵区瑶乡流域土壤全氮全磷空间异质性分布

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摘要

Soil total nitrogen (STN) and total phosphorus (STP) are important indicators of soil nutrients and the important indexes of soil fertility and soil quality evaluation. Using geographic information system (GIS) and geostatistics, the spatial heterogeneity distribution of STN and STP in the Yaoxiang watershed in a hilly area of northern China was studied. The results showed that: (1) The STN and STP contents showed a declining trend with the increase in soil depth; the variation coefficients (C v) of STN and STP in the 0‐ to 10‐cm soil layer (42.25% and 14.77%, respectively) were higher than in the 10‐ to 30‐cm soil layer (28.77% and 11.60%, respectively). Moreover, the C v of STN was higher than that of STP. (2) The maximum C 0/(C 0 + C 1) of STN and STP in the soil layers was less than 25%, this indicated that a strong spatial distribution autocorrelation existed for STN and STP; and the STP showed higher intensity and more stable variation than the style="fixed-case">STN. (3) From the correlation analysis, we concluded that the topographic indexes such as elevation and slope direction all influenced the spatial distribution of style="fixed-case">STN and style="fixed-case">STP (correlation coefficients were 0.688 and 0.518, respectively). (4) The overall distribution of style="fixed-case">STN and style="fixed-case">STP in the Yaoxiang watershed decreased from the northwest to the southeast. This variation trend was similar to the watershed style="fixed-case">DEM trend and was significantly influenced by vegetation and topographic factors. These results revealed the spatial heterogeneity distribution of style="fixed-case">STN and style="fixed-case">STP, and addressed the influences of forest vegetation coverage, elevation, and other topographic factors on the spatial distribution of style="fixed-case">STN and style="fixed-case">STP at the watershed scale.
机译:土壤总氮(STN)和总磷(STP)是土壤养分的重要指标,也是土壤肥力和土壤质量评价的重要指标。利用地理信息系统(GIS)和地统计学方法,研究了中国北方丘陵区瑶乡流域STN和STP的空间异质性分布。结果表明:(1)随着土壤深度的增加,STN和STP含量呈下降趋势。 STN和STP在0至10 cm土层中的变异系数(C v)(分别为42.25%和14.77%)高于10至30 cm土层中的STN和STP的变异系数(28.77%和11.60%,分别)。此外,STN的C v高于STP。 (2)土壤层中STN和STP的最大C 0 /(C 0 + C 1)小于25%,这表明STN和STP存在很强的空间分布自相关;并且STP的强度和变异性都比 style =“ fixed-case”> STN 高。 (3)从相关性分析中可以得出结论,海拔和坡度方向等地形指标均影响 style =“ fixed-case”> STN 和 style =“ fixed-case “> STP (相关系数分别为0.688和0.518)。 (4)在瑶乡流域, style =“ fixed-case”> STN 和 style =“ fixed-case”> STP 的总体分布从西北向东南递减。这种变化趋势与分水岭 style =“ fixed-case”> DEM 趋势相似,并且受到植被和地形因素的显着影响。这些结果揭示了 style =“ fixed-case”> STN 和 style =“ fixed-case”> STP 的空间异质性分布,并探讨了森林植被覆盖,海拔的影响以及其他地形因素,在分水岭尺度上 style =“ fixed-case”> STN 和 style =“ fixed-case”> STP 的空间分布。

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