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[湟水河流域土壤养分分布及其与地形的关系]

[Soil nutrient distribution and its relations with topography in Huangshui River drainage basin].

作者信息

Song Xuan, Li Li-Dong, Kou Chang-Lin, Chen Jie

机构信息

School of Water Conservancy and Environment, Zhengzhou University, Zhengzhou 450001, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2011 Dec;22(12):3163-8.

Abstract

By using GIS and geostatistic techniques, this paper studied the spatial distribution patterns of soil nutrients and their relationships with topographic factors in Huangshui River drainage basin, a water source of Danjiangkou Reservoir. In the study area, the soil total nitrogen, total phosphorus, and organic matter varied spatially at medium level, with the variation coefficients being 51%, 66%, and 85%, respectively, whereas the soil available phosphorus displayed a strong spatial variation, with the variation coefficient reached 161%. The soil total nitrogen and organic matter exhibited a spatially positive autocorrelation, while the soil total and available phosphorus presented a spatially weak autocorrelation. Altitude was one of the main topographic factors affecting the spatial distribution patterns of the soil nutrients, having significant effects on the spatial distribution of total nitrogen, total phosphorus, and organic matter. Slope and profile curvature also had significant effects on the spatial distribution of the soil total nitrogen and organic matter. Based on these, the regression prediction models of topographic factors and soil nutrient spatial distribution were established, and the digital mappings of the soil nutrients were made, which provided data support for the precise management of soil resources in the study area.

摘要

利用地理信息系统(GIS)和地统计学技术,本文研究了丹江口水库水源地黄水河流域土壤养分的空间分布格局及其与地形因子的关系。研究区内,土壤全氮、全磷和有机质在空间上呈中等程度变异,变异系数分别为51%、66%和85%,而土壤有效磷呈现出强烈的空间变异,变异系数达161%。土壤全氮和有机质呈现出空间正自相关,而土壤全磷和有效磷呈现出空间弱自相关。海拔是影响土壤养分空间分布格局的主要地形因子之一,对全氮、全磷和有机质的空间分布有显著影响。坡度和剖面曲率对土壤全氮和有机质的空间分布也有显著影响。基于此,建立了地形因子与土壤养分空间分布的回归预测模型,并制作了土壤养分数字图,为研究区土壤资源的精准管理提供了数据支持。

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