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武陵山岩溶地区人工混交林土壤性质的空间异质性

Spatial heterogeneity of soil properties in planted mixed forests in the rocky desertification areas of the Wuling Mountain.

作者信息

Pan Ziqian, Dong Yanyan, He Gongxiu, Guo Tongtong, Zhu Ninghua

机构信息

College of Forestry, Central South University of Forestry and Technology, Changsha, Hunan, China.

出版信息

PeerJ. 2024 Dec 23;12:e18724. doi: 10.7717/peerj.18724. eCollection 2024.

Abstract

In this study, experiments were conducted on soil samples collected from depths of 0-15 cm, 15-30 cm, and 30-50 cm at the National Long-term Scientific Research Base for the Comprehensive Management of Rocky Desertification in the Wuling Mountains. The aim was to determine the physicochemical indexes and explore the nature and spatial heterogeneity of the soil of the planted mixed forests within the rocky desertification area of the Wuling Mountain. Various analytical methods were employed, including descriptive statistical analysis, correlation analysis, analysis of variance, principal component analysis, spatial interpolation analysis, and kriging interpolation, to fit the optimal model of the semi-variance function of soil physicochemical properties and analyze the model's parameters. The results indicated that soil physical and chemical properties varied with depth and were generally correlated. The relationship between soil organic matter and total nitrogen content was the closest. Additionally, there was a certain degree of correlation between soils at different depths in the vertical profile, generally the correlation between layer B (15-30 cm) and layer C (30-50 cm) > that between layer A (0-15 cm) and layer B (15-30 cm) > that between layer A (0-15 cm) and layer C (30-50 cm). The weighting coefficients of the principal components of soil physicochemical properties indicated that soil organic matter, nitrogen, phosphorus, potassium, pH, total porosity, and capillary porosity are key factors in the soil properties of karst desertification areas. The spatial variability of soil physicochemical properties at different depths ranged from 21.91 to 87.59 m, and the abutment ratio (Co/Co+C) of these properties ranged from 12.99% to 89.53%. Using kriging interpolation in ArcGIS, the spatial distribution pattern of soil physical and chemical properties was mapped, revealing that these indicators were distributed with heterogeneous patches of various sizes and shapes. Therefore, the degree of rocky desertification significantly influences the spatial distribution pattern of soil physical and chemical properties.

摘要

本研究在武陵山区石漠化综合防治国家长期科研基地采集了0 - 15厘米、15 - 30厘米和30 - 50厘米深度的土壤样本并进行实验。目的是测定理化指标,探究武陵山石漠化地区人工混交林土壤的性质及空间异质性。采用了多种分析方法,包括描述性统计分析、相关性分析、方差分析、主成分分析、空间插值分析和克里金插值法,以拟合土壤理化性质半方差函数的最优模型并分析模型参数。结果表明,土壤理化性质随深度变化且普遍具有相关性。土壤有机质与全氮含量的关系最为密切。此外,垂直剖面不同深度土壤之间存在一定程度的相关性,一般B层(15 - 30厘米)与C层(30 - 50厘米)之间的相关性 > A层(0 - 15厘米)与B层(15 - 30厘米)之间的相关性 > A层(0 - 15厘米)与C层(30 - 50厘米)之间的相关性。土壤理化性质主成分的加权系数表明,土壤有机质、氮、磷、钾、pH值、总孔隙度和毛管孔隙度是喀斯特石漠化地区土壤性质的关键因素。不同深度土壤理化性质的空间变异性范围为21.91至87.59米,这些性质的基台比(Co/Co + C)范围为12.99%至89.53%。利用ArcGIS中的克里金插值法绘制了土壤理化性质的空间分布格局,结果显示这些指标呈大小和形状各异的异质性斑块分布。因此,石漠化程度对土壤理化性质的空间分布格局有显著影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4908/11670765/2cfce180073c/peerj-12-18724-g001.jpg

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