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黄河三角洲典型农田夏季土壤盐分的多尺度空间变异性

[Multi-scale spatial variability of soil salinity in typical fields of the Yellow River Delta in summer].

作者信息

Cui Kun, Zhao Geng-Xing, Wang Zhuo-Ran, Xi Xue, Gao Peng, Qi Guang-Hui

机构信息

College of Resources and Environment, Shandong Agricultural University/National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, Tai'an 271018, Shandong, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2020 May;31(5):1451-1458. doi: 10.13287/j.1001-9332.202005.039.

Abstract

Soil salinization severely hinders the development of agricultural economy in the Yellow River Delta. Clarifying the spatial variability of soil salinity at multiple scales in the field is of great significance for the improvement and utilization of saline soils and agricultural production. In this study, by dividing the three dimensions of field, plot and ridge, we collceted 152 sets of conducti-vity data through field survey sampling in a summer maize field in Kenli County of the Yellow River delta. The methods of classic statistics, geostatistics and Kriging interpolation were used to analyze the spatial variability and scale effects of multi-scale soil salt in the field. The results showed that soil in this area was moderately salinized, with the extent of soil salinity moderately varying at three scales. From the field, plot to the ridge scale, with the decreases of sampling scale, the variability of soil salinity increased and the standard deviation increased. The ridge and plot scales showed strong spatial correlation. The optimal model was Gaussian model, which was mainly affected by structural factors. The field scale was of medium spatial correlation, with exponential model as the optimal one, which was influenced by both random factors and structural factors. The spatial distribution characteristics of soil salinity at different scales were significantly different. The spatial chara-cteristics at small scale were masked at large scale, showing obvious scale effect. The distribution of soil salinity at the micro-ridge scale between ridges had obvious variation. Soil salt content gradually decreased with the micro-topography from high to low, while vegetation coverage changed from sparse to dense.

摘要

土壤盐渍化严重阻碍了黄河三角洲地区农业经济的发展。明确田间多尺度土壤盐分的空间变异性,对于盐碱地改良利用及农业生产具有重要意义。本研究通过划分田间、小区和垄三个尺度维度,在黄河三角洲垦利县的一块夏玉米田中进行实地调查采样,共采集了152组电导率数据。采用经典统计学、地统计学和克里金插值法,分析田间多尺度土壤盐分的空间变异性和尺度效应。结果表明,该区域土壤为中度盐渍化,土壤盐分程度在三个尺度上呈中等变异。从田间、小区到垄尺度,随着采样尺度减小,土壤盐分变异性增大,标准差增大。垄和小区尺度表现出较强的空间相关性,最优模型为高斯模型,主要受结构因素影响。田间尺度空间相关性中等,最优模型为指数模型,受随机因素和结构因素共同影响。不同尺度下土壤盐分的空间分布特征差异显著,小尺度下的空间特征在大尺度下被掩盖,呈现出明显的尺度效应。垄间微垄尺度上土壤盐分分布存在明显变化,土壤盐分含量随微地形由高到低逐渐降低,植被覆盖度则由稀疏变密集。

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