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Comparative Analysis of the Spectral Response to Soil Salinity of Saline-Sodic Soils under Different Surface Conditions

机译:盐碱土壤在不同地表条件下对土壤盐分光谱响应的比较分析

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摘要

Desiccation cracking is a very common surface soil phenomenon of saline-sodic land. The objective of this study was to investigate the effects of salt content on the spectral reflectance of soil with and without desiccation cracks. To achieve our objective, a cracking test was performed using 17 soil samples. Following the tests, crack parameters were extracted, and correlation analysis was then performed between crack parameters and four soil properties: Na+, salinity (total concentration of ions), pH, and electric conductivity (EC). In order to select the optimum spectral measurement method and develop prediction models, spectral response to different soil properties were compared between the cracked soil samples and the comparative soil samples composed of the 2 mm particle size fraction processed by traditional methods. The results indicate that soil salinity dominated cracking propagation with a positive correlation. Since area and volume scattering are closer to what occurs in the field, a greater spectral response to soil properties was found for cracked soil samples relative to the comparative soil samples in the near-infrared and shortwave-infrared regions. The R2 of optimal linear prediction models based on the cracked soil samples were 0.74, 0.67, 0.58, and 0.67 for Na+, salinity, pH, and EC, respectively.
机译:干燥开裂是盐碱土地非常普遍的表层土壤现象。这项研究的目的是研究含盐量对有和没有干燥裂纹的土壤光谱反射率的影响。为了达到我们的目的,使用17个土壤样品进行了开裂测试。测试后,提取裂纹参数,然后对裂纹参数与四种土壤性质(Na + ,盐度(离子总浓度),pH和电导率(EC))进行相关分析。为了选择最佳的光谱测量方法并建立预测模型,比较了开裂土壤样品和由传统方法处理过的2 mm粒径级分的比较土壤样品对不同土壤特性的光谱响应。结果表明,土壤盐度主导裂纹扩展,且呈正相关。由于面积和体积散射更接近于田间发生的情况,因此与近红外和短波红外区域的对比土壤样品相比,裂化土壤样品对土壤特性的光谱响应更大。基于破裂土壤样品的最优线性预测模型的R 2 的Na + ,盐度,pH和EC分别为0.74、0.67、0.58和0.67。

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