Assessment of Soil Electrical Properties in Selected Agricultural Soils of Puchuncaví, Central Chile

I. Alekseev, E. Abakumov
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Abstract

Abstract Precision agriculture requires a wide sampling procedure to determine the spatial variability of soil properties for adequate assessment of soil state and appropriate recommendations. Electrical geophysical methods (i.e. vertical electrical resistivity sounding) allow performing rapid measurement of soil electrical properties directly from the soil surface to any depth without any mechanical disturbance of soil cover. Soil electrical properties are linked with many soil properties and could improve the quality and spatial coverage of soil surveys. The results obtained in our study using vertical electrical resistivity sounding confirmed the hypothesis of a high correlation between electrical resistivity and such soil properties as carbon and nitrogen content and silt content. The highest correlation (r > 0.9) was found for electrical resistivity and carbon content. It was also confirmed that significant correlations between electrical resistivity and soil properties are found mainly when soil properties are highly ranged. Perspectives for the applied method lie at the relationship between electrical resistivity and soil properties, such as texture class, clay content, carbon content, and cation exchange capacity. The results obtained in this work could be useful for complex precision agriculture, creating maps of agricultural soils, adequate methods of plant growth, and other issues of precision and conventional agriculture.
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智利中部Puchuncaví选定农业土壤土壤电特性评价
精确农业需要广泛的采样程序来确定土壤性质的空间变异性,以充分评估土壤状态和适当的建议。电地球物理方法(即垂直电阻率测深)可以直接从土壤表面到任何深度进行土壤电特性的快速测量,而不会对土壤覆盖层产生任何机械干扰。土壤电学性质与许多土壤性质有关,可以提高土壤调查的质量和空间覆盖度。我们利用垂直电阻率测深的研究结果证实了电阻率与土壤碳氮含量、粉砂含量等土壤性质高度相关的假设。电阻率与碳含量的相关性最高(r > 0.9)。当土壤性质变化较大时,电阻率与土壤性质之间存在显著的相关性。应用方法的观点在于电阻率与土壤性质的关系,如质地类别、粘土含量、碳含量和阳离子交换容量。在这项工作中获得的结果可以用于复杂的精确农业,创建农业土壤地图,适当的植物生长方法,以及精确和传统农业的其他问题。
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