ESTIMATE AND MAPPING SALINITY DISTRIBUTION IN SOME SOILS OF EGYPT BY USING ELECTROMAGNETIC INDUCTION INSTRUMENT

R. Yacoub, M. Amira, F. E. A. Agwa, M. Ismail, E. Hussien, W. M. A. E. Nour
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Abstract

Remote sensing techniques such as electromagnetic induction (EMI), and electric resistivity are recently used to study soil salinity, water table depth and soil mineralogy in the field. Electromagnetic induction (EMI) is a useful mean of assessing soil salinity in the large areas, particularly after its calibration on different soils. The aim of this work is to estimate and mapping soil salinity distribution for some soils of Egypt by using EMI 400 instrument. Three Egyptian soil parts were chosen for this study from saline and non-saline calcareous soils in El Nubaria area as well as sandy soils in El Sadat area. EMI 400 instrument was used to predict, record and calculate the salinity in the field using three frequency bands of 14, 15 and 16 KHz for these parts. On the other hand, soil samples were collected from the surface and subsurface layers of these parts for determining salinity in the lab using EC meter apparatus. The correlation between the EMI readings and the lab determined EC values were statistically analyzed and results could be summarized in the following: The statistical analyses indicated that, there are a highly significant correlation coefficients between EMI readings at the three frequency bands and the lab determined ECe values of each layer in all studied parts. The highest correlation coefficients were found with the EMI readings at 15 KHz. Moreover, multi factorial as well as simple regression equations were derived from the statistical analyses to calculate the soil salinity (ECc) from EMI readings in the field. The most suitable equation for calculating soil ECc was that based on instrument readings at frequency band 15KHz alone. Spatial salinity distribution maps were produced and presented for both surface and subsurface layers of the studied parts whether based on lab determined ECe or calculated ECc from EMI instrument readings.
利用电磁感应仪估算和测绘埃及部分土壤的盐度分布
近年来,电磁感应(EMI)和电阻率等遥感技术被用于野外土壤盐度、地下水位深度和土壤矿物学研究。电磁感应(EMI)是评估大面积土壤盐度的有效手段,特别是在不同土壤上进行校准后。本工作的目的是利用EMI - 400仪器估计和绘制埃及一些土壤的土壤盐度分布。本研究选取了三个埃及土壤部分,分别是El Nubaria地区的盐碱化和非盐碱化钙质土壤以及El Sadat地区的沙土。利用EMI 400仪器对这些部位采用14、15和16 KHz三个频段进行现场盐度预测、记录和计算。另一方面,从这些部分的表层和次表层收集土壤样本,在实验室使用EC仪表仪器测定盐度。统计分析了EMI读数与实验室测定的EC值之间的相关性,结果可以总结如下:统计分析表明,在所有研究部件中,三个频段的EMI读数与实验室测定的各层ECe值之间存在极显著的相关系数。最高的相关系数被发现与15 KHz的EMI读数。此外,从统计分析中导出了多因子方程和简单回归方程,以计算现场EMI读数的土壤盐度(ECc)。最适合计算土壤ECc的公式是仅基于15KHz频段的仪器读数。根据实验室确定的ECe或从EMI仪器读数计算的ECc,绘制并呈现了所研究部件的表层和次表层的空间盐度分布图。
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