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首页> 外文期刊>Environmental Management >Spatial Variation of Soil Salinity in the Mexicali Valley, Mexico: Application of a Practical Method for Agricultural Monitoring
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Spatial Variation of Soil Salinity in the Mexicali Valley, Mexico: Application of a Practical Method for Agricultural Monitoring

机译:墨西哥墨西卡利山谷土壤盐分的空间变化:一种实用的农业监测方法的应用

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The degradation of irrigated lands through the process of soil salinization, or the buildup of salts in the soil, has hampered recent increases in agricultural productivity and threatens the sustainability of large-scale cultivation in critical agricultural regions of the world. Rapid detection of soil salinity on a regional basis has been identified as key for effective mitigation of such land degradation. The ability to detect regional patterns of soil salinity at an accuracy sufficient for regional-scale resource management is demonstrated using Landsat 5 Thematic Mapper (TM) imagery. A case study of the Mexicali Valley of Baja California, Mexico was selected due to the region's agricultural significance and concern for future soil salinity increases. Surface soil salinity was mapped using geore-ferenced field measurements of electrical conductivity (EC), collected concurrently with Landsat 5 TM imagery. Correlations between EC measurements and common indices derived from the satellite imagery were used to produce a model of soil salinity through regression analysis. Landsat band 7, TNDVI, PCA 1, Tasseled Cap 3 and Tasseled Cap 5 were found to offer the most promising correlations with surface soil salinity. Generally low levels of soil salinity were detected, however, distinct areas of elevated surface salinity were detected at levels potentially impacting sensitive crops cultivated within the region. The difficulty detecting low levels of salinity and the mid-range spatial resolution of Landsat 5 TM imagery restrict the applicability of this methodology to the study of broad regional patterns of degradation most appropriate for use by regional resource managers.
机译:由于土壤盐碱化或土壤中盐分的积累而导致的灌溉土地退化,阻碍了农业生产率的近期提高,并威胁到世界关键农业地区大规模耕作的可持续性。在区域范围内快速检测土壤盐分已被确定为有效减轻此类土地退化的关键。使用Landsat 5 Thematic Mapper(TM)图像证明了能够以足以进行区域规模的资源管理的精度检测土壤盐分的区域模式的能力。由于该地区的农业意义以及对未来土壤盐分增加的关注,因此选择了墨西哥下加利福尼亚州墨西卡利山谷的案例研究。使用与地理相关的电导率(EC)现场测量结果绘制地表土壤盐度,并与Landsat 5 TM影像同时采集。 EC测量值与卫星图像的共同指标之间的相关性用于通过回归分析生成土壤盐分模型。发现Landsat带7,TNDVI,PCA 1,流穗帽3和流穗帽5与地表土壤盐分具有最有希望的相关性。通常检测到较低的土壤盐分水平,但是,检测到明显不同的表面盐分区域,其水平可能影响该地区种植的敏感作物。检测低盐度和Landsat 5 TM影像的中程空间分辨率的困难将这种方法的适用性限制在研究最适合区域资源经理使用的广泛的区域退化模式上。

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