Application of electromagnetic induction technique for soil salinity and sodicity appraisal

G. Ganjegunte, R. Braun
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引用次数: 7

Abstract

Salinity is a major problem affecting the sustainability of agriculture and environment in the Rio Grande river basin in Texas, USA. An accurate data on the spatial distribution of salinity is necessary for developing effective salinity management practices. However, at present information is lacking on the amount and distribution of salts within the Rio Grande river basin. Manual methods of salinity assessment at high spatial resolution are labor intensive, time consuming and involve expensive laboratory analysis. Electromagnetic induction technique (EMI) can be a relatively low cost, non-invasive and rapid alternative for measuring and mapping soil salinity. This project evaluated utility, accuracy and factors affecting the accuracy of EMI technique to delineate salt affected areas within the Rio Grande river basin in the Far West Texas, USA. Results of this project indicated that the EMI technique provided accurate data on spatial distribution of salinity within a geographical location. Furthermore, accuracy of EMI data was influenced by factors such as amount of clay and soil moisture content at the time of EMI survey. Results also indicated that the EMI technique is rapid, cheaper, and provides accurate spatial data at a much higher resolution than the conventional manual method.
电磁感应技术在土壤盐碱度评价中的应用
盐度是影响美国德克萨斯州里奥格兰德河流域农业和环境可持续性的主要问题。准确的盐度空间分布数据对于制定有效的盐度管理措施是必要的。然而,目前缺乏关于里奥格兰德河流域内盐的数量和分布的资料。高空间分辨率的人工盐度评估方法劳动强度大、耗时长、实验室分析费用高。电磁感应技术(EMI)是一种相对低成本、非侵入性和快速的土壤盐度测量和测绘方法。该项目评估了电磁干扰技术在美国德克萨斯州远西部格兰德河流域划定盐影响区域的实用性、准确性和影响准确性的因素。该项目的结果表明,电磁干扰技术提供了地理位置内盐度空间分布的准确数据。此外,电磁干扰数据的准确性还受到测量时粘土含量和土壤含水量等因素的影响。结果还表明,电磁干扰技术速度快,成本低,并且比传统的人工方法提供更高分辨率的精确空间数据。
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