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Salinization and Yield Potential of a Salt-Laden Californian Soil: an In Situ Geophysical Analysis

机译:盐渍加州土壤盐碱化和产量潜力:原位地球物理分析

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Salinization is a global problem, including in California, USA, where over two million hectares of irrigated lands have deteriorated due to salt loading. Because of freshwater shortage, some farmlands are also irrigated with agricultural drainage water, which further exacerbates the salinization process. With the objectives of rapidly quantifying spatial and temporal progression of salinization and identifying yield potential for a high-value crop, we conducted 2-year salinity surveys in a salt-affected farm in California by utilizing a dual dipole electromagnetic induction technology (EM38). The EM-predicted conductivity (ECe) was consistent with the ground-truth soil data ECs and increased with depth. About 50 and 25 % of the ECe data in moderately (A) and severely (B) affected salinity zones surpassed 500 and 1000 mS m(-1) levels, respectively. In the northern part of B, up to 70 % samples remained within 500-1000 mS m(-1) range. There was eastbound salt loading in the northern and southern parts of A. Rhizosphere salinity showed spatial dependence up to 500 m lateral distance. The shifts in salinity could be due to dispersion and leaching of solutes. High crop yield reduction was estimated in the southwestern and northeastern parts of the field that had typically elevated ECe. Around 43 % surveyed area was conducive to attaining 80 % of full yield potential, and the central part of the field was determined to be most suitable for crop growth. Coupling of EM results with production values indicated that under elevated saline condition, it would be feasible to grow a high-value tomato crop.
机译:盐碱化是一个全球性问题,包括美国加利福尼亚州,那里由于盐分装载而使超过200万公顷的灌溉土地恶化。由于淡水短缺,一些农田也用农业排水灌溉,这进一步加剧了盐碱化过程。为了快速量化盐渍化的空间和时间进展并确定高价值农作物的增产潜力,我们使用双偶极电磁感应技术(EM38)在加利福尼亚的一个受盐影响的农场中进行了两年的盐度调查。 EM预测的电导率(ECe)与地面真实土壤数据ECs一致,并随深度增加。在中度(A)和重度(B)的盐度区,大约50%和25%的ECe数据分别超过500和1000 mS m(-1)。在B的北部,多达70%的样品保持在500-1000 mS m(-1)范围内。在A的北部和南部有向东的盐负荷。根际盐度显示出空间依赖性,直至侧向距离达500 m。盐度的变化可能是由于溶质的分散和浸出。估计该田地西南部和东北部作物的单产通常较高,而该地区的农作物减产幅度很大。大约43%的调查面积有利于达到80%的单产潜力,并且确定该田间的中部最适合作物生长。 EM结果与产量值的耦合表明,在盐分升高的条件下,种植高价值的番茄作物是可行的。

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