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Soil Cover of the Svetloyarsk Irrigation System after 50 Years of Reclamation Practices

机译:50年后Svetloyarsk灌溉系统的土壤覆盖在50年后的填海练习

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The state of irrigated soils of the Svetloyarsk irrigation system (Volgograd oblast) after 50 years or irrigation and ameliorative impacts has been assessed with the use of published and new field data, cadastral materials, and remote sensing materials. In the recent two decades, the area of regular irrigation and the volume of irrigation water have decreased, which has led to the lowering of the groundwater level to the depth of 5 m and more. The pattern of sown areas is characterized by a rise in the portion of winter cereals. Surface planing during the construction of the irrigation system led to a considerable transformation of the soil cover. On convex elements, solonetzic and other topsoil horizons were almost completely cut off. In many areas, they were replaced by a mixture of different horizons, including carbonaceous material. There are now significant areas of soils of different geneses with carbonates from the surface. Former solonchakous and slightly solonchakous soils are now at the stage of deep desalinization: soluble salts in them have been washed to the second meter, where slightly or moderately saline horizons with a predominance of sulfates have been formed. Irrigated areas on satellite images are specified by spotty patterns differing from those of natural solonetzic soil complexes because of the significant transformation of the soil cover during the construction and operation of irrigation system. The anthropogenically transformed soils can be mapped. Soil maps reflecting the modern state of the of soil cover of irrigated areas are given.
机译:通过使用已发表的和新的现场数据,地籍和遥感材料,评估了50年后Svetloyarsk灌溉系统(Volgograd Oblast)的灌溉土壤状态(伏尔加格勒州)的状态。在近二十年来,常规灌溉领域和灌溉水量下降,导致地下水位降低到5米和更多的深度。播种区域的模式的特点是冬季谷物部分的升高。在灌溉系统的结构期间表面刨花导致土壤覆盖的相当大的变化。在凸形元件上,Solonetzic和其他Topsoil Horizo​​ n几乎完全切断。在许多领域,它们被不同地平线的混合物所取代,包括含碳材料。现在存在来自表面的碳酸盐的不同基因的土壤有显着的土壤。现在,前透明的和稍微溶于透明的土壤现在处于深度脱盐的阶段:它们中可溶性盐已被洗涤到第二米,其中已经形成了略微或中等盐水视野,形成了硫酸盐的优势。卫星图像上的灌溉区域是由自然溶核土壤复合物不同的斑点模式指定,因为土壤覆盖在灌溉系统的构建和运行期间的土壤覆盖的显着转变。可以映射人为转化的土壤。给出了反映灌溉区域土壤覆盖状态的土壤图。

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