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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >The origin of Vertisols and their relationship to acid sulfate soils in the Senegal valley.
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The origin of Vertisols and their relationship to acid sulfate soils in the Senegal valley.

机译:塞内加尔山谷中的Vertisols的起源及其与酸性硫酸盐土壤的关系。

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摘要

In the Senegal valley, it is commonly considered that the Acid Sulfate Soils of the delta are fossil soils overlain by more recent sediments, and that the Vertisols, which abruptly overlie a thick sandy horizon, result from a change in the sedimentation mode of the river. However, we show that both soils belong to the same pedological system extending from the delta to the limit of the last marine transgression. This conclusion is based on (1) the study of soil profiles intermediate between Acid Sulfate Soils and Vertisols along a 100-m sequence in the delta, (2) the mineralogy of the clay fraction (<2 micro m) in a 200-km transect along the river, and (3) the similarity of the sand size distribution across the textural discontinuity between the horizons. The following processes are involved in the pedological transformations: (1) development of acidity by oxidation of pyrite, (2) neutralization of acidity initially by the carbonate in shell beds, and later by the hydrolysis of easily weatherable silicate clays. The slightly alkaline river water precipitates kaolinite and later smectite at the contact between the strongly acidic and slightly alkaline environments. This results in the formation of a superficial vertic clay horizon surmounting a sandy horizon. Therefore, we emphasize that the soil morphology results from development and control of acidity and not from changes in past climates..
机译:在塞内加尔河谷,通常认为三角洲的酸性硫酸盐土壤是被较新的沉积物覆盖的化石土壤,而突然覆盖在较厚沙质地平线上的Vertisols是由于河流沉积方式的变化而造成的。 。但是,我们表明,两种土壤都属于从三角洲延伸到最后一次海侵极限的同一个土壤学系统。该结论基于(1)研究三角洲中沿100 m序列的酸性硫酸盐土壤和绿松之间的土壤剖面;(2)200 km中粘土部分的矿物学(<2 microm)沿河横切,(3)跨层间质构间断的砂粒尺寸分布相似。以下的过程涉及到了土壤学的转变:(1)通过黄铁矿的氧化形成酸性,(2)首先通过壳层中的碳酸盐中和,然后通过易风化的硅酸盐粘土的水解中和酸性。弱碱性河水在强酸性和弱碱性环境之间的接触处沉淀出高岭石和后来的蒙脱石。这导致形成了覆盖砂质地平线的表层垂直粘土层。因此,我们强调土壤形态是由于酸度的发展和控制而不是过去气候的变化所致。

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