铁结块形成于低(雄)波利西亚的粘性土壤中

Q3 Earth and Planetary Sciences Polish Journal of Soil Science Pub Date : 2020-06-22 DOI:10.17951/pjss.2020.53.1.137
Z. Pankiv, T. Yamelynets
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引用次数: 1

摘要

在潮湿条件下,最常见的地面形式是含铁的:铁结核、沼泽矿、赭石斑点等。软质潜育土广泛分布在沼泽边缘,是在草地和沼泽生物群落下,在水分偶尔脉动和水分过多的条件下,在各种成土岩石上的软质和潜育过程的影响下形成的。铁结核是除成土岩外的所有软土地层的特征,其含量在软土地层中为3.3%,在较低的过渡层中为47.1%。细粒软质潜育土以及铁结核形式的总铁含量随深度增加而增加,最大值是较低过渡层的特征。总铁含量的最低值是细成土岩(16.0mg/100g土壤)和软土(66.4mg/100g土壤)的特征。已经确定,铁结核形式的总化学含量主要是氧化铁,在松软土的铁结核中含量最高(48.75%)。此外,铁结核的特征是氧化铝含量相当高(5.59–7.92%)。累积系数的最高值是铁的特征氧化物(Kx=7.21-2.58),这证实了其化合物在铁结核形成中的主导作用的假设。
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Ferrum concretions forms in the mollic gley soils of Low (Male) Polissya
In the humid conditions, the most common ground forms are the ferruginous ones: ferrum concretions, marsh ore, ocher spots, etc. Mollic gley soils are widely spread along the periphery of marshes and are formed under the influence of mollic and gley processes on various soil-forming rocks under conditions of sporadically pulsating water regime and excessive moisture under the meadow and swamp biocenoses. The ferrum concretions are characteristic of all genetic horizons of mollic gley soils, except for the soil-forming rock, and their content ranges from 3.3% in the mollic to 47.1% in the lower transitional horizon. The gross iron content in the fine mollic gley soils, as well as in the ferrum concretions forms, increases with depth, and the maximum values are characteristic of the lower transition horizon. The lowest values of the gross iron content are characteristic of the fine soil-forming rock (16.0 mg / 100 g soil) and the mollic soil (66.4 mg / 100 g soil). It was established that the gross chemical content of the ferrum concretions forms is dominated by the iron oxides with the highest content in the ferrum concretions of the mollic soils (48.75%). Also the ferrum concretions forms of iron are characterized by a rather high content of aluminum oxides (5.59–7.92%). The highest values of the accumulation coefficient are characteristic of the iron oxide (Kx = 7.21–2.58), which confirms the hypothesis of the dominant role of its compounds in the formation of the ferrum concretions forms.
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来源期刊
Polish Journal of Soil Science
Polish Journal of Soil Science Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
1.00
自引率
0.00%
发文量
5
期刊介绍: The Journal focuses mainly on all issues of soil sciences, agricultural chemistry, soil technology and protection and soil environmental functions. Papers concerning various aspects of functioning of the environment (including geochemistry, geomophology, geoecology etc.) as well as new techniques of surveing, especially remote sensing, are also published.
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