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Buffering role of soil in chemical denudation in mountainous areas affected by windfall events - In light of experimental research

机译:土壤在意外收获事件影响的山区化学剥落中的缓冲作用 - 鉴于实验研究

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The important environmental effect of strong mechanical disturbances of the soil cover caused by windfall events can be an increase in chemical weathering and chemical denudation. The aim of the study was to examine how soils with different properties affect the rate of limestone weathering and to what extent do soils buffer ion leaching affecting chemical denudation. A laboratory experiment was performed to answer the questions listed above. Samples taken from typical soils developed on calcareous material in mountainous areas in the temperate climatic zone as well as relatively pure Jurassic limestone were collected for the purpose of the said experiment. Five trials were performed for every combination of soil material and limestone, which yields a total of 90 Eppendorf's conical tubes. Once a week deionized water was poured through each Eppendorf tube (with a hole in the bottom) and then collected. Rock samples and soil samples were analyzed before and after the experiment. The chemical composition of the soil solution (filtrate) was analyzed every five weeks.Our experiment showed that large differences in the degree of chemical weathering of limestone and in the chemical denudation of Ca2+, Mg2+, and K+ at the catchment scale may be expected in soils characterized by different properties. Accelerated chemical weathering of limestone causes Ca2+,Mg2+, and K+ denudation rates to increase, but the studied weathering process was not linearly correlated with denudation rates. The response depends on soil pH, amount of soil organic matter (SOM) in the soil, and the quantity of cations in of the soil exchange complex.Environmental disturbances occurring in mountain areas may lead to the exposure of limestone on the soil surface as a result of events such as windthrow. At least four response scenarios of the disturbed system may be distinguished, depending on soil properties, which are different for (1) soils with thick and very acidic, organic horizons, which is typical for areas under dwarf pine communities, (2) Calcaric Cambisols with thick and slightly acidic organic horizons typical for coniferous and broadleaf forests, (3) Calcaric Cambisols without a thick organic horizon, which is typical for meadows, (4) Rendzic Leptosols, whose soils are typical of calcareous grassland. (C) 2021 Elsevier B.V. All rights reserved.
机译:由意外收获事件引起的土壤覆盖强力机械扰动的重要环境效应可以增加化学风化和化学剥落。该研究的目的是检查土壤如何具有不同性质的影响影响石灰石风化的速率以及土壤缓冲离子浸出的程度,影响化学剥落。进行实验室实验以回答上述问题。为上述实验的目的收集了从温带气候区的山区岩石材料中开发的岩石材料中开发的典型土壤中的样品,以获得相对纯粹的侏罗纪石灰岩。对土壤材料和石灰石的各种组合进行了五项试验,其总共产生了90个Eppendorf的锥形管。每周去离子水通过每个Eppendorf管(底部有一个孔),然后收集。在实验之前和之后分析了岩样和土壤样品。分析每五个星期溶液(滤液)的化学成分。我们的实验表明,在集水区尺度下可以预期石灰石和CA2 +,MG2 +和K +的化学剥落程度的大差异以不同的性质为特征的土壤。石灰石的加速化学风化导致Ca2 +,Mg2 +和K +拒绝率增加,但研究的耐候过程与剥蚀速率没有线性相关。反应取决于土壤pH值,土壤中的土壤有机物质(SOM),土壤交换综合体的阳离子量。山区发生的环境干扰可能导致石灰石暴露在土壤表面上的暴露Windthrow等事件的结果。可疑系统的至少四种响应情景,这取决于土壤性质,这对于(1)含有厚实且非常酸性的有机视野的土壤不同,这对于Dwarf松树社区下的区域典型,(2)钙猫雪橇对于针叶树和阔叶森林的典型典型的厚度和微酸性的有机视野,(3)在没有厚厚的有机地平线的情况下,对草地的典型,(4)Rendzic Leptosols,其土壤是典型的钙质草原的典型型钙质秃银的钙癌紫外线。 (c)2021 Elsevier B.v.保留所有权利。

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