首页> 外文期刊>Geoderma: An International Journal of Soil Science >Distribution and mobilization of Al, Fe and Si in three podzolic soilprofiles in relation to the humus layer
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Distribution and mobilization of Al, Fe and Si in three podzolic soilprofiles in relation to the humus layer

机译:Al,Fe和Si在腐殖质层上的三种梯形土壤剖面中的分布和迁移

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The mobilization of Al, Fe and Si in podzols is often associated with the weathering of silicate minerals in the E horizon, downward migration, and their accumulation lower in the soil profile. This study investigated Al, Fe, and Si concentrations in soil water (centrifugation samples) and estimated leaching losses from the humus layer in comparison with those in the mineral E and B horizon. Concentrations of total soluble Al and Fe in soil water were higher in the O and E horizons than in B horizon samples, but not significantly different between the two uppermost horizons. Si concentrations were higher in the E than in the O horizon. The amount of Al and Fe leaching from the E horizon (i.e. input to the B horizon) compared to amount leaching from the O horizon (i.e. the input to the E horizon) ranged from 92% to 163%. Calculated leaching losses from the lower B horizon were less than 3% of the input to the B horizon. The results suggest that a large part of the illuviated Al and Fe in the Bs horizon is derived from the O horizon. Similar values for the Si ranged from 56% to 61% (comparing E horizon output with E horizon input). Budget estimates available for one of the investigated podzols indicated that biocycling via above-ground litter explained < 124E of the estimated annual input of Al and Fe to the forest floor. Inputs of Al and Fe due to upward flow of capillary water accounted for about 26% of the Al and Fe in the O layer. The results show that there is a considerable pool of Si Al, Fe in the humus layer. This pool plays an important part in the present day biogeochemical cycling of these elements in podzolic soils. Several mechanisms possibly involved in the transfer of Al, Fe and Si from the mineral soil to the humus layer are discussed.
机译:pod土中Al,Fe和Si的迁移通常与E层中硅酸盐矿物的风化,向下迁移以及它们在土壤剖面中的积累较低有关。这项研究调查了土壤水(离心样品)中铝,铁和硅的浓度,并估计了腐殖质层与矿物E和B层中的浸出损失。在O和E层中,土壤水中的总可溶性Al和Fe浓度高于B层样品,但在两个最上层之间没有显着差异。 E中的Si浓度高于O中的Si浓度。从E层(即向B层的输入)浸出的Al和Fe量与从O层(即向E层的输入)浸出的量相比,在92%至163%之间。从较低的B层计算得出的浸出损失小于B层输入的3%。结果表明,在Bs层中大部分Al和Fe贫化是由O层引起的。 Si的相似值范围为56%至61%(将E地平线输出与E地平线输入进行比较)。可用于其中一个被调查的小动物的预算估算表明,通过地上垃圾的生物循环解释了<124E的铝和铁向森林地面的年度估计投入。由于毛细管水的向上流动,Al和Fe的输入量占O层中Al和Fe的约26%。结果表明,腐殖质层中存在大量的硅铝,铁。该池在当今土壤中这些元素的生物地球化学循环中起着重要作用。讨论了可能将Al,Fe和Si从矿质土壤转移到腐殖质层的几种机理。

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