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首页> 外文期刊>Environmental earth sciences >An evaluation of soil-plant-water interactions based on the Sr-87/Sr-86, 1/Sr, Ca/Sr, K/Rb and K/Ca ratios of the respective components
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An evaluation of soil-plant-water interactions based on the Sr-87/Sr-86, 1/Sr, Ca/Sr, K/Rb and K/Ca ratios of the respective components

机译:根据各个组分的Sr-87 / Sr-86、1 / Sr,Ca / Sr,K / Rb和K / Ca比值评估土壤-植物-水之间的相互作用

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摘要

A 6-month experiment reports on the Sr-87/Sr-86, 1/Sr, Ca/Sr and K/Rb ratios of soil materials, rainwater, soil solutions after percolation through the upper horizon of an alluvial substrate covered by grass, and of the leaves and roots from grass. A correlation between the Sr-87/Sr-86 and 1/Sr ratios of the rainwater, soil materials, soil solutions, and grass roots suggests an interconnected supply. Only the data point of the grass leaves plots outside this correlation, suggesting a mix for the Sr, namely from rainwater and soil materials with a different combination. On top of the rainwater supply to the leaves, 0.25 mu g/g Sr from atmospheric dust with an Sr-87/Sr-86 ratio of 0.7105 is suspected. Based on the Sr contents and Sr-87/Sr-86 ratios, the grass roots take up 72 % of Sr from soil solutions and 28 % from rainwater in the case of a dominant interaction between soil solutions and rainwater. If the soil materials and soil solutions are considered dominant in the interaction with the roots, 67 % of the Sr comes from formers and 33 % from latters. If the plants do not only take up but also contribute to the interactions, the feedback represents 33 % of the uptake. In combining the Sr-87/Sr-86 and Ca/Sr ratios of the different contributors to the soil/plant/rainwater interactions, 7.4 times more Ca is supplied to the plants by the soil solutions than Sr, its trace equivalent. In the detail, the roots take up 2.4 times more Ca than Sr and the leaves 5.0 times more. Also, about 2.8 times more K is taken up than its trace equivalent Rb, the soil solutions releasing 2.8 times more K than Rb, the roots taking 9.0 times more K and the leaves 18.0 times more K than Rb. Also noteworthy is the fact that the grass roots pick up 2.5 times less K than the leaves compared to Ca. These values apply only to grass.
机译:为期6个月的实验报告表明,渗入经过草覆盖的冲积层上层土壤后,土壤材料,雨水和土壤溶液的Sr-87 / Sr-86、1 / Sr,Ca / Sr和K / Rb之比,以及草的叶子和根。雨水,土壤材料,土壤溶液和草根的Sr-87 / Sr-86与1 / Sr之比之间的相关性表明了供应的相互联系。仅草叶的数据点在此相关关系之外,表明Sr的混合,即来自雨水和土壤材料的不同组合。在向雨水供应叶子的顶部,怀疑来自大气尘埃的0.25μg / g Sr,Sr-87 / Sr-86的比率为0.7105。根据Sr含量和Sr-87 / Sr-86的比率,在土壤溶液与雨水之间起主要作用的情况下,基层从土壤溶液中吸收72%的Sr,从雨水中吸收28%。如果认为土壤材料和土壤溶液在与根的相互作用中占主导地位,则Sr的67%来自前者,而33%来自后者。如果植物不仅吸收而且还促进相互作用,则反馈代表吸收量的33%。结合土壤,植物/雨水相互作用的不同贡献者的Sr-87 / Sr-86和Ca / Sr比率,土壤溶液向植物提供的Ca比其微量Sr多7.4倍。在细节上,根部吸收的Ca比Sr高2.4倍,而叶子吸收5.0倍。而且,吸收的钾比其痕量当量Rb高出2.8倍,土壤溶液释放的K比Rb高出2.8倍,根系吸收的K多于9.0倍,叶子吸收的K比Rb高出18.0倍。同样值得注意的是,草木根吸收的钾比叶少2.5倍。这些值仅适用于草。

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