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The modelling of soil-process functional units based on three-dimensional soil horizon cartography, with an example of denitrification in a riparian zone

机译:基于三维土壤层位图的土壤过程功能单元建模,以河岸带反硝化为例

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摘要

This article aims to propose an approach for estimating the three-dimensional (3D) variability of denitrification. The concept of functional horizons is applied to the process of biological denitrification and 3D soil horizon cartography is used to estimate its spatial variation. On one hand, detailed fieldwork (186 pedological auger holes) was undertaken to map 3D horizon distribution within a 3-ha riparian area using Geographical Information Systems (GIS). On the other hand, three classes of denitrifying capacities were defined according to the distribution of the denitrifying enzyme activity of 51 samples. The relationship between the process of denitrification and the cartography is assessed through soil characteristics, which both differentiate soil horizons and control the process of denitrification: organic carbon and textural fractions. This allows a class of denitrifying capacity to be attributed to each soil horizon. This information was inserted into the 3D soil horizon cartography and the denitrifying functional horizons could be delimited. With this approach, field criteria are used and variations of the 3D distribution of denitrification are considered in order to estimate the spatial variation of denitrification within the riparian area being studied.
机译:本文旨在提出一种估算反硝化的三维(3D)变异性的方法。功能层位的概念适用于生物反硝化过程,而3D土壤层位图则用于估计其空间变化。一方面,我们使用地理信息系统(GIS)进行了详细的野外工作(186个钻探钻洞),以绘制3公顷河岸区域内的3D地平线分布图。另一方面,根据51个样品的反硝化酶活性的分布,定义了三类反硝化能力。通过土壤特性评估反硝化过程与制图之间的关系,这些特征既可以区分土壤层,又可以控制反硝化过程:有机碳和质地分数。这使得一类反硝化能力归因于每个土壤层。此信息已插入3D土壤层位图中,可以界定反硝化功能层位。通过这种方法,使用了现场标准,并考虑了反硝化作用的3D分布变化,以便估算正在研究的河岸区域内反硝化作用的空间变化。

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