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Colluvial soils as a soil organic carbon pool in different soil regions

机译:冲积土作为不同土壤区域的土壤有机碳库

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Subsoil has been recognized as large reservoir of soil organic carbon in recent years. In our study, we investigated deep colluvial soils as a potentially important source of SOC due to high mass redistribution driven by soil erosion. Three agriculture plots from the Chernozem, Luvisol, and Cambisol regions were studied to assess the SOC storage in topsoil (0-25 cm), at 2 m depth (0-200 cm), and over the total soil depth (0-450 cm) as a function of relief. The study is based on 558 borings, and soil profile description and classification to facilitate the colluvial soil delineation. Among these locations, SOC content was measured at 230 sampling points. Prediction of the SOC stock for the plots was based on support vector machine algorithms using digital elevation model derivatives as predictors. Total SOC stock varied among the study plots. The highest relative SOC stock was measured in the Chemozem (CH) plot (144.7 t.ha(-1)), While at the Luvisol (LU) plot, it reached 68.4 t.ha(-1) and was 73.4 t.ha(-1) at the Cambisol (CM) plot. The role of colluvial soils regarding their spatial extent and SOC stock differs among the studied plots. Colluvial soils at the CH plot represent an important soil cover both spatially (13%) and by the volume of SOC stock (37%). A moderate importance of colluvial soils is determined for the LU plot (12% of SOC stock), and a low importance for the CM plot (5% of SOC stock). SOC stock contained in topsoil and subsoil differs in each plot. In the Luvisol and Cambisol plots, more than one half of SOC is retained in topsoil (53.4%, 60.3%). In contrast, more than two thirds of the SOC stock (73.1%) occurs in subsoil in the Chernozem plot. Moreover, 19.0% of the total SOC stock occurs at depths below 2 m. This finding indicates the importance of the incorporation of deep colluvial soil horizons in SOC stock estimations. (C) 2015 Elsevier B.V. All rights reserved.
机译:近年来,地下土壤被认为是土壤有机碳的大型储集层。在我们的研究中,由于土壤侵蚀引起的大量重分布,我们调查了深层砂土作为SOC的潜在重要来源。研究了来自切尔诺泽姆,卢维索尔和坎比索尔地区的三个农业用地,以评估表土(0-25厘米),2 m深度(0-200厘米)以及土壤总深度(0-450厘米)中的SOC储存量。 )作为救济的功能。该研究基于558个钻孔,并对土壤剖面进行了描述和分类,以促进共生土壤的划分。在这些位置中,在230个采样点处测量了SOC含量。使用数字高程模型导数作为预测器,基于支持向量机算法,对地块的SOC存量进行了预测。各研究区之间的SOC总存量有所不同。在Chemozem(CH)图中测得的最高相对SOC储量(144.7 t.ha(-1)),而在Luvisol(LU)图中,它达到68.4 t.ha(-1)和73.4 t.ha (-1)在Cambisol(CM)图上。在各样地中,冲积土壤在空间范围和SOC储量方面的作用是不同的。 CH曲线上的河床土壤在空间上(13%)和SOC储量(37%)都代表着重要的土壤覆盖率。对于LU图(占SOC存量的12%),确定了耕地土壤的中等重要性,而对于CM图(占SOC存量的5%),耕作土壤的重要性较低。在每个样区中,表层土壤和下层土壤中所含的SOC存量都不同。在Luvisol和Cambisol图中,表土中保留了一半以上的SOC(53.4%,60.3%)。相反,在切尔诺泽姆地区,三分之二的SOC储量(73.1%)存在于地下土壤中。此外,SOC总储量的19.0%发生在2 m以下的深度。这一发现表明,在SOC储量估算中纳入深层砂土层很重要。 (C)2015 Elsevier B.V.保留所有权利。

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