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Spatial Variability and Stocks of Soil Organic Carbon in the Gobi Desert of Northwestern China

机译:西北戈壁沙漠中土壤有机碳的空间变异性和储量

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摘要

Soil organic carbon (SOC) plays an important role in improving soil properties and the C global cycle. Limited attention, though, has been given to assessing the spatial patterns and stocks of SOC in desert ecosystems. In this study, we quantitatively evaluated the spatial variability of SOC and its influencing factors and estimated SOC storage in a region (40 km2) of the Gobi desert. SOC exhibited a log-normal depth distribution with means of 1.6, 1.5, 1.4, and 1.4 g kg−1 for the 0–10, 10–20, 20–30, and 30–40 cm layers, respectively, and was moderately variable according to the coefficients of variation (37–42%). Variability of SOC increased as the sampling area expanded and could be well parameterized as a power function of the sampling area. Significant correlations were detected between SOC and soil physical properties, i.e. stone, sand, silt, and clay contents and soil bulk density. The relatively coarse fractions, i.e. sand, silt, and stone contents, had the largest effects on SOC variability. Experimental semivariograms of SOC were best fitted by exponential models. Nugget-to-sill ratios indicated a strong spatial dependence for SOC concentrations at all depths in the study area. The surface layer (0–10 cm) had the largest spatial dependency compared with the other layers. The mapping revealed a decreasing trend of SOC concentrations from south to north across this region of the Gobi desert, with higher levels close to an oasis and lower levels surrounded by mountains and near the desert. SOC density to depths of 20 and 40 cm for this 40 km2 area was estimated at 0.42 and 0.68 kg C m−2, respectively. This study provides an important contribution to understanding the role of the Gobi desert in the global carbon cycle.
机译:土壤有机碳(SOC)在改善土壤性质和碳全球循环中起着重要作用。但是,对评估沙漠生态系统中SOC的空间格局和储量的关注有限。在这项研究中,我们定量评估了戈壁沙漠地区(40 km 2 )SOC的空间变异性及其影响因素,并估计了SOC的存储量。 SOC在0–10、10–20、20–30和30–40 cm的层中显示出对数正态深度分布,平均值为1.6、1.5、1.4和1.4 g kg -1 分别根据变异系数适度变化(37–42%)。 SOC的可变性随采样区域的扩大而增加,并且可以很好地将其参数化为采样区域的幂函数。在SOC和土壤物理特性(即石头,沙子,粉砂,粘土含量和土壤容重)之间发现了显着的相关性。相对粗大的部分(即沙子,粉砂和石头含量)对SOC变异性的影响最大。 SOC的实验半变异图最好通过指数模型拟合。块金比值表明研究区域所有深度的SOC浓度均具有很强的空间依赖性。与其他层相比,表面层(0–10 cm)具有最大的空间依赖性。该图显示了整个戈壁沙漠地区从南到北的SOC浓度呈下降趋势,其中较高的浓度接近绿洲,较低的浓度被群山和沙漠包围。在该40 km 2 区域中,SOC深度为20和40 cm的估计分别为0.42和0.68 kg C m -2 。这项研究为理解戈壁沙漠在全球碳循环中的作用做出了重要贡献。

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  • 作者

    Pingping Zhang; Mingan Shao;

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  • 年(卷),期 -1(9),4
  • 年度 -1
  • 页码 e93584
  • 总页数 12
  • 原文格式 PDF
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