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Spatial Distribution of Soil Organic Matter and Soil Organic Carbon Stocks in Semi-Arid Area of Northeastern Syria

机译:叙利亚东北部半干旱地区土壤有机质和土壤有机碳储量的空间分布

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Although soil organic matter (SOM) form s a small portion of the soil body . Nevertheless, it is the most important component of the soil ecosystem, as well as of the carbon global cycle. In the semi-arid environment, there has been little research on the spatial distribution of SOM and soil organic carbon (SOC) stock. In this study, stratified random samples of total 30 soils were collected from two different soil depth (topsoil, subsoil) of Al Balikh plain and used for mapping the spatial variability of SOC and to estimating the SOC stock. The result showed that the values were relatively homogenate, with the normal decreasing trend with increasing the depth. The standard deviation (Std. D) for both SOC and SOC stock indicates homogeneous and absence of outliers values, whereas the coefficient of variation (C.V) indicates non-dispersion and clustering of values around the average. SOC was 0.38%, 0.17% in topsoil and subsoil respectively; the corresponding averages of SOC stock were 1.23 kg· m -2 ) ? and 1.14 kg· m -2) respectively, these values reflecting typical characteristics of poor SOC semi-arid soil. The correlation between SOC and SOC stock was (R ~( 2 ) = 0.996, p < 0.001) in topsoil and it was (R ~( 2 ) = 0.941, p < 0.001) for subsoil. The semivariograms were indicated that both SOC and SOC stock were best fitted to the exponential model. Nugget, range, and sill were equal to 0.002, 0.036, and 0.044, respectively for SOC in topsoil, and 0.014, 0.071, and 0.081, for SOC in the subsoil. For SOC stock, it was 0.0, 0.036, and 0.0508, respectively in topsoil. In the subsoil, the values were 0.1899, 0.086, and 4.159, respectively. SOC and SCO stock in both two layers are shown a strong spatial dependence, for which were 4.3, 17.2 for SOC in topsoil and subsoil respectively, and 0.0, 4.5 for SOC stock in topsoil and subsoil respectively, thus, which can be attributed to intrinsic factors.
机译:尽管土壤有机质(SOM)仅占土壤主体的一小部分。然而,它是土壤生态系统以及碳全球循环的最重要组成部分。在半干旱环境中,关于SOM和土壤有机碳(SOC)库的空间分布的研究很少。在这项研究中,从Al Balikh平原的两个不同土壤深度(表土,地下土壤)中收集了总共30种土壤的分层随机样本,并将其用于绘制SOC的空间变异性并估算SOC存量。结果表明,该值相对均匀,且随着深度的增加呈正常下降趋势。 SOC和SOC存量的标准偏差(Std.D)表示均匀且没有异常值,而变异系数(C.V)表示值在平均值附近没有分散和聚集。表层土壤和下层土壤的SOC分别为0.38%和0.17%。 SOC的平均值为1.23 kg·m -2)?和1.14 kg·m -2),这些值反映了劣质SOC半干旱土壤的典型特征。表土中SOC与SOC储量之间的相关性为(R〜(2)= 0.996,p <0.001),而下层土壤为(R〜(2)= 0.941,p <0.001)。半变异函数表明,SOC和SOC存量都最适合指数模型。表土中的SOC的块金,范围和底线分别等于0.002、0.036和0.044,底土中的SOC的块金,范围和基石分别等于0.014、0.071和0.081。对于SOC库存,表土中的SOC分别为0.0、0.036和0.0508。在底土中,该值分别为0.1899、0.086和4.159。这两层的SOC和SCO存量都表现出强烈的空间依赖性,表土和地下的SOC分别为4.3、17.2,表土和地下的SOC分别为0.0、4.5,这可以归因于内在因素。

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