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Soil organic carbon distribution in Mediterranean areas under a climate change scenario via multiple linear regression analysis

机译:气候变化情景下地中海地区土壤有机碳分布的多元线性回归分析

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摘要

Over time, the interest on soil studies has increased due to its role in carbon sequestration in terrestrial ecosystems, which could contribute to decreasing atmospheric CO_2 rates. In many studies, independent variables were related to soil organic carbon (SOC) alone, however, the contribution degree of each variable with the experimentally determined SOC content were not considered. In this study, samples from 612 soil profiles were obtained in a natural protected (Red Natura 2000) of Sierra Morena (Mediterranean area, South Spain), considering only the topsoil 0-25 cm, for better comparison between results. 24 independent variables were used to define it relationship with SOC content. Subsequently, using a multiple linear regression analysis, the effects of these variables on the SOC correlation was considered. Finally, the best parameters determined with the regression analysis were used in a climatic change scenario. The model indicated that SOC in a future scenario of climate change depends on average temperature of coldest quarter (41.9%), average temperature of warmest quarter (34.5%), annual precipitation (22.2%) and annual average temperature (1.3%). When the current and future situations were compared, the SOC content in the study area was reduced a 35.4%, and a trend towards migration to higher latitude and altitude was observed.
机译:随着时间的流逝,由于土壤研究在陆地生态系统中固碳中的作用,对土壤研究的兴趣增加了,这可能有助于降低大气中的CO_2率。在许多研究中,独立变量仅与土壤有机碳(SOC)相关,但是,未考虑每个变量与实验确定的SOC含量的贡献程度。在这项研究中,从塞拉莫雷纳(西班牙南部地中海地区)的自然保护区(Red Natura,2000年)中获得了612个土壤剖面的样品,仅考虑了0-25厘米的表土,以便更好地比较结果。使用24个独立变量来定义它与SOC含量的关系。随后,使用多元线性回归分析,考虑了这些变量对SOC相关性的影响。最后,在气候变化场景中使用通过回归分析确定的最佳参数。该模型表明,未来气候变化情景下的SOC取决于最冷季的平均温度(41.9%),最暖季的平均温度(34.5%),年降水量(22.2%)和年平均温度(1.3%)。当比较当前和将来的情况时,研究区域的SOC含量降低了35.4%,并且观察到向更高纬度和高度迁移的趋势。

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  • 来源
    《The Science of the Total Environment》 |2017年第15期|134-143|共10页
  • 作者单位

    Department of Agricultural Chemistry and Soil Science, Faculty of Saence, Agrifœd Campus of International Excellence - ceiA3, University of Cordoba, Cordoba, Spain ,Department of Biochemistry and Molecular Biology, Faculty of Science, Campus of International Excellence - ceiA3, University of Cordoba, Cordoba, Spain;

    Department of Agricultural Chemistry and Soil Science, Faculty of Saence, Agrifœd Campus of International Excellence - ceiA3, University of Cordoba, Cordoba, Spain ,Sustαmable Use and Management of Soils (SUMAS) Research Group, Spain;

    Department of Agricultural Chemistry and Soil Science, Faculty of Saence, Agrifœd Campus of International Excellence - ceiA3, University of Cordoba, Cordoba, Spain ,Sustαmable Use and Management of Soils (SUMAS) Research Group, Spain;

    Department of Botany, Ecology and Plant physiology. Faculty of Saence, Campus of International Excellence - ceiA3, University of Cordoba, Cordoba, Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil organic carbon stock; Multiple linear regression; Climate change scenarios; Top soil; Protected areas of Spain; Physical and chemical soil properties;

    机译:土壤有机碳储量;多元线性回归;气候变化情景;表土西班牙的保护区;土壤理化性质;

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