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Soil CO2 Efflux in a Mixed Pine-Oak Forest in Valsaín (Central Spain)

机译:Valsaín(西班牙中部)的松树栎混交林中的土壤CO2排放

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摘要

Soil-surface CO2 efflux and its spatial and temporal variation were investigated in a southern Mediterranean, mixed pine-oak forest ecosystem on the northern slopes of the Sierra de Guadarrama in Spain from February 2006 to July 2006. Measurements of soil CO2 efflux, soil temperatures, and moisture were conducted in nine 1963-m2 sampling plots distributed in a gradient around the ecotone between Pinus sylvestris L. and Quercus pyrenaica Lam. forest stands. Total soil organic matter, Walkey-Black C, particulate organic matter, organic matter fraction below 53 μm, total soil nitrogen content, total soil organic carbon content, and pH were also measured under three representative mature oak, pine, and mixed pine-oak forest stands. Soil respiration showed a typical seasonal pattern with minimums in winter and summer, and maximums in spring, more pronounced in oak and oak-pine stands. Soil respiration values were highest in pine stands during winter and in oak stands during spring and summer.Soil respiration was highly correlated with soil temperatures in oak and pine-oak stands when soil moisture was above a drought threshold of 15%. Below this threshold value, soil moisture was a good predictor of soil respiration in pine stands. Greater soil organic matter, particulate organic matter, Walkey-Black C, total organic C, and total N content in pine compared to oak sites potentially contributed to the greater total soil CO2 efflux in these stands during the winter. Furthermore, opposing trends in the organic matter fraction below 53 μm and soil respiration between plots suggest that in oak stands, the C forms are less affected by possible changes in use. The effects of soil properties on soil respiration were masked by differences in soil temperature and moisture during the rest of the year. Understanding the spatial and temporal variation even within small geographic areas is essential to assess C budgets at ecosystem level accurately. Thus, this study bears important implications for the study of large-scale ecosystem dynamics, particularly in response to climatic change.
机译:2006年2月至2006年7月,在西班牙瓜达拉马山脉北坡的地中海南部,松橡混合森林生态系统中调查了土壤表面CO2排放量及其时空变化。测量了土壤CO2排放量,土壤温度并在9个1963-m 2 采样区进行了水分测定,这些采样区围绕樟子松和栎栎之间的过渡带呈梯度分布。森林林。在三种代表性的成熟橡树,松树和混合松树橡树下,也测量了土壤有机物总量,Walkey-Black C,有机颗粒物,有机物含量低于53μm,土壤总氮含量,土壤总有机碳含量和pH值。森林林。土壤呼吸表现出典型的季节性模式,冬季和夏季最低,春季最高,在橡树和橡松林中更为明显。冬季松树林和春季和夏季橡树林的土壤呼吸值最高。当土壤水分高于15%的干旱阈值时,土壤呼吸与橡树和松橡林的土壤温度高度相关。低于该阈值,土壤水分是松树林中土壤呼吸的良好预测指标。与橡木林地相比,松树中更大的土壤有机质,颗粒有机质,Walkey-Black C,总有机碳和总N含量可能导致这些林分在冬季更大的总土壤CO2外流。此外,样地之间低于53μm的有机物含量和土壤呼吸的相反趋势表明,在橡树林中,碳形态受使用中可能变化的影响较小。在一年余下的时间里,土壤温度和湿度的差异掩盖了土壤性质对土壤呼吸的影响。即使在较小的地理区域内,也要了解空间和时间变化,这对于准确评估生态系统级别的碳预算至关重要。因此,这项研究对大规模生态系统动力学的研究具有重要意义,特别是对气候变化的响应。

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