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Changes in deep soil organic carbon and soil properties beneath tree windbreak plantings in the US Great Plains

机译:美国大平原树防风地区深土有机碳和土壤特性的变化

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Agroforestry systems such as tree windbreaks became a common practice in the U.S. Great Plains following a large tree planting program during the Dust Bowl of the 1930s. Tree windbreaks combine the potential to increase biomass and soil carbon (C) storage while maintaining agricultural production. However, our understanding of the effect of trees on soil organic carbon (SOC) is largely limited to the upper 30 cm of the soil. This study was conducted in the Great Plains to examine the impact of tree plantings ranging in age from 15 to ~ 115-years on SOC storage and relevant soil properties. We quantified SOC stocks to 1.25 m depth within eight tree plantings and in the adjacent farmed fields within the same soil map unit. Soil samples were also analyzed for inorganic carbon, total nitrogen, pH (in water and KCl), bulk density, and water stable aggregates. Averaged across sites, SOC stocks in the 1.25 m were 16% higher beneath trees than the adjacent farmed fields. Differences ranged from + 10.54 to a - 5.05 kg m(-2) depending on the site, climate, and tree species and age. The subsurface soils (30-125 cm) beneath trees stored 7% more SOC stocks than the surface 30 cm (9.54 vs. 8.84 kg m(-2)), respectively. This finding demonstrates the importance of quantifying C stored at deeper depths under tree-based systems when tree SOC sequestration is being assessed. Overall, our results indicate the potential of trees to store C in soils and at deeper depths.
机译:在20世纪30年代的尘土碗期间,树防风儿等树木风洞的系统在大型树木植物节目之后成为美国大平原的常见做法。树防风树结合了增加生物量和土壤碳(C)储存的潜力,同时保持农业生产。然而,我们对树木对土壤有机碳(SoC)的影响的理解在很大程度上限于土壤30厘米。本研究在大平原中进行,检验树种植的影响在4岁以上的4岁到115年的SOC储存和相关土壤性质。我们将SoC库存量化为1.25米深度,在同一土壤地图单元内的相邻养殖场中。还分析了土壤样品用于无机碳,总氮,pH(水和KCl),散装密度和水稳定的聚集体。平均地点,1.25米的SoC股在树下比相邻的养殖场下方16%。根据现场,气候和树种和年龄,差异从+ 10.54到A - 5.05千克M(-2)范围。树木下面的地下土壤(30-125厘米)分别比表面积30cm(9.54与8.84kg m(-2))储存7%的SOC股。当评估树SOC封存时,该发现展示了量化在基于树的系统下储存的深度深度的C的重要性。总体而言,我们的结果表明树木在土壤中储存C的潜力和深度深度。

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