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Grain size controls on cryoturbation and soil organic carbon density in permafrost-affected soils

机译:冻土影响土壤中低温扰动和土壤有机碳密度的粒度控制

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摘要

This meta-analysis aims to describe the relationship between grain size distributions and soil organic carbon (SOC) storage in mineral subsoil and SOC-enriched cryoturbated pockets in five areas of continuous permafrost that differ in glaciation history and soil parent materials. Our results show a positive relationship between the proportion of soil particles in fine-grained fractions (colloid to medium silt) and SOC storage. Finer textured soils had significantly higher SOC storage in mineral subsoil samples (not SOC-enriched through cryoturbation) than coarser textured soils. However, the process of SOC enrichment through cryoturbation was most pronounced in soils with coarser grain sizes in the range of coarse silt and very fine sand. Although fine-grained textures provide better physical and biochemical protection for soil organic matter, their strong cohesion reduces the mixing of soil horizons and the effectiveness of cryoturbation. A higher ratio of coarse silt to clay in samples was a good predictor of SOC enrichment through cryoturbation across soil samples, soil profiles and study areas.
机译:这项荟萃分析旨在描述五个永久性多年冻土地区的冰川发育历史和土壤母质不同的区域中,矿物分布在矿物底土和富含SOC的低温扰动囊中的粒度分布与土壤有机碳(SOC)储存之间的关系。我们的结果表明,细粒级分(胶体到中等粉砂)中土壤颗粒的比例与SOC储存之间呈正相关。较细的质地土壤比较粗的质地土壤在矿物地下土壤样品中的SOC储藏量高得多(不通过冷冻扰动富集SOC)。但是,在较粗的粉土和非常细的沙粒范围内,具有较粗粒度的土壤中,通过低温扰动富集SOC的过程最为明显。尽管细粒度的纹理为土壤有机物提供了更好的物理和生化保护,但它们的强内聚性降低了土壤层的混合和冷冻扰动的有效性。样品中较高的粗粉土与粘土比率是通过低温扰动在土壤样品,土壤剖面和研究区域中进行SOC富集的良好预测指标。

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