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Spatial distribution of soil organic carbon in northwest Greenland and underestimates of high Arctic carbon stores

机译:格陵兰西北部土壤有机碳的空间分布和低碳北极储碳量的低估

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The amount of soil organic carbon (SOC) in the high Arctic is generally poorly constrained. Because of periglacial processes such as frost churning and sequestration in frozen soils, a substantial amount of SOC is typically not inventoried. This study provides a detailed study of SOC content by depth in 55 soil pits in a high Arctic ecosystem of northwest Greenland. Sampling sites spanned ecosystems from mires to polar deserts, from sea level to the margins of the Greenland Ice Sheet, and across various periglacial features. The amount of SOC in the various ecosystems was mapped using a correlation of SOC with high-resolution ASTER satellite imagery and the normalized difference vegetation index (NDVI) classes from the Circumpolar Arctic Vegetation Map. On the basis of this correlation, the total carbon was extrapolated to greater areas of the high Arctic. Our study found the amount of SOC in the high Arctic has typically been grossly underestimated, remarkably by the greatest amount in the most barren environments of the polar desert. We estimate that the high Arctic contains about 12 Pg SOC, a factor of over 5 times greater the most cited values previously reported. Since our estimate was only assessed in seasonally frozen ground, additional carbon frozen in the permafrost is likely present and potentially available in the event of permafrost thawing due to warming of the Arctic.
机译:北极高海拔地区的土壤有机碳(SOC)数量通常受到限制。由于诸如霜冻搅动和在冻结土壤中隔离等冰晶作用,通常不会记录大量的SOC。这项研究详细研究了西北格陵兰岛一个高北极生态系统中55个土壤坑中的SOC含量。采样地点涵盖了从泥潭到极地沙漠的生态系统,从海平面到格陵兰冰原的边缘,以及各种冰缘特征。利用SOC与高分辨率ASTER卫星图像的相关性以及圆极北极植被图的归一化差异植被指数(NDVI)类,可以绘制出各种生态系统中的SOC数量。根据这种相关性,将总碳推断到北极高地的更大区域。我们的研究发现,北极高海拔地区的SOC含量通常被严重低估,在极地沙漠最贫瘠的环境中,SOC的含量最高。我们估计高北极地区含有约12 Pg SOC,是先前报道的最多引用值的5倍以上。由于我们的估算仅在季节性冰冻的地面上进行评估,因此如果北极变暖导致的永久冻土融化,则永久冻土中可能还会有冰冻的附加碳,并且有可能提供。

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