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Effect of Terrain Characteristics on Soil Organic Carbon and Total Nitrogen Stocks in Soils of Herschel Island, Western Canadian Arctic

机译:地形特征对加拿大西部北极地区赫歇尔岛土壤有机碳和总氮储量的影响

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摘要

Permafrost landscapes experience different disturbances and store large amounts of organic matter, which may become a source of greenhouse gases upon permafrost degradation. We analysed the influence of terrain and geomorphic disturbances (e.g. soil creep, active-layer detachment, gullying, thaw slumping, accumulation of fluvial deposits) on soil organic carbon (SOC) and total nitrogen (TN) storage using 11 permafrost cores from Herschel Island, western Canadian Arctic. Our results indicate a strong correlation between SOC storage and the topographic wetness index. Undisturbed sites stored the majority of SOC and TN in the upper 70cm of soil. Sites characterised by mass wasting showed significant SOC depletion and soil compaction, whereas sites characterised by the accumulation of peat and fluvial deposits store SOC and TN along the whole core. We upscaled SOC and TN to estimate total stocks using the ecological units determined from vegetation composition, slope angle and the geomorphic disturbance regime. The ecological units were delineated with a supervised classification based on RapidEye multispectral satellite imagery and slope angle. Mean SOC and TN storage for the uppermost 1m of soil on Herschel Island are 34.8kg C m(-2) and 3.4kgNm(-2), respectively. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:多年冻土景观受到不同的干扰,并存储大量有机物,这些有机物可能会在永久冻土退化时成为温室气体的来源。我们使用来自赫歇尔岛的11个多年冻土岩心分析了地形和地貌干扰(例如,土壤蠕变,活动层脱离,沟壑,融化塌陷,河流沉积物的堆积)对土壤有机碳(SOC)和总氮(TN)存储的影响,加拿大西部北极地区。我们的结果表明,SOC储存量与地形湿度指数之间具有很强的相关性。未受干扰的地点将大部分SOC和TN储存在土壤的上方70厘米处。以大量浪费为特征的地点表现出明显的SOC损耗和土壤压实,而以泥炭和河流沉积物堆积为特征的地点则沿整个岩心储存SOC和TN。我们使用从植被组成,坡度角和地貌扰动机制确定的生态单位,对SOC和TN进行了上调,以估算总种群。根据RapidEye多光谱卫星图像和倾斜角度,对生态单位进行监督分类。 Herschel岛最上层1m土壤的平均SOC和TN储量分别为34.8kg C m(-2)和3.4kgNm(-2)。版权所有(c)2015 John Wiley&Sons,Ltd.

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