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Underestimation of boreal forest soil carbon stocks related to soil classification and drainage

机译:与土壤分类和排水相关的北方森林土壤碳储量低估

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Soil organic carbon (C), accumulated over millennia, comprise more than half of the C stored in boreal and temperate forest landscapes. We used the Norwegian national forest inventory and soil survey network (n = 719, no deep organic soils) to explore the validity of a deterministic model representation of this pool (Yasso07). We statistically compared simulated and measured soil C stocks and related differences (measured - simulated) to site factors (drainage, topography, climate, vegetation, C-to-N ratio, and soil classification). Median C stocks were 5.0 kg C.m(-2) (model) and 14.5 kg C.m(-2) (measurements). Soil C differences related to site factors (r(2) of 0.16 to 0.37). For Brunisols, Gleysols, and wet Organic soils, differences related primarily to topographic wetness. For Regosols, Podzols, and Dystric Eluviated Brunisols, they related to climate, profile depth, and, in some cases, drainage class and site index. We argue that soil moisture regimes in our study area overrule tree productivity effects in the determination of soil C stocks and present conditions for soil formation that the model cannot (and does not explicitly) account for. These are processes such as humification and podsolization that involve eluviation and illuviation of dissolved organic C (DOC) with sesquioxides to form spodic B horizons and carbon enrichment due to hampered decomposition in frequently anoxic conditions.
机译:几千年来积累的土壤有机碳(C)占北方和温带森林景观中储存的碳的一半以上。我们使用了挪威国家森林资源和土壤调查网络(n = 719,没有深有机土壤)来探索该池的确定性模型表示的有效性(Yasso07)。我们在统计上比较了模拟和测量的土壤碳储量以及相关差异(测量-模拟)与场地因素(排水,地形,气候,植被,碳氮比和土壤分类)。 C的中位数为5.0 kg C.m(-2)(模型)和14.5 kg C.m(-2)(度量)。土壤碳差异与位点因子有关(r(2)为0.16至0.37)。对于Brunisols,Gleysols和湿有机土壤,差异主要与地形湿度有关。对于雷哥sol,波多佐尔和流失侵蚀的布鲁尼索尔,它们与气候,剖面深度有关,在某些情况下还与排水等级和工地指数有关。我们认为,我们研究区域的土壤水分状况在确定土壤碳储量和模型无法(也没有明确说明)的土壤形成条件方面,否决了树木生产力的影响。这些是诸如腐殖化和荚果化的过程,其中涉及用倍半氧化物对溶解的有机C(DOC)进行淋洗和溶化,从而形成偶生的B层,并且由于经常缺氧条件下的分解而使碳富集。

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