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A synthesis of modern organic carbon accumulation rates in coastal and aquatic inland ecosystems

机译:沿海和水生内陆生态系统中现代有机碳积累速率的综合

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Organic carbon accumulation in the sediments of inland aquatic and coastal ecosystems is an important process in the global carbon budget that is subject to intense human modification. To date, research has focused on quantifying accumulation rates in individual or groups of aquatic ecosystems to quantify the aquatic carbon sinks. However, there hasn’t been a synthesis of rates across aquatic ecosystem to address the variability in rates within and among ecosystems types. Doing so would identify gaps in our understanding of accumulation rates and potentially reveal carbon sinks vulnerable to change. We synthesized accumulation rates from the literature, compiling 464 rate measurements from 103 studies of carbon accumulated in the modern period (ca. 200 years). Accumulation rates from the literature spanned four orders of magnitude varying substantially within and among ecosystem categories, with mean estimates for ecosystem categories ranging from 15.6 to 73.2?g?C m?2 y?1 within ecosystem categories. With the exception of lakes, mean accumulation rates were poorly constrained due to high variability and paucity of data. Despite the high uncertainty, the estimates of modern accumulation rate compiled here are an important step for constructing carbon budgets and predicting future change.
机译:内陆水生和沿海生态系统沉积物中的有机碳积累是全球碳预算中的一个重要过程,人类需要对其进行大量修改。迄今为止,研究集中于量化单个或成组水生生态系统中的累积速率,以量化水生碳汇。但是,还没有关于整个水生生态系统的费率综合资料,以解决生态系统类型之间以及不同类型之间的费率差异。这样做会发现我们对积累率的理解存在差距,并有可能揭示易受变化影响的碳汇。我们从文献中合成了累积速率,并从现代时期(约200年)的103项碳累积研究中收集了464个速率测量值。文献中的累积速率跨越了四个数量级,在生态系统类别之内和之间变化很大,生态系统类别的平均估计值在15.6至73.2?g?C m?2 y?1之间。除湖泊外,由于数据的高变异性和稀缺性,平均积累率受到的约束较弱。尽管不确定性很高,但这里汇编的现代积累率估算值是构建碳预算和预测未来变化的重要一步。

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