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Variability in organic carbon reactivity across lake residence time and trophic gradients

机译:湖泊停留时间和营养级梯度有机碳反应性的可变性

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摘要

The transport of dissolved organic carbon from land to ocean is a large dynamic component of the global carbon cycle. Inland waters are hotspots for organic matter turnover, via both biological and photochemical processes, and mediate carbon transfer between land, oceans and atmosphere. However, predicting dissolved organic carbon reactivity remains problematic. Here we present in situ dissolved organic carbon budget data from 82 predominantly European and North American water bodies with varying nutrient concentrations and water residence times ranging from one week to 700 years. We find that trophic status strongly regulates whether water bodies act as net dissolved organic carbon sources or sinks, and that rates of both dissolved organic carbon production and consumption can be predicted from water residence time. Our results suggest a dominant role of rapid light-driven removal in water bodies with a short water residence time, whereas in water bodies with longer residence times, slower biotic production and consumption processes are dominant and counterbalance one another. Eutrophication caused lakes to transition from sinks to sources of dissolved organic carbon. We conclude that rates and locations of dissolved organic carbon processing and associated CO2 emissions in inland waters may be misrepresented in global carbon budgets if temporal and spatial reactivity gradients are not accounted for.
机译:从陆地到海洋的溶解有机碳的运输是全球碳循环的大动态分量。内陆水域是通过生物和光化学过程的有机质营业额的热点,以及陆地,海洋和大气之间的碳转移。然而,预测溶解的有机碳反应性仍然存在问题。在这里,我们以82种主要的欧洲和北美水体以不同的营养浓度和水停留时间从82次出现原位溶解的有机碳预算数据。我们发现营养状况强烈调节水体是否作为净溶解的有机碳源或水槽,并且可以从水停留时间预测溶解的有机碳生产和消费的速率。我们的结果表明,快速浅灯驱动在水体中具有短的水处理时间的主要作用,而在较长的停留时间的水体中,生物生产和消费过程较慢,彼此的抗衡度。富营养化引起了湖泊从沉没到溶解有机碳的来源。我们得出结论,如果不占时间和空间反应性梯度,在全球碳预算中可能在内陆水域中的溶解有机碳加工和内陆水资源的率和相关二氧化碳排放的速率和位置。

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  • 来源
    《Nature geoscience》 |2017年第11期|共6页
  • 作者单位

    Ctr Ecol &

    Hydrol Deiniol Rd Bangor LL57 2UW Gwynedd Wales;

    Swedish Univ Agr Sci Dept Aquat Sci &

    Assessment Lennart Hjalms Vag 9 S-75007 Uppsala Sweden;

    IVL Swedish Environm Res Inst POB 5302 S-40014 Gothenburg Sweden;

    Norwegian Inst Water Res Gaustadalleen 21 N-0349 Oslo Norway;

    Scottish Water 55 Buckstone Terrace Edinburgh EH10 6XH Midlothian Scotland;

    Uppsala Univ Dept Ecol &

    Genet Limnol Norbyvagen 18D S-75236 Uppsala Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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