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The Impact of Climate Change on Ecosystem Carbon Dynamics at the Scandinavian Mountain Birch Forest–Tundra Heath Ecotone

机译:气候变化对斯堪的纳维亚山区桦木森林-Tundra Heath过渡带生态系统碳动态的影响

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Changes in temperature and moisture resulting from climate change are likely to strongly modify the ecosystem carbon sequestration capacity in high-latitude areas, both through vegetation shifts and via direct warming effects on photosynthesis and decomposition. This paper offers a synthesis of research addressing the potential impacts of climate warming on soil processes and carbon fluxes at the forest–tundra ecotone in Scandinavia. Our results demonstrated higher rates of organic matter decomposition in mountain birch forest than in tundra heath soils, with markedly shallower organic matter horizons in the forest. Field and laboratory experiments suggest that increased temperatures are likely to increase CO2 efflux from both tundra and forest soil providing moisture availability does not become limiting for the decomposition process. Furthermore, colonization of tundra heath by mountain birch forest would increase rates of decomposition, and thus CO2 emissions, from the tundra heath soils, which currently store substantial amounts of potentially labile carbon. Mesic soils underlying both forest and tundra heath are currently weak sinks of atmospheric methane, but the strength of this sink could be increased with climate warming and/or drying.
机译:气候变化导致的温度和湿度变化很可能会通过植被转移以及对光合作用和分解的直接变暖作用,大大改变高纬度地区生态系统的碳固存能力。本文提供了研究的综合内容,以解决气候变暖对斯堪的那维亚森林-苔原交错带的土壤过程和碳通量的潜在影响。我们的结果表明,与桦木荒地土壤相比,山桦木森林中的有机物分解速率更高,而森林中的有机物层明显较浅。野外和实验室实验表明,温度升高可能会增加苔原和森林土壤中CO 2 的外流,条件是水分的可利用性不会成为分解过程的限制。此外,山桦林对苔原荒地的定殖会增加分解的速度,从而增加苔原荒地土壤的CO 2 排放量,而苔原原土目前储存了大量潜在的不稳定碳。目前森林和苔原荒地下面的中性土壤是大气甲烷的薄弱汇,但是随着气候变暖和/或干燥,该汇的强度可能会增加。

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    《AMBIO: A Journal of the Human Environment》 |2009年第1期|p.2-10|共9页
  • 作者单位

    Sofie Sjögersten is a lecturer in Environmental Science at the University of Nottingham. Her address: School of Biosciences, University of Nottingham, University Park, Biology Building, Nottingham, NG7 2RD, UK. Sofie.sjogersten@nottingham.ac.uk;

    Philip A. Wookey is a reader in Ecosystem Ecology at the University of Stirling. His address: School of Biological and Environmental Sciences, University of Stirling, Stirling, FK9 4LA, UK. Philip.Wookey@stir.ac.uk;

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