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海洋-大气相互作用强迫下的加拿大东部北方森林木材生物量生产的年代际变化。

Decadal Variations in Eastern Canada's Taiga Wood Biomass Production Forced by Ocean-Atmosphere Interactions.

机构信息

University du Québec à Montreal, Dépt. of Geography and GEOTOP, Montreal, H2V 1C7, Canada.

ECCOREV, FR 3098, CNRS/Aix-Marseille Université, Europôle Méditerranéen de l'Arbois, BP 80, 13545, Aix-en-Provence cedex 4, France.

出版信息

Sci Rep. 2017 May 26;7(1):2457. doi: 10.1038/s41598-017-02580-9.

Abstract

Across Eastern Canada (EC), taiga forests represent an important carbon reservoir, but the extent to which climate variability affects this ecosystem over decades remains uncertain. Here, we analyze an extensive network of black spruce (Picea mariana Mill.) ring width and wood density measurements and provide new evidence that wood biomass production is influenced by large-scale, internal ocean-atmosphere processes. We show that while black spruce wood biomass production is primarily governed by growing season temperatures, the Atlantic ocean conveys heat from the subtropics and influences the decadal persistence in taiga forests productivity. Indeed, we argue that 20-30 years periodicities in Sea Surface Temperatures (SSTs) as part of the the Atlantic Multi-decadal Oscillation (AMO) directly influence heat transfers to adjacent lands. Winter atmospheric conditions associated with the North Atlantic Oscillation (NAO) might also impact EC's taiga forests, albeit indirectly, through its effect on SSTs and sea ice conditions in surrounding seas. Our work emphasizes that taiga forests would benefit from the combined effects of a warmer atmosphere and stronger ocean-to-land heat transfers, whereas a weakening of these transfers could cancel out, for decades or longer, the positive effects of climate change on Eastern Canada's largest ecosystem.

摘要

在加拿大东部(EC),北方森林代表着一个重要的碳库,但气候多变对这个生态系统数十年来的影响仍不确定。在这里,我们分析了一个广泛的黑云杉(Picea mariana Mill.)年轮宽度和木材密度测量网络,并提供了新的证据表明,木材生物量的产生受到大规模的内部海洋-大气过程的影响。我们表明,虽然黑云杉木材生物量的产生主要受生长季节温度的控制,但大西洋海洋从亚热带输送热量,并影响北方森林生产力的数十年持续性。事实上,我们认为,作为大西洋多年代际振荡(AMO)一部分的海表面温度(SST)的 20-30 年周期直接影响到向相邻陆地的热传递。与北大西洋涛动(NAO)相关的冬季大气条件也可能通过其对周围海域的 SST 和海冰条件的影响,间接地影响 EC 的北方森林。我们的工作强调,北方森林将受益于温暖的大气和更强的海洋向陆地的热传递的综合影响,而这些传递的减弱可能会在几十年或更长时间内抵消气候变化对加拿大东部最大生态系统的积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90b8/5446407/579724aee494/41598_2017_2580_Fig1_HTML.jpg

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