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在冰冻圈不断萎缩的压力下,北极陆地和海洋碳循环的综合情况。

A synthesis of the arctic terrestrial and marine carbon cycles under pressure from a dwindling cryosphere.

作者信息

Parmentier Frans-Jan W, Christensen Torben R, Rysgaard Søren, Bendtsen Jørgen, Glud Ronnie N, Else Brent, van Huissteden Jacobus, Sachs Torsten, Vonk Jorien E, Sejr Mikael K

机构信息

Norwegian Institute of Bioeconomy Research, Høyskoleveien 7, 1430, Ås, Norway.

Department of Physical Geography and Ecosystem Science, Lund University, Sölvegatan 12, 223 62, Lund, Sweden.

出版信息

Ambio. 2017 Feb;46(Suppl 1):53-69. doi: 10.1007/s13280-016-0872-8.

Abstract

The current downturn of the arctic cryosphere, such as the strong loss of sea ice, melting of ice sheets and glaciers, and permafrost thaw, affects the marine and terrestrial carbon cycles in numerous interconnected ways. Nonetheless, processes in the ocean and on land have been too often considered in isolation while it has become increasingly clear that the two environments are strongly connected: Sea ice decline is one of the main causes of the rapid warming of the Arctic, and the flow of carbon from rivers into the Arctic Ocean affects marine processes and the air-sea exchange of CO. This review, therefore, provides an overview of the current state of knowledge of the arctic terrestrial and marine carbon cycle, connections in between, and how this complex system is affected by climate change and a declining cryosphere. Ultimately, better knowledge of biogeochemical processes combined with improved model representations of ocean-land interactions are essential to accurately predict the development of arctic ecosystems and associated climate feedbacks.

摘要

当前北极冰冻圈的衰退,如海冰的大量流失、冰盖和冰川的融化以及永久冻土的解冻,以多种相互关联的方式影响着海洋和陆地碳循环。然而,海洋和陆地中的过程常常被孤立地考虑,而越来越明显的是,这两个环境紧密相连:海冰减少是北极快速变暖的主要原因之一,河流中的碳流入北冰洋会影响海洋过程以及海气间的二氧化碳交换。因此,本综述概述了北极陆地和海洋碳循环的当前知识状态、它们之间的联系,以及这个复杂系统如何受到气候变化和冰冻圈衰退的影响。最终,更好地了解生物地球化学过程并改进海洋 - 陆地相互作用的模型表示对于准确预测北极生态系统的发展及相关气候反馈至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19ae/5258664/2cf283381f7f/13280_2016_872_Fig1_HTML.jpg

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