Still Arctic?—The changing Barents Sea

IF 4.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Sebastian Gerland, Randi B. Ingvaldsen, Marit Reigstad, Arild Sundfjord, Bjarte Bogstad, Melissa Chierici, Haakon Hop, Paul E. Renaud, Lars Henrik Smedsrud, Leif Christian Stige, Marius Årthun, Jørgen Berge, Bodil A. Bluhm, Katrine Borgå, Gunnar Bratbak, Dmitry V. Divine, Tor Eldevik, Elena Eriksen, Ilker Fer, Agneta Fransson, Rolf Gradinger, Mats A. Granskog, Tore Haug, Katrine Husum, Geir Johnsen, Marius O. Jonassen, Lis Lindal Jørgensen, Svein Kristiansen, Aud Larsen, Vidar S. Lien, Sigrid Lind, Ulf Lindstrøm, Cecilie Mauritzen, Arne Melsom, Sebastian H. Mernild, Malte Müller, Frank Nilsen, Raul Primicerio, Janne E. Søreide, Gro I. van der Meeren, Paul Wassmann
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引用次数: 0

Abstract

The Barents Sea is one of the Polar regions where current climate and ecosystem change is most pronounced. Here we review the current state of knowledge of the physical, chemical and biological systems in the Barents Sea. Physical conditions in this area are characterized by large seasonal contrasts between partial sea-ice cover in winter and spring versus predominantly open water in summer and autumn. Observations over recent decades show that surface air and ocean temperatures have increased, sea-ice extent has decreased, ocean stratification has weakened, and water chemistry and ecosystem components have changed, the latter in a direction often described as “Atlantification” or “borealisation,” with a less “Arctic” appearance. Temporal and spatial changes in the Barents Sea have a wider relevance, both in the context of large-scale climatic (air, water mass and sea-ice) transport processes and in comparison to other Arctic regions. These observed changes also have socioeconomic consequences, including for fisheries and other human activities. While several of the ongoing changes are monitored and quantified, observation and knowledge gaps remain, especially for winter months when field observations and sample collections are still sparse. Knowledge of the interplay of physical and biogeochemical drivers and ecosystem responses, including complex feedback processes, needs further development.
还在北极吗?-不断变化的巴伦支海
巴伦支海是目前气候和生态系统变化最明显的极地地区之一。在这里,我们回顾了巴伦支海的物理、化学和生物系统的知识现状。该地区的物理条件的特点是冬季和春季部分海冰覆盖与夏季和秋季主要是开放水域之间存在较大的季节性差异。近几十年来的观测表明,地表空气和海洋温度上升,海冰面积减少,海洋分层减弱,水化学和生态系统成分发生了变化,后者的变化方向通常被描述为“大西洋化”或“北方化”,“北极”现象减少。巴伦支海的时空变化具有更广泛的相关性,无论是在大尺度气候(空气、水团和海冰)运输过程的背景下,还是与其他北极地区相比。这些观察到的变化还具有社会经济后果,包括对渔业和其他人类活动的影响。虽然对一些正在发生的变化进行了监测和量化,但观测和知识差距仍然存在,特别是在冬季月份,实地观测和样本收集仍然很少。物理和生物地球化学驱动因素与生态系统反应的相互作用,包括复杂的反馈过程,需要进一步发展。
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来源期刊
Elementa-Science of the Anthropocene
Elementa-Science of the Anthropocene Earth and Planetary Sciences-Atmospheric Science
CiteScore
6.90
自引率
5.10%
发文量
65
审稿时长
16 weeks
期刊介绍: A new open-access scientific journal, Elementa: Science of the Anthropocene publishes original research reporting on new knowledge of the Earth’s physical, chemical, and biological systems; interactions between human and natural systems; and steps that can be taken to mitigate and adapt to global change. Elementa reports on fundamental advancements in research organized initially into six knowledge domains, embracing the concept that basic knowledge can foster sustainable solutions for society. Elementa is published on an open-access, public-good basis—available freely and immediately to the world.
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