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从过去中学习:过去 9000 年来北极涛动对格陵兰岛西北部海冰和海洋生产力的影响。

Learning from the past: Impact of the Arctic Oscillation on sea ice and marine productivity off northwest Greenland over the last 9,000 years.

机构信息

Department of Earth Sciences, University of New Brunswick, Fredericton, NB, Canada.

Ecosystems and Environment Research Programme (ECRU), and Helsinki Institute of Sustainability Science, Helsinki University, Helsinki, Finland.

出版信息

Glob Chang Biol. 2020 Dec;26(12):6767-6786. doi: 10.1111/gcb.15334. Epub 2020 Oct 13.

Abstract

Climate warming is rapidly reshaping the Arctic cryosphere and ocean conditions, with consequences for sea ice and pelagic productivity patterns affecting the entire marine food web. To predict how ongoing changes will impact Arctic marine ecosystems, concerted effort from various disciplines is required. Here, we contribute multi-decadal reconstructions of changes in diatom production and sea-ice conditions in relation to Holocene climate and ocean conditions off northwest Greenland. Our multiproxy study includes diatoms, sea-ice biomarkers (IP and HBI III) and geochemical tracers (TOC [total organic carbon], TOC:TN [total nitrogen], δ C, δ N) from a sediment core record spanning the last c. 9,000 years. Our results suggest that the balance between the outflow of polar water from the Arctic, and input of Atlantic water from the Irminger Current into the West Greenland Current is a key factor in controlling sea-ice conditions, and both diatom phenology and production in northeastern Baffin Bay. Our proxy record notably shows that changes in sea-surface conditions initially forced by Neoglacial cooling were dynamically amplified by the shift in the dominant phase of the Arctic Oscillation (AO) mode that occurred at c. 3,000 yr BP, and caused drastic changes in community composition and a decline in diatom production at the study site. In the future, with projected dominant-positive AO conditions favored by Arctic warming, increased water column stratification may counteract the positive effect of a longer open-water growth season and negatively impact diatom production.

摘要

气候变暖正在迅速重塑北极的冰冻圈和海洋环境,对海冰和浮游生物生产力模式产生影响,进而影响整个海洋食物网。为了预测正在发生的变化将如何影响北极海洋生态系统,需要各学科的共同努力。在这里,我们提供了与全新世气候和格陵兰西北部海洋条件有关的硅藻生产力和海冰状况的数十年重建。我们的多代研究包括硅藻、海冰生物标志物(IP 和 HBI III)和地球化学示踪剂(TOC[总有机碳]、TOC:TN[总氮]、δ C、δ N),这些数据来自一个跨越过去约 9000 年的沉积岩芯记录。我们的结果表明,北极极地水流出量与伊尔敏格尔海流输入北大西洋水之间的平衡是控制海冰条件的关键因素,也是巴芬湾东北部硅藻物候和生产力的关键因素。我们的代理记录显著表明,最初由新冰期冷却引起的海面条件变化,随着北极涛动(AO)模式主导相位的转变在约 3000 年前发生,被动态放大,导致研究地点的群落组成发生剧烈变化,硅藻生产力下降。在未来,随着北极变暖预计将出现主导正北极涛动条件,水柱分层的增加可能会抵消更长的开阔水面生长期的积极影响,并对硅藻生产力产生负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c837/7756419/e78ce7b9d0ec/GCB-26-6767-g001.jpg

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