Climate Change Impacts on Eastern Boundary Upwelling Systems.

IF 14.3 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Annual Review of Marine Science Pub Date : 2023-01-16 DOI:10.1146/annurev-marine-032122-021945
Steven J Bograd, Michael G Jacox, Elliott L Hazen, Elisa Lovecchio, Ivonne Montes, Mercedes Pozo Buil, Lynne J Shannon, William J Sydeman, Ryan R Rykaczewski
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引用次数: 25

Abstract

The world's eastern boundary upwelling systems (EBUSs) contribute disproportionately to global ocean productivity and provide critical ecosystem services to human society. The impact of climate change on EBUSs and the ecosystems they support is thus a subject of considerable interest. Here, we review hypotheses of climate-driven change in the physics, biogeochemistry, and ecology of EBUSs; describe observed changes over recent decades; and present projected changes over the twenty-first century. Similarities in historical and projected change among EBUSs include a trend toward upwelling intensification in poleward regions, mitigatedwarming in near-coastal regions where upwelling intensifies, and enhanced water-column stratification and a shoaling mixed layer. However, there remains significant uncertainty in how EBUSs will evolve with climate change, particularly in how the sometimes competing changes in upwelling intensity, source-water chemistry, and stratification will affect productivity and ecosystem structure. We summarize the commonalities and differences in historical and projected change in EBUSs and conclude with an assessment of key remaining uncertainties and questions. Future studies will need to address these questions to better understand, project, and adapt to climate-driven changes in EBUSs.

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气候变化对东部边界上升流系统的影响。
世界东部边界上升流系统(EBUSs)对全球海洋生产力做出了不成比例的贡献,并为人类社会提供了关键的生态系统服务。因此,气候变化对ebus及其支持的生态系统的影响是一个相当有趣的主题。在此,我们回顾了气候驱动变化的假设在EBUSs的物理,生物地球化学和生态学;描述近几十年来观测到的变化;以及对21世纪变化的预测。EBUSs的历史变化和预估变化的相似之处包括:极地地区上升流加剧的趋势,近岸地区上升流加剧的变暖减缓,水柱分层和浅滩混合层增强。然而,EBUSs如何随着气候变化而演变,特别是在上升流强度、水源化学和分层等有时相互竞争的变化如何影响生产力和生态系统结构方面,仍然存在很大的不确定性。我们总结了EBUSs的历史变化和预测变化的共性和差异,并对剩余的关键不确定性和问题进行了评估。未来的研究需要解决这些问题,以便更好地理解、预测和适应ebus中气候驱动的变化。
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来源期刊
Annual Review of Marine Science
Annual Review of Marine Science 地学-地球化学与地球物理
CiteScore
33.60
自引率
0.60%
发文量
40
期刊介绍: The Annual Review of Marine Science, published since 2009, offers a comprehensive overview of the field. It covers various disciplines, including coastal and blue water oceanography (biological, chemical, geological, and physical), ecology, conservation, and technological advancements related to the marine environment. The journal's transition from gated to open access through Annual Reviews' Subscribe to Open program ensures that all articles are available under a CC BY license, promoting wider accessibility and dissemination of knowledge.
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