An aerosol odyssey: Navigating nutrient flux changes to marine ecosystems

IF 4.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Douglas S. Hamilton, Alex R. Baker, Yoko Iwamoto, Santiago Gassó, Elisa Bergas-Masso, Sarah Deutch, Julie Dinasquet, Yoshiko Kondo, Joan Llort, Stelios Myriokefalitakis, Morgane M. G. Perron, Alex Wegmann, Joo-Eun Yoon
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引用次数: 2

Abstract

This perspective piece on aerosol deposition to marine ecosystems and the related impacts on biogeochemical cycles forms part of a larger Surface Ocean Lower Atmosphere Study status-of-the-science special edition. A large body of recent reviews has comprehensively covered different aspects of this topic. Here, we aim to take a fresh approach by reviewing recent research to identify potential foundations for future study. We have purposefully chosen to discuss aerosol nutrient and pollutant fluxes both in terms of the journey that different aerosol particles take and that of the surrounding scientific field exploring them. To do so, we explore some of the major tools, knowledge, and partnerships we believe are required to aid advancing this highly interdisciplinary field of research. We recognize that significant gaps persist in our understanding of how far aerosol deposition modulates marine biogeochemical cycles and thus climate. This uncertainty increases as socioeconomic pressures, climate change, and technological advancements continue to change how we live and interact with the marine environment. Despite this, recent advances in modeling techniques, satellite remote sensing, and field observations have provided valuable insights into the spatial and temporal variability of aerosol deposition across the world’s ocean. With the UN Ocean Decade and sustainable development goals in sight, it becomes essential that the community prioritizes the use of a wide variety of tools, knowledge, and partnerships to advance understanding. It is through a collaborative and sustained effort that we hope the community can address the gaps in our understanding of the complex interactions between aerosol particles, marine ecosystems, and biogeochemical cycles.
气溶胶奥德赛:导航海洋生态系统的营养通量变化
这篇关于气溶胶沉积对海洋生态系统的影响以及对生物地球化学循环的相关影响的观点文章是《表层海洋低层大气研究》科学现状特别版的一部分。最近的大量评论全面地涵盖了这个主题的不同方面。在这里,我们的目标是采取一种新的方法,通过回顾最近的研究来确定未来研究的潜在基础。我们有目的地选择从不同气溶胶颗粒的旅程和周围科学领域探索它们的旅程两方面来讨论气溶胶营养物质和污染物的通量。为此,我们探索了一些我们认为需要的主要工具、知识和伙伴关系,以帮助推进这一高度跨学科的研究领域。我们认识到,在气溶胶沉积调节海洋生物地球化学循环和气候的程度方面,我们的理解仍然存在重大差距。随着社会经济压力、气候变化和技术进步不断改变我们的生活方式以及与海洋环境的互动方式,这种不确定性也在增加。尽管如此,最近在模拟技术、卫星遥感和实地观测方面取得的进展,为了解全球海洋气溶胶沉积的时空变化提供了有价值的见解。随着联合国海洋十年和可持续发展目标的临近,国际社会必须优先利用各种工具、知识和伙伴关系来增进理解。通过合作和持续的努力,我们希望科学界能够解决我们对气溶胶颗粒、海洋生态系统和生物地球化学循环之间复杂相互作用的理解上的空白。
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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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