海洋-大气环境中的微塑料和纳米塑料

Deonie Allen, Steve Allen, Sajjad Abbasi, Alex Baker, Melanie Bergmann, Janice Brahney, Tim Butler, Robert A. Duce, Sabine Eckhardt, Nikolaos Evangeliou, Tim Jickells, Maria Kanakidou, Peter Kershaw, Paolo Laj, Joseph Levermore, Daoji Li, Peter Liss, Kai Liu, Natalie Mahowald, Pere Masque, Dušan Materić, Andrew G. Mayes, Paul McGinnity, Iolanda Osvath, Kimberly A. Prather, Joseph M. Prospero, Laura E. Revell, Sylvia G. Sander, Won Joon Shim, Jonathan Slade, Ariel Stein, Oksana Tarasova, Stephanie Wright
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引用次数: 60

摘要

大气中微(纳米)塑料迁移和海洋-大气交换的发现表明,海洋塑料循环非常复杂,对人类和生态系统健康具有负面影响。然而,目前的观测数据还很有限。在本《视角》中,我们对海洋-大气微(纳米)塑料循环的过程和通量进行了量化,旨在强调大气微(纳米)塑料传输中尚存的未知因素。每年可能有 0.013 到 2,500 万公吨的微(纳米)塑料在海洋大气中迁移并沉积到海洋中。然而,这些海洋-大气通量的高度不确定性与数据限制和缺乏可比性研究有关。为了解决海洋-大气微(纳)塑料循环中的不确定性和剩余的知识空白,我们提出了未来全球海洋-大气微(纳)塑料观测战略,其中包括新的取样方法和创建一个可比较的、统一的全球数据集。该战略与长期观测和深入调查相结合,将有助于确定海洋-大气污染的趋势,以及对未来政策和管理行动的反应。微塑料的大气迁移可能是海洋塑料污染的主要来源,但目前的观测数据仍然有限。本视角量化了海洋-大气微(纳)塑料循环的已知预算,并提出了未来的全球观测战略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Microplastics and nanoplastics in the marine-atmosphere environment

Microplastics and nanoplastics in the marine-atmosphere environment
The discovery of atmospheric micro(nano)plastic transport and ocean–atmosphere exchange points to a highly complex marine plastic cycle, with negative implications for human and ecosystem health. Yet, observations are currently limited. In this Perspective, we quantify the processes and fluxes of the marine-atmospheric micro(nano)plastic cycle, with the aim of highlighting the remaining unknowns in atmospheric micro(nano)plastic transport. Between 0.013 and 25 million metric tons per year of micro(nano)plastics are potentially being transported within the marine atmosphere and deposited in the oceans. However, the high uncertainty in these marine-atmospheric fluxes is related to data limitations and a lack of study intercomparability. To address the uncertainties and remaining knowledge gaps in the marine-atmospheric micro(nano)plastic cycle, we propose a future global marine-atmospheric micro(nano)plastic observation strategy, incorporating novel sampling methods and the creation of a comparable, harmonized and global data set. Together with long-term observations and intensive investigations, this strategy will help to define the trends in marine-atmospheric pollution and any responses to future policy and management actions. Atmospheric transport of microplastics could be a major source of plastic pollution to the ocean, yet observations currently remain limited. This Perspective quantifies the known budgets of the marine-atmospheric micro(nano)plastic cycle and proposes a future global observation strategy.
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