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海洋中微塑料的排放。

Ocean emission of microplastic.

作者信息

Shaw Daniel B, Li Qi, Nunes Janine K, Deike Luc

机构信息

Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA.

School of Civil and Environmental Engineering, Cornell University, Ithaca, NY 14853, USA.

出版信息

PNAS Nexus. 2023 Oct 3;2(10):pgad296. doi: 10.1093/pnasnexus/pgad296. eCollection 2023 Oct.

Abstract

Microplastics are globally ubiquitous in marine environments, and their concentration is expected to continue rising at significant rates as a result of human activity. They present a major ecological problem with well-documented environmental harm. Sea spray from bubble bursting can transport salt and biological material from the ocean into the atmosphere, and there is a need to quantify the amount of microplastic that can be emitted from the ocean by this mechanism. We present a mechanistic study of bursting bubbles transporting microplastics. We demonstrate and quantify that jet drops are efficient at emitting microplastics up to in diameter and are thus expected to dominate the emitted mass of microplastic. The results are integrated to provide a global microplastic emission model which depends on bubble scavenging and bursting physics; local wind and sea state; and oceanic microplastic concentration. We test multiple possible microplastic concentration maps to find annual emissions ranging from 0.02 to 7.4-with a best guess of 0.1-mega metric tons per year and demonstrate that while we significantly reduce the uncertainty associated with the bursting physics, the limited knowledge and measurements on the mass concentration and size distribution of microplastic at the ocean surface leaves large uncertainties on the amount of microplastic ejected.

摘要

微塑料在全球海洋环境中普遍存在,由于人类活动,其浓度预计将继续以显著速度上升。它们带来了一个重大的生态问题,对环境的危害已有充分记录。气泡破裂产生的海沫可将海洋中的盐分和生物物质输送到大气中,因此有必要量化通过这种机制从海洋中排放的微塑料数量。我们对破裂气泡输送微塑料进行了一项机理研究。我们证明并量化了射流液滴在排放直径达[具体数值未给出]的微塑料方面效率很高,因此预计其将主导微塑料的排放质量。研究结果被整合以提供一个全球微塑料排放模型,该模型取决于气泡清除和破裂物理过程、当地风和海况以及海洋微塑料浓度。我们测试了多种可能的微塑料浓度图,发现年排放量在0.02至7.4之间——最佳估计为每年0.1百万吨,并表明虽然我们显著降低了与破裂物理过程相关的不确定性,但对海洋表面微塑料质量浓度和尺寸分布的有限了解与测量使得微塑料排放数量仍存在很大不确定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b46/10547021/4cf18efd6444/pgad296f1.jpg

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