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对海洋塑料凝胶通过气泡破裂将微塑料从水中转移到大气中的作用的新认识。

New insights into the role of marine plastic-gels in microplastic transfer from water to the atmosphere via bubble bursting.

机构信息

Institute of Marine Environment and Ecology, National Taiwan Ocean University, Keelung City 202301, Taiwan; Center of Excellence for the Oceans, National Taiwan Ocean University, Keelung City 202301, Taiwan.

Department of Microbiology, Immunology and Biopharmaceuticals, National Chiayi University, Chiayi City 60004, Taiwan.

出版信息

Water Res. 2022 Aug 15;222:118856. doi: 10.1016/j.watres.2022.118856. Epub 2022 Jul 12.

Abstract

The pervasiveness of microplastics (MPs) in global oceans is raising concerns about their adverse impacts on ecosystems. The mechanistic understanding of MP transport is critical for evaluating its fate, flux, and ecological risks specifically. Currently, bubble bursting is believed to represent an important route for MP transfer from sea surfaces to the atmosphere. However, the detailed mechanisms of the complex physico-chemical interactions between MPs, water composition, and gel particles in the air-sea interface remain unknown. Our results suggested three steps for MP transfer between air-sea phases: (1) MPs incorporating into gel aggregates in the water column; (2) further accumulation of plastic-gel aggregate in the surface layer phase; finally (3) ejection of aggregates from the sea when bubbles of trapped air rise to the surface and burst. The water composition (e.g., high salinity, gel concentration and viscosity) can modulate plastic-gel aggregation and subsequent transport from water to the atmosphere. The possible mechanism may be closely tied to the formation of plastic-gel via cation-linking bridges, thereby enhancing plastic-gel ejection into air. Collectively, this work offers unique insights into the role of marine plastic-gels in determining MP fate and transport, especially at air-sea interfaces. The data also provide a better understanding of the corresponding mechanism that may explain the fates of missing plastics in the ocean.

摘要

微塑料(MPs)在全球海洋中的普遍存在引起了人们对其对生态系统的不利影响的关注。了解 MPs 迁移的机制对于评估其命运、通量和生态风险至关重要。目前,人们认为气泡破裂是 MPs 从海表面转移到大气中的重要途径。然而,MPs、水成分和空气-海界面中凝胶颗粒之间复杂物理化学相互作用的详细机制尚不清楚。我们的研究结果表明 MPs 在气-海相间转移的三个步骤:(1)MPs 纳入水柱中的凝胶聚集体;(2)在表层相中进一步积累塑料-凝胶聚集体;最后(3)当被困空气的气泡上升到表面并破裂时,从海水中喷出聚集体。水成分(例如高盐度、凝胶浓度和粘度)可以调节塑料-凝胶的聚集以及随后从水到大气的迁移。可能的机制可能与通过阳离子键合桥形成塑料-凝胶密切相关,从而增强了塑料-凝胶向空气中的喷射。总的来说,这项工作提供了关于海洋塑料-凝胶在决定 MP 命运和迁移中的作用的独特见解,特别是在空气-海界面。该数据还更好地了解了可能解释海洋中缺失塑料命运的相应机制。

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