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纳米气泡对受海水入侵影响的海岸微塑料迁移的影响。

Effect of nanobubbles on the mobilization of microplastics in shorelines subject to seawater infiltration.

机构信息

Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, H3G 1M8, Canada.

Fisheries and Oceans Canada, Ecosystem Science, Ottawa, K1A 0E6, Canada.

出版信息

Environ Pollut. 2024 May 15;349:123950. doi: 10.1016/j.envpol.2024.123950. Epub 2024 Apr 9.

Abstract

The widespread presence of microplastics (MPs) in the ocean has varying degrees of impact on ecosystems and even human health. Coastal tidal zones are crucial in controlling the movement of MPs, which are influenced by waves and tidal forces. Meanwhile, natural nanobubbles (NBs) in the ocean can affect the hydrodynamic properties of the tidal zone. The mobilization of MPs in coastal tidal zones under the effect of NBs has been less studied. In this study, we explored natural NBs' influence on the mobilization of MPs in shorelines subject to seawater infiltration. Using glass beads as a substrate, a coastal porous environment was constructed through column experiments, and the pump-controlled water flow was used to study the transport of MPs subject to seawater movement within the substrate. The infiltration of MPs under continuous and transient conditions, as well as the upward transport induced by flood tide, were considered. The role of salinity in the interactions between NBs, MPs, and substrates was evaluated. Salinity altered the energy barriers between particles, which in turn affected the movement of MPs within the substrate. In addition, hydrophilic MPs were more likely to infiltrate within the substrate and had different movement patterns under continuous and transient flow conditions. The motion of the MPs within the substrate varied with flow rate, and NBs limited the vertical movement of MPs in the tidal zone. It was also observed that NBs adsorbed readily onto substrates, altering the surface properties of substrates, particularly their ability to attach and detach from other substances.

摘要

微塑料(MPs)在海洋中的广泛存在对生态系统甚至人类健康都有不同程度的影响。沿海潮汐带在控制 MPs 的运动方面起着至关重要的作用,这些运动受到波浪和潮汐力的影响。同时,海洋中的天然纳米气泡(NBs)会影响潮汐带的水动力特性。NBs 对沿海潮汐带中 MPs 的动员作用研究较少。在这项研究中,我们探讨了天然 NBs 对受海水渗透影响的海岸线中 MPs 动员作用的影响。我们使用玻璃珠作为基质,通过柱实验构建了一个沿海多孔环境,并采用泵控水流研究了基质内海水运动下 MPs 的传输。考虑了 MPs 在连续和瞬时条件下的渗透以及涨潮引起的向上传输。评估了盐度在 NBs、MPs 和基质之间相互作用中的作用。盐度改变了颗粒之间的能量障碍,从而影响了 MPs 在基质内的运动。此外,亲水 MPs 更有可能渗透到基质内,并且在连续和瞬时流动条件下具有不同的运动模式。MPs 在基质内的运动随流速而变化,NBs 限制了潮汐带中 MPs 的垂直运动。还观察到 NBs 容易吸附到基质上,改变了基质的表面特性,特别是它们与其他物质附着和脱离的能力。

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