State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin, China Institute of Water Resources and Hydropower Research, Beijing 100038, China.
Department of Water Ecology and Environment, China Institute of Water Resources and Hydropower Research, Beijing 100038, China.
Environ Sci Technol. 2023 May 2;57(17):6999-7008. doi: 10.1021/acs.est.2c09448. Epub 2023 Apr 21.
Microplastics (MPs) are an emerging environmental concern. However, vertical transport of MPs remains unclear, particularly in deep reservoirs with thermal stratification (TS). In this study, the vertical variation in MP organization, stability, migration, and the driving factors of the profile in a deep reservoir were comprehensively explored. This is the first observation that TS interfaces in a deep reservoir act as a buffer area to retard MP subsidence, especially at the interface between the epilimnion and the metalimnion. Interestingly, there was a size-selection phenomenon for MP sinking. In particular, the high accumulation of large-sized MPs (LMPs; >300 μm) indicated that LMPs were more susceptible to dramatic changes in water density at the TS interfaces. Furthermore, simultaneous analysis of water parameters and MP surface characteristics showed that the drivers of MP deposition were biological to abiotic transitions during different layers, which were influenced by algae and metals. Specifically, scanning electron microscopy coupled with energy-dispersive X-ray spectroscopy and microscopic Fourier transform infrared analyses implied that the occurrence of metals on the MP surface can promote MP deposition in the hypolimnion. Our findings demonstrated that TS significantly influenced the MP fate in deep reservoirs, and the hotspot of MP exposure risk for vulnerable benthic organisms on the reservoir floor deserves more attention.
微塑料(MPs)是一种新出现的环境关注点。然而,MPs 的垂直迁移仍不清楚,特别是在具有热分层(TS)的深水库中。在这项研究中,综合探讨了深水库中 MP 组织、稳定性、迁移的垂直变化,以及剖面的驱动因素。这是首次观察到深水库中的 TS 界面充当缓冲区,以减缓 MP 的沉降,特别是在表水层和中层之间的界面处。有趣的是,MP 沉降存在尺寸选择现象。特别是,大量尺寸较大的 MPs(LMPs;>300μm)的高度积累表明,LMPs 更容易受到 TS 界面处水密度剧烈变化的影响。此外,同时分析水质参数和 MP 表面特性表明,不同层之间 MP 沉积的驱动因素是生物到非生物的转变,受藻类和金属的影响。具体来说,扫描电子显微镜结合能量色散 X 射线光谱和微观傅里叶变换红外分析表明,MP 表面上金属的存在可以促进其在深水库底部的沉积。我们的研究结果表明,TS 对深水库中 MPs 的命运有重大影响,水库底部对脆弱底栖生物有潜在暴露风险的热点值得更多关注。