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长江口水柱中微塑料分布的动态特征:潮汐效应的复杂影响。

Dynamic signatures of microplastic distribution across the water column of Yangtze River Estuary: Complicated implication of tidal effects.

机构信息

State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China; Plastic Marine Debris Research Center, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China; Regional Training and Research Center on Plastic Marine Debris and Microplastics, IOC-UNESCO, 500 Dongchuan Road, Shanghai, 200241, China; Institute of Plastic Recycling and Innovation, 500 Dongchuan Road, Shanghai, 200241, China.

State Key Laboratory of Estuarine and Coastal Research, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China.

出版信息

Mar Environ Res. 2023 Jun;188:106005. doi: 10.1016/j.marenvres.2023.106005. Epub 2023 May 3.

Abstract

Riverine microplastic (MP) discharge into the ocean contributes greatly to global MP contamination, yet our understanding of this process remains primitive. To deepen our interpretation of the dynamic MP variation throughout the estuarine water columns, we sampled at Xuliujing, the saltwater intrusion node of the Yangtze River Estuary, over the course of ebb and flood tides in four seasons (July and October 2017, January and May 2018 respectively). We observed that the collision of downstream and upstream currents contributed to the high MP concentration and that the mean MP abundance fluctuated with the tide. A model of microplastics residual net flux (MPRF-MODEL), taking the seasonal abundance and vertical distribution of MP along with current velocity into consideration, was developed to predict the net flux of MP throughout the full water columns. 2154 ± 359.7 t/year of MP was estimated to flow into the East China Sea via the River in 2017-2018. Our study suggests that riverine MP flux can be overestimated due to reciprocating current carried MP from the estuary. Using the tidal and seasonal variation in MP distribution, we calculated the tide impact factor index (TIFI) for the Yangtze River Estuary to be between 38.11% and 58.05%. In summary, this study provides a baseline of MP flux research in the Yangtze River for similar tidal-controlled rivers and a contextual understanding of how to appropriately sample and accurately estimate in a dynamic estuary system. The redistribution of microplastics may be impacted by complex tide processes. Although not observed in this study, it may merit investigation.

摘要

河流微塑料(MP)排入海洋对全球 MP 污染的贡献很大,但我们对这一过程的理解仍然很原始。为了更深入地了解长江河口盐水入侵节点胥口水域整个河口水柱中 MP 的动态变化,我们在四个季节(2017 年 7 月和 10 月、2018 年 1 月和 5 月)的涨潮和落潮期间进行了采样。我们观察到下游和上游水流的碰撞导致了 MP 浓度高,并且 MP 的平均丰度随潮流而波动。我们开发了一个微塑料残留净通量模型(MPRF-MODEL),该模型考虑了 MP 的季节性丰度和垂直分布以及流速,用于预测整个水柱中的 MP 净通量。2017-2018 年,估计有 2154±359.7 吨/年的 MP 通过河流流入东海。我们的研究表明,由于往复流将 MP 从河口带回到河中,因此可能会高估河流 MP 通量。我们利用 MP 分布的潮汐和季节性变化,计算了长江河口的潮汐影响因子指数(TIFI),范围在 38.11%至 58.05%之间。总之,本研究为类似潮汐控制的河流提供了长江 MP 通量研究的基线,并为如何在动态河口系统中进行适当采样和准确估计提供了背景理解。微塑料的再分配可能会受到复杂的潮汐过程的影响。尽管本研究中未观察到,但可能值得进一步研究。

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