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意大利北部波河排放的微塑料颗粒在沿海地区的积累:遥感和水动力模型与现场样本采集的比较。

Coastal accumulation of microplastic particles emitted from the Po River, Northern Italy: Comparing remote sensing and hydrodynamic modelling with in situ sample collections.

机构信息

RSS Remote Sensing Solutions GmbH, Isarstr. 3, 82065 Baierbrunn, Germany; Ludwig-Maximilians-Universität Munich, GeoBio-Center, Großhadernerstr. 2, 82152 Martinsried, Planegg, Germany.

Consiglio Nazionale delle Ricerche - Istituto di Scienze Marine (CNR-ISMAR), Arsenale-Tesa 104, Castello 2737/F, 30122 Venezia, Italy.

出版信息

Mar Pollut Bull. 2019 Jan;138:561-574. doi: 10.1016/j.marpolbul.2018.11.045. Epub 2019 Jan 8.

Abstract

Microplastic research has mainly concentrated on open seas, while riverine plumes remain largely unexplored despite their hypothesized importance as a microplastic source to coastal waters. This work aimed to model coastal accumulation of microplastic particles (1-5 mm) emitted by the Po River over 1.5 years. We posit that river-induced microplastic accumulation on adjacent coasts can be predicted using (1) hydrodynamic-based and (2) remote sensing-based modelling. Model accumulation maps were validated against sampling at nine beaches, with sediment microplastic concentrations up to 78 particles/kg (dry weight). Hydrodynamic modelling revealed that discharged particle amount is only semi-coupled to beaching rates, which are strongly mouth dependent and occur within the first ten days. Remote sensing modelling was found to better capture river mouth relative strength, and accumulation patterns were found consistent with hydrodynamic modelling. This methodology lays groundwork for developing an operational monitoring system to assess microplastic pollution emitted by a major river.

摘要

微塑料研究主要集中在开阔海域,而尽管河流羽流被假设为向沿海水域输送微塑料的重要来源,但对其的研究仍很大程度上尚未得到探索。本研究旨在模拟 1.5 年内波河排放的微塑料颗粒(1-5 毫米)在沿海地区的积累。我们假设可以使用(1)基于水动力的和(2)基于遥感的建模来预测河流诱发的邻近海岸的微塑料积累。模型积累图通过在九个海滩的采样进行了验证,沉积物中的微塑料浓度高达 78 个颗粒/千克(干重)。水动力建模表明,排放颗粒的数量与海滩率仅部分相关,海滩率强烈依赖于河口,并且在最初的十天内发生。遥感建模被发现可以更好地捕捉河口的相对强度,并且积累模式与水动力建模一致。该方法为开发一种用于评估主要河流排放的微塑料污染的运行监测系统奠定了基础。

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