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从源头到汇区:第2部分——法国南部罗纳河排入地中海西北部海域的微塑料的季节性扩散

From source to sink: part 2-seasonal dispersion of microplastics discharged in the NW Mediterranean Sea by the Rhone River in southern France.

作者信息

Weiss Lisa, Estournel Claude, Marsaleix Patrick, Mikolajczak Guillaume, Constant Mel, Ghiglione Jean-François, Ludwig Wolfgang

机构信息

Université Toulouse, IRD, CNRS, CNES, UPS, Laboratoire d'Etudes en Géophysique et Océanographie Spatiales (LEGOS), Toulouse, 31400, France.

Université de Perpignan Via Domitia, CNRS, Centre de Formation et de Recherche sur les Environnements Méditerranéens (CEFREM), Perpignan, 66000, France.

出版信息

Environ Sci Pollut Res Int. 2025 Apr;32(16):10105-10121. doi: 10.1007/s11356-024-35364-6. Epub 2024 Oct 30.

Abstract

As the largest individual contributor of freshwater inflow to the basin, the Rhone River is likely to be one of the main sources of microplastics (MPs) to the Mediterranean Sea. In order to predict the fate of MPs discharged by the Rhone River, an innovative 3D Lagrangian dispersion of its particles associated with vertical velocities was modeled in Mediterranean ocean currents. Through winter and summer scenarios, the seasonal variability of transfers and the corresponding accumulation areas were depicted in the Northwestern Basin according to hydrodynamic conditions on the continental shelf of the Gulf of Lion and to the frontal dynamics from the Pyrenees to the North Balearic fronts. Our results indicated that MP transfers were driven by mesoscale and sub-mesoscale structures, resulting in steep concentration gradients across fronts during summer, while winter energetic mixing favored a more efficient and homogeneous spreading. After a year of drift, high MP retention (up to 50%) occurred in the coastal zone of the Gulf of Lion near the river mouth, with a large contribution of sinking MPs and an increase in stranding during the highest freshwater inflows of the winter season. Conversely, up to 60% of the floating MPs were exported to the Algerian Basin and then to the Eastern Mediterranean. This west-to-east transfer led to significant stranding on the islands, prevailing on the northern coasts of the Balearic Islands in winter (6% of floating inputs) and on the western coasts of Corsica and Sardinia in summer (13%). The southern Mediterranean coasts, from Algeria to Tunisia, represented also a major sink for floating debris with stranding ranging from 9 to 35% of MPs discharged in winter and in summer, respectively. We estimated that 3.5 to 5 t of the Rhone MPs remained in the surface layer at the end of the year, with high concentrations in the Ionian Sea.

摘要

作为该流域淡水流入的最大单一贡献者,罗纳河很可能是地中海微塑料(MPs)的主要来源之一。为了预测罗纳河排放的微塑料的归宿,在地中海海流中对其与垂直速度相关的颗粒进行了创新的三维拉格朗日扩散模拟。通过冬季和夏季情景,根据利翁湾大陆架的水动力条件以及从比利牛斯山脉到北巴利阿里海锋的锋面动力学,描绘了西北盆地转移的季节变化和相应的堆积区域。我们的结果表明,微塑料的转移是由中尺度和亚中尺度结构驱动的,导致夏季各锋面间浓度梯度陡峭,而冬季的高能混合有利于更高效和均匀的扩散。经过一年的漂移,在河口附近的利翁湾海岸带出现了高微塑料滞留率(高达50%),下沉的微塑料贡献很大,并且在冬季淡水流入量最高时搁浅量增加。相反,高达60%的漂浮微塑料被输送到阿尔及利亚盆地,然后进入东地中海。这种从西向东的转移导致在岛屿上大量搁浅,冬季在巴利阿里群岛北部海岸占主导(占漂浮输入量的6%),夏季在科西嘉岛和撒丁岛西海岸占主导(13%)。从阿尔及利亚到突尼斯的地中海南部海岸也是漂浮垃圾的主要归宿地,冬季和夏季搁浅的微塑料分别占排放总量的9%至35%。我们估计,到年底,罗纳河的微塑料有3.5至5吨留在表层,在爱奥尼亚海浓度很高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1be/11996993/95e67aeef429/11356_2024_35364_Fig1_HTML.jpg

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