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潮汐主导的沿海栖息地景观(包括海草床、盐沼、岩石底部和软沉积物)中宏观塑料动态的比较。

Comparison of macroplastics dynamic across a tidal-dominated coastal habitat seascape including seagrasses, salt marshes, rocky bottoms and soft sediments.

作者信息

Egea Luis G, Cavijoli-Bosch Javier, Casal-Porras Isabel, Yamuza-Magdaleno Alba, Brun Fernando G, Jiménez-Ramos Rocío

机构信息

Instituto Universitario de Investigación Marina (INMAR), Campus de Excelencia Internacional del Mar (CEI·MAR), Departamento de Biología, Facultad de Ciencias del Mar y Ambientales, Universidad de Cádiz, Campus Universitario de Puerto Real, 11510 Puerto Real, Cádiz, Spain.

Instituto Universitario de Investigación Marina (INMAR), Campus de Excelencia Internacional del Mar (CEI·MAR), Departamento de Biología, Facultad de Ciencias del Mar y Ambientales, Universidad de Cádiz, Campus Universitario de Puerto Real, 11510 Puerto Real, Cádiz, Spain.

出版信息

Mar Pollut Bull. 2023 Nov;196:115590. doi: 10.1016/j.marpolbul.2023.115590. Epub 2023 Sep 28.

DOI:10.1016/j.marpolbul.2023.115590
PMID:37776740
Abstract

Coastal environments are usually composed by heterogeneous coastal-seascape, which can modify macroplastics accumulation dynamic. We evaluated seasonally the litter trapped on tidal-dominated habitats including two seagrass species, salt marsh, sandy beach, bare sediment and rocky bottom. Vegetated habitats showed the highest plastic accumulation in autumn-winter seasons, especially in medium-lower tidal-elevation zones. Seagrasses accumulated most of the degraded macroplastics, whereas averaged smaller sizes of litter were found in the salt marsh. The trapping ability of macrophytes was related to aboveground-biomass properties (i.e., height, width or flexibility) rather than shoot-density. Sandy beaches exhibited the highest plastics accumulation matching with the touristic-peak in the area, whereas rocky bottom was an important sink for macroplastics. This study provides authorities with comprehensible information to address the marine plastic litter problem taking into account the habitat-connectivity, the litter trap-ability of macrophytes and the tidal-elevation influence in order to improve future actions to deal with plastic pollution.

摘要

沿海环境通常由异质的海岸景观组成,这会改变大型塑料垃圾的积累动态。我们季节性地评估了在潮汐主导的栖息地捕获的垃圾,这些栖息地包括两种海草、盐沼、沙滩、裸露沉积物和岩石底部。植被丰富的栖息地在秋冬季节显示出最高的塑料垃圾积累量,特别是在中低潮位区域。海草积累了大部分降解的大型塑料垃圾,而在盐沼中发现的垃圾平均尺寸较小。大型植物的捕获能力与地上生物量特性(即高度、宽度或柔韧性)有关,而不是与枝条密度有关。沙滩的塑料垃圾积累量最高,与该地区的旅游高峰期相匹配,而岩石底部是大型塑料垃圾的一个重要汇。这项研究为当局提供了全面的信息,以便在考虑栖息地连通性、大型植物的垃圾捕获能力和潮位影响的情况下解决海洋塑料垃圾问题,从而改进未来应对塑料污染的行动。

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