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北大西洋深海和冷水珊瑚柳珊瑚中的微塑料和纤维素微颗粒。

Microplastics and cellulosic microparticles in North Atlantic deep waters and in the cold-water coral Lophelia pertusa.

机构信息

School of Biological, Earth and Environmental Sciences/iCRAG, University College Cork, Ireland; Environmental Research Institute, Cork, Ireland.

School of Biological, Earth and Environmental Sciences/iCRAG, University College Cork, Ireland; Environmental Research Institute, Cork, Ireland.

出版信息

Mar Pollut Bull. 2024 Sep;206:116741. doi: 10.1016/j.marpolbul.2024.116741. Epub 2024 Jul 31.

Abstract

This study explores microplastic and cellulosic microparticle occurrences in the NE Atlantic, focusing on the Porcupine Bank Canyon and Porcupine Seabight. Water samples from depths ranging between 605 and 2126 m and Lophelia pertusa coral samples from 950 m depth were analysed. Microparticles were detected in deep-water habitats, with concentrations varying from 2.33 to 9.67 particles L in the Porcupine Bank Canyon, notably lower at greater depths. This challenges the assumption of deeper habitats solely acting as microplastic sinks. We also found evidence of microparticle adsorption and ingestion by L. pertusa. The presence of microparticles in cold-water corals underscores their vulnerability to pollutants. Furthermore, the dominance of rayon microparticles in both water and coral samples raises questions about marine pollution sources, potentially linked to terrestrial origins. This research emphasises the critical need for comprehensive exploration and conservation efforts in deep-sea environments, especially to protect vital ecosystems like L. pertusa reefs.

摘要

本研究探讨了东北大西洋微塑料和纤维素微颗粒的存在情况,重点关注了刺山柑银行峡谷和刺山柑海盆。分析了水深在 605 至 2126 米之间的水样和水深 950 米处的柳珊瑚样本。在深海生境中检测到了微颗粒,刺山柑银行峡谷中的浓度范围为 2.33 至 9.67 个颗粒/升,在更深的水域浓度显著降低。这一发现挑战了仅将深海生境视为微塑料汇的假设。我们还发现了柳珊瑚吸附和摄取微颗粒的证据。微塑料在冷水珊瑚中的存在突显了它们对污染物的脆弱性。此外,水和珊瑚样本中纤维素微颗粒的主导地位引发了对海洋污染来源的质疑,这些来源可能与陆地有关。本研究强调了对深海环境进行全面探索和保护的迫切需要,特别是为了保护柳珊瑚礁等重要的生态系统。

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