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The vertical distribution and biological transport of marine microplastics across the epipelagic and mesopelagic water column

机译:海洋微塑料在上层和中层水柱中的垂直分布和生物传输

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摘要

Plastic waste has been documented in nearly all types of marine environments and has been found in species spanning all levels of marine food webs. Within these marine environments, deep pelagic waters encompass the largest ecosystems on Earth. We lack a comprehensive understanding of the concentrations, cycling, and fate of plastic waste in sub-surface waters, constraining our ability to implement effective, large-scale policy and conservation strategies. We used remotely operated vehicles and engineered purpose-built samplers to collect and examine the distribution of microplastics in the Monterey Bay pelagic ecosystem at water column depths ranging from 5 to 1000 m. Laser Raman spectroscopy was used to identify microplastic particles collected from throughout the deep pelagic water column, with the highest concentrations present at depths between 200 and 600 m. Examination of two abundant particle feeders in this ecosystem, pelagic red crabs (Pleuroncodes planipes) and giant larvaceans (Bathochordaeus stygius), showed that microplastic particles readily flow from the environment into coupled water column and seafloor food webs. Our findings suggest that one of the largest and currently underappreciated reservoirs of marine microplastics may be contained within the water column and animal communities of the deep sea.
机译:几乎在所有类型的海洋环境中都有塑料废物的记录,并在横跨所有水平海洋食物网的物种中发现了塑料废物。在这些海洋环境中,深层的中上层水域涵盖了地球上最大的生态系统。我们缺乏对地下水中塑料废物的浓度,循环和命运的全面了解,从而限制了我们执行有效的大规模政策和保护战略的能力。我们使用遥控车辆和专门设计的采样器来收集和检查蒙特利湾中上层生态系统中水柱深度在5至1000μm之间的微塑料的分布。激光拉曼光谱法用于鉴定从整个深层中上层水柱中收集到的微塑性颗粒,其中最高浓度存在于200至600μm之间。对这个生态系统中的两种丰富的颗粒进食者-上层红蟹(Pleuroncodes planipes)和巨型幼虫(Bathochordaeus stygius)进行了检查,结果表明,微塑性颗粒易于从环境中流入耦合的水柱和海底食物网。我们的发现表明,深海的水柱和动物群落中可能包含最大的海洋微塑料储库之一,而该储库目前未被充分利用。

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