Large quantities of small microplastics permeate the surface ocean to abyssal depths in the South Atlantic Gyre

微塑料 海洋环流 海洋学 水柱 环境科学 远洋带 地表水 沉淀 亚热带 地质学 大气科学 生态学 生物 环境工程
作者
Shiye Zhao,Erik Zettler,Ryan P. Bos,Peigen Lin,Linda Amaral‐Zettler,Tracy J. Mincer
出处
期刊:Global Change Biology [Wiley]
卷期号:28 (9): 2991-3006 被引量:112
标识
DOI:10.1111/gcb.16089
摘要

]) of small microplastics (SMPs, characteristically <100 μm) from the surface to near-sea floor waters of the remote South Atlantic Subtropical Gyre. Large horizontal and vertical variations in the abundances of SMP were observed, displaying inverse vertical trends in some cases. SMP abundances in pump samples were more than two orders of magnitude higher than large microplastics (LMPs, >300 μm) concurrently collected in MultiNet samples. Higher-density polymers (e.g., alkyd resins and polyamide) comprised >65% of the total pump sample count, highlighting a discrepancy between polymer compositions from previous ocean surface-based surveys, typically dominated by buoyant polymers such as polyethylene and polypropylene. Contrary to previous reports stating LMP preferentially accumulated at density gradients, SMP with presumably slower sinking rates are much less influenced by density gradients, thus resulting in a more even vertical distribution in the water column, and potentially longer residence times. Overall, our findings suggest that SMP is a critical and largely underexplored constituent of the oceanic plastic inventory. Additionally, our data support that weak current systems contribute to the formation of SMP hotspots at depth, implying a higher encounter rate for subsurface particle feeders. Our study unveils the prevalence of plastics in the entire water column, highlighting the urgency for more quantification of the deep-ocean MP, particularly the smaller size fraction, to better understand ecosystem exposure and to predict MP fate and impacts.
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