Strong Convergence of Floating Microplastics at a Small-Scale Estuarine Surface Front

微塑料 前线(军事) 趋同(经济学) 比例(比率) 环境科学 河口 海洋学 地质学 物理 经济 经济增长 量子力学
作者
Mui‐Choo Jong,Xuneng Tong,Mengli Chen,Serene Hui Xin Tay,Dieu Huong Trinh,Yanping Cao,Shiye Zhao,Shasha Lu,Edward Park,Huahong Shi,Karina Yew‐Hoong Gin
出处
期刊:Environmental Science and Technology Letters [American Chemical Society]
卷期号:12 (8): 1009-1018 被引量:1
标识
DOI:10.1021/acs.estlett.5c00322
摘要

Estuarine surface fronts, where freshwater outflow and saline tidal inflow converge, may play a critical yet understudied role in microplastic (MP) accumulation. This study presents compelling evidence of strong convergence of MP at a small-scale surface front near the Eastern Johor Strait (EJS), a typical urbanized coast in Southeast Asia, revealing an estuary tidal intrusion front as a recurrent hotspot that concentrates MP at levels comparable to known estuarine frontal systems. Significantly elevated levels of floating microplastics (150.5 ± 19.8 MP pieces/L) were detected at the surface front compared to other surface water samples along the coast (p < 0.001; 9.2 ± 4.8 MP pieces/L). Hydrodynamic simulations demonstrate that the dynamic interplay between freshwater and seawater are the key mechanisms governing this process. The resulting convergence zones effectively trap buoyant plastics, forming quasi-persistent accumulation zones. Specifically, during ebb tide, parallel outflows from the Johor River and inner EJS amplify frontal convergence, actively trapping floating plastics at the salinity boundary. These findings highlight estuarine surface fronts as influential and previously underquantified systemic pathways influencing MP circulation and retention at marginal seas. Recognizing these traceable accumulation hotspots at ocean boundaries is an urgent priority, offering opportunities for targeted mitigation, particularly in high-leakage regions.
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