Lin Jia, Zheng Jia-Yuan, Zhan Zhi-Geng, Zhao Yuan-Ming, Zhou Qian-Zhi, Peng Juan, Li Yan, Xiao Xi, Wang Jiang-Hai
Guangdong Provincial Key Laboratory of Marine Resources and Coastal Engineering, School of Marine Sciences, Sun Yat-Sen University, Zhuhai 519082, China.
Institute of Marine Science and Technology, Shandong University, Qingdao 266237, China.
J Hazard Mater. 2024 Oct 5;478:135531. doi: 10.1016/j.jhazmat.2024.135531. Epub 2024 Aug 22.
Microplastics (MPs) pose significant concerns for marine ecological security due to their minuteness and ubiquity. However, comprehensive knowledge on their distribution and fate in seawater columns remains limited. This study investigated the abundances and characteristics of MPs across 3-6 water layers in the South Yellow Sea and East China Sea. Results indicate that high-abundance small MPs (< 100 µm) (average 6567 items/m) were hidden beneath the sea-surface, predominantly fine-grained particles (< 20 µm) and high-density polymers (> 1.03 g/cm). The total suspended MPs (5.0-834.2 µm) are estimated at 2.9-3.1 × 10 particles, with most of them occurring in upper layers. In profiles, their distribution varied by physical properties with depth; fragment-shaped and high-density MPs increased in proportion at greater depths, contrasting with fibrous MPs. These MPs originated primarily from the Yangtze River and their winter transport was driven by the Yangtze River Dilution Water, East China Sea Coastal Current, and Yellow Sea Warm Current, resulting in their accumulation in coastal and estuarine regions. Consequently, the Yangtze River Estuary ecosystem faces substantial risks from MP pollution throughout the water column. This work unveils the prevalence of small MPs in coastal water columns and intricate interaction between their fate and hydrodynamic conditions.
微塑料(MPs)因其微小性和普遍性而对海洋生态安全构成重大威胁。然而,关于它们在海水柱中的分布和归宿的全面知识仍然有限。本研究调查了南黄海和东海3至6个水层中微塑料的丰度和特征。结果表明,高丰度的小尺寸微塑料(<100微米)(平均6567个/立方米)隐藏在海面以下,主要是细颗粒(<20微米)和高密度聚合物(>1.03克/立方厘米)。总悬浮微塑料(5.0 - 834.2微米)估计为2.9 - 3.1×10个颗粒,其中大部分出现在上层。在垂直剖面中,它们的分布随深度的物理性质而变化;碎片状和高密度微塑料在较深深度的比例增加,与纤维状微塑料形成对比。这些微塑料主要来自长江,其冬季输运受长江冲淡水、东海沿岸流和黄海暖流驱动,导致它们在沿海和河口地区积累。因此,长江口生态系统在整个水柱中面临着微塑料污染带来的重大风险。这项工作揭示了沿海水柱中小尺寸微塑料的普遍存在以及它们的归宿与水动力条件之间的复杂相互作用。