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从流域到沿海地区的宏观塑料产量估算:以马来西亚巴生河为例

Estimation of macroplastic yield from river basin to coastal area: A case study of the Klang River, Malaysia.

作者信息

Sulaiman Mohd Sofiyan, Anuar Sabiqah Tuan, Ibrahim Yusof Shuaib, Yusof Ku Mohd Kalkausar Ku, Mohamad Yuzwan, Khalik Wan Mohd Afiq Wan Mohd, Azmi Alyza Azzura, Zainal Abidin Shahidee, Abdullah Nor Salmi, Yahya Nasehir Khan E M

机构信息

Microplastic Research Interest Group (MRIG), Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia; Faculty of Technology and Ocean Engineering, Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia.

Microplastic Research Interest Group (MRIG), Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia; Faculty of Science and Marine Environment, Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia.

出版信息

Mar Pollut Bull. 2025 Mar;212:117527. doi: 10.1016/j.marpolbul.2025.117527. Epub 2025 Jan 6.

Abstract

Plastic pollution in aquatic ecosystems has become a critical global environmental challenge, threatening biodiversity, water quality, and human health. This study investigates macroplastics distribution and characterization in the highly polluted Klang River, Malaysia, and proposes a protocol to compute total macroplastic yield in the river basin. A total of 240 macroplastic items were collected over a 20-km stretch from the river mouth inland, with an average of 0.91 ± 0.80 g/item (dry weight). Scanning Electron Microscopy revealed that the macroplastics had weathered slowly in the environment, potentially breaking down into smaller microplastic particles. Biofilms and dead phytoplankton were observed on the plastic surfaces, suggesting that plastic debris may act as vectors for other pollutants. The study used SWAT modelling to simulate physical processes in the Klang River Basin and compute pollutant loads through a loading computation procedure. A macroplastic rating curve was created using river discharge, macroplastic loadings, and associate parameters to estimate plastic loading in the river. The fitted equation models macroplastic loading as a function of river discharge and width, expressed as: log(y) = 1.88216-7.36528log(x) - 4.00491log(x). Here, log(x) represents the ratio of river discharge to river width, while log(y) denotes macroplastic loading adjusted for sampler width and river width. Results indicated that macroplastic transport in the river system is linked to flow rates and sediment yield, which vary due to topographical factors, with an estimated macroplastics yield in the Klang River Basin of 11,600 kg/day. The findings suggest that a river-specific monitoring programs should be conducted to generate comprehensive datasets, integrating both macroplastics and microplastics abundance, which can be utilized for projecting plastic emissions from Malaysian rivers and comparing data with other river basins in the Southeast Asia.

摘要

水生生态系统中的塑料污染已成为一项严峻的全球环境挑战,威胁着生物多样性、水质和人类健康。本研究调查了马来西亚污染严重的巴生河中的宏观塑料分布及特征,并提出了一种计算该流域宏观塑料总产量的方案。在内陆距河口20公里的河段共收集到240件宏观塑料物品,平均每件重0.91±0.80克(干重)。扫描电子显微镜显示,宏观塑料在环境中缓慢风化,可能分解成更小的微塑料颗粒。在塑料表面观察到生物膜和死亡的浮游植物,这表明塑料碎片可能充当其他污染物的载体。该研究使用SWAT模型来模拟巴生河流域的物理过程,并通过负荷计算程序计算污染物负荷。利用河流流量、宏观塑料负荷及相关参数创建了一条宏观塑料评级曲线,以估算河流中的塑料负荷。拟合方程将宏观塑料负荷模拟为河流流量和宽度的函数,表达式为:log(y)=1.88216 - 7.36528log(x) - 4.00491log(x)。其中,log(x)代表河流流量与河流宽度的比值,而log(y)表示根据采样器宽度和河流宽度调整后的宏观塑料负荷。结果表明,河流系统中的宏观塑料输运与流速和产沙量有关,由于地形因素,流速和产沙量会有所变化,巴生河流域的宏观塑料产量估计为每天11,600千克。研究结果表明,应开展针对特定河流的监测项目,以生成综合数据集,整合宏观塑料和微塑料的丰度,这些数据可用于预测马来西亚河流的塑料排放,并与东南亚其他流域的数据进行比较。

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