Accumulation of microplastics in bivalves within the Chandragiri River in South-Western India

IF 1.6 Q4 ENVIRONMENTAL SCIENCES Anthropocene Coasts Pub Date : 2024-02-17 DOI:10.1007/s44218-024-00038-w
Nidhin Krishna Kadalassery Radhakrishnan, Jeyabalan Sangeetha, Jadav Mulji Alabhai, Poornendu Jayasree
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Abstract

The pervasive presence of microplastics within river ecosystems has a profound and often underestimated detrimental impact. These minuscule yet persistent particles have infiltrated diverse biological habitats, making their detrimental effects on aquatic life increasingly concerning worldwide. The ability of microplastics to accumulate within aquatic organisms further exacerbates this concern. Consequently, the monitoring of microplastic pollution in surface water environments has emerged as a crucial endeavour, offering invaluable insights into the extent of this ecological threat. This study delved into the contamination levels of microplastics within two bivalve species, Perna viridis and Villorita cyprinoides, along the Chandragiri River in Kerala and Karnataka, South-West India, spanning eight distinct locations. The investigation yielded a significant discovery, with a total of 667 microplastic particles extracted from 288 individuals. On average, each individual bivalve harboured approximately 2.31 ± 0.93 microplastic items. Notably, these microplastic particles exhibited a wide range of morphological characteristics, underscoring their diverse origins and pathways into the ecosystem. Furthermore, five polymer types of microplastics were unequivocally confirmed through FTIR-ATR analysis, shedding light on the types of plastics that pose a threat to the riverine ecosystem. The findings of this study contribute to a growing body of evidence highlighting the global threat of microplastic pollution, urging international collaboration and innovative solutions to prevent further contamination and remediate existing microplastic burdens in aquatic environments.

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印度西南部 Chandragiri 河双壳类动物体内的微塑料积累
微塑料在河流生态系统中的普遍存在有着深远的、往往被低估的有害影响。这些微小而持久的颗粒已经渗入各种生物栖息地,对水生生物的有害影响日益引起全世界的关注。微塑料在水生生物体内的累积能力进一步加剧了这种担忧。因此,监测地表水环境中的微塑料污染已成为一项至关重要的工作,可为了解这一生态威胁的程度提供宝贵的信息。本研究深入研究了印度西南部喀拉拉邦和卡纳塔克邦 Chandragiri 河沿岸八个不同地点的两种双壳贝类(Perna viridis 和 Villorita cyprinoides)体内的微塑料污染水平。调查取得了重大发现,从 288 个双壳贝中共提取到 667 个微塑料颗粒。平均而言,每只双壳贝携带了约 2.31 ± 0.93 个微塑料颗粒。值得注意的是,这些微塑料颗粒呈现出多种形态特征,表明其来源和进入生态系统的途径多种多样。此外,通过傅立叶变换红外-原子吸收光谱(FTIR-ATR)分析,明确证实了五种聚合物类型的微塑料,从而揭示了对河流生态系统构成威胁的塑料类型。这项研究的发现为越来越多的证据提供了依据,凸显了微塑料污染对全球的威胁,敦促国际合作和创新解决方案,以防止进一步的污染,并对水生环境中现有的微塑料负担进行补救。
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