Characteristics and risk assessment of microplastic mediated heavy metal transport in black clam Villorita cyprinoides from a Ramsar wetland of South India

IF 6.6 Q1 ENGINEERING, ENVIRONMENTAL
Prachi Siddharth Bagde , Rini Mathew , Roshna Jose , K. Ranjeet , V.G. Nikhil
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Abstract

The synergetic and interactive effects of microplastics (MPs) as potential carriers of pollutants and pathogens have a manifold impact on human health and aquatic biota. The present study delineates the role of MPs in transporting heavy metals to the black clam, Villorita cyrpinoides of Vembanad Lake in South India. MPs in water (3.41 ± 1.87 items/L), sediment (154.6 ± 45.4 items/kg) and within clams (0.87 ± 0.34 items/g tissue) showed considerable variation based on their physical and chemical characteristics, which in turn reflected its differential potential to carry heavy metals. Though the levels of heavy metals (Al, Fe, Mn, Zn, Cr, Pb) within the clam and those carried by MPs were less than the hazardous limits, the concentration of Cd within the clam and MP was found to have a positive correlation. Though the present levels of heavy metal pollution in the lake do not pose a direct threat to humans, anthropogenic interventions and reduced water flow have turned the lower reaches of the lake into a sink of heavy metals. Hence with MP concentration increasing it is worth investigating how their future interactions with heavy metals and other pollutants would pose a risk to living organisms.

南印度拉姆萨尔湿地黑蛤(Villorita cyprinoides)微塑料介导的重金属迁移特征及风险评估
微塑料作为污染物和病原体的潜在载体,其协同和相互作用对人类健康和水生生物群产生了多方面的影响。目前的研究描述了MPs在将重金属运输到印度南部Vembanad湖的黑蛤(Villorita cypinoides)中的作用。水中(3.41±1.87项/L)、沉积物(154.6±45.4项/kg)和蛤体内(0.87±0.34项/g)的MPs物理化学特征差异较大,反映了其携带重金属的差异潜力。虽然蛤体内和MPs携带的重金属(Al、Fe、Mn、Zn、Cr、Pb)含量低于危险限值,但发现蛤体内的Cd浓度与MP呈正相关。虽然太湖目前的重金属污染水平还没有对人类构成直接威胁,但人为干预和水量减少已经使太湖下游成为重金属的汇合地。因此,随着MP浓度的增加,值得研究它们未来与重金属和其他污染物的相互作用将如何对生物体构成风险。
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来源期刊
Journal of hazardous materials letters
Journal of hazardous materials letters Pollution, Health, Toxicology and Mutagenesis, Environmental Chemistry, Waste Management and Disposal, Environmental Engineering
CiteScore
10.30
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20 days
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