Quantitative Analysis Of Trace Metal In Water And Soft Tissues Of Balanus Amphitrite In Nandikadal Lagoon, Sri Lanka

Sivashanthini Kuganathan, Dhanushka Dilini Jayaweera Shivatharshini Yohi, Kuttithamby Gunaalan
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Abstract

Due to long–term military activities carried out in Nandikadal lagoon situated at Mullaitivu, Sri Lanka, there are high possibilities to impact water and biota with heavy metals. Balanus amphitrite (Barnacles) has been found as a strong candidate for biomonitoring of trace metals. Therefore, the present study describes the impacts of trace metal pollution on water and the soft tissues of Balanus amphitrite. Water samples and barnacles were collected from two locations of the lagoon for four months during the dry and wet seasons. Quantitative analysis of trace metals (Cd, Cu, Cr, Pb and Zn) were detected in the water and tissue samples using flame atomic absorption spectrometry. Cd, Cr, Pb and Cu found in tissues of barnacles were several times higher than the International recommended level except for Zn. The concentration of Pb in tissues of barnacles showed a significant (p < 0.05) spatial variation. The Cd and Cu concentrations obtained in soft tissues showed significant (p < 0.05) seasonal variations. The concentration of Cr in water showed a significant (p < 0.05) spatial variation and other trace metals (Pb,Cd) except Zn, showed significant (p < 0.05) seasonal variations. There were significant positive correlations between water and soft tissues with respect to Cd (p=0.000 & r = 0.893) and Pb (p=0.002 & r=0.435). Zn found in samples showed negative correlation between water and soft tissues. According to this results Balanus amphitrite has an ability to accumulate trace metals several times greater than in the lagoon water. Therefore, Balanus amphitrite is a strong net–accumulator of Cd, Pb, Zn, Cu, Cr. Hence, it is a good choice to be used as a bioindicator organism to find the level impact of trace metal contamination.
斯里兰卡南迪卡达尔泻湖水和两栖动物软组织中微量金属的定量分析
由于在斯里兰卡穆莱蒂乌的南迪卡达尔泻湖进行的长期军事活动,重金属很有可能对水和生物群造成影响。藤壶类植物是一种重要的痕量金属生物监测资源。因此,本研究描述了痕量金属污染对水和水蛭软组织的影响。在旱季和雨季的四个月里,在泻湖的两个地点收集了水样和藤壶。采用火焰原子吸收光谱法对水和组织样品中的微量金属Cd、Cu、Cr、Pb、Zn进行了定量分析。除锌外,藤壶组织中镉、铬、铅、铜均高于国际推荐标准数倍。藤壶各组织中Pb浓度存在显著的空间差异(p < 0.05)。软组织中Cd和Cu的浓度有显著的季节变化(p < 0.05)。水体中Cr的浓度存在显著的空间差异(p < 0.05),除Zn外,其他微量金属(Pb、Cd)的浓度存在显著的季节差异(p < 0.05)。水和软组织对Cd (p=0.000 & r= 0.893)和Pb (p=0.002 & r=0.435)呈显著正相关。样品中锌的含量与软组织呈负相关。根据这一结果,Balanus amphiitrite积累微量金属的能力是泻湖水中的几倍。因此,水蛭是Cd、Pb、Zn、Cu、Cr的强净蓄积体,是寻找微量金属污染水平影响的生物指示生物的良好选择。
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