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Geochemistry of surface sediments of a tropical brackish water lake in South Asia

机译:南亚热带微咸水湖表层沉积物的地球化学

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This article presents the result of the geochemical analysis of sediment from Pulicat lake, India. The analysis consists of textural composition, CaCO3, organic carbon, total phosphorus, metals such as Cr, Ni, Cu, Pb, Zn, Cd, Fe and Mn of the sediments collected. Multivariate analysis is performed on the dataset and the interpretations are used as pointers to the origin of the composition of sediment components. Analysis shows a strong intermetal relationship, with lesser correlation with sand or mud which indicates that the metals have a common origin and they were already agglomerated before reaching the lake. Contamination Factor and Geoaccumulation Index demonstrated that the sediments were moderately contaminated with Cd. The Pollution Load Index for the Cd, Cr, Cu and Pb were greater than 1, whereby a Pollution Load Index greater than 1 indicates that the system under study is undergoing progressive deterioration representing Cd>Cu>Pb>Cr>Ni>Mn>Zn. Hierarchy of EF for metals in sediments is Cd > Cu > Pb > Cr > Ni > Mn > Zn with average of 3.6 > 2.1 > 1.8 > 1.4 > 1.0 > 0.8 > 0.7, respectively. Cd concentration varies from a minimum of 0.01-1.5 mg kg(-1) with a mean of 0.77 mg kg(-1). Cu concentration ranges from 25 mg kg(-1) and maximum of 81 mg kg(-1) with a mean of 50 mg kg(-1). Most of the metals are concentrated in the stations near the eastern part, which lie parallel to the sea and these regions act as hot spots for metal accumulation.
机译:本文介绍了印度Pulicat湖沉积物的地球化学分析结果。分析包括收集的沉积物的质地成分,CaCO3,有机碳,总磷,金属,例如Cr,Ni,Cu,Pb,Zn,Cd,Fe和Mn。对数据集进行多变量分析,并将解释用作指示沉积物成分组成来源的指标。分析显示出很强的金属间关系,与沙子或泥浆的相关性较小,这表明这些金属具有共同的起源,并且在到达湖泊之前已经聚结了。污染因子和地质富集指数表明,沉积物受到镉的中等污染。 Cd,Cr,Cu和Pb的污染负荷指数大于1,其中污染负荷指数大于1表示所研究的系统正在逐渐恶化,表示Cd> Cu> Pb> Cr> Ni> Mn> Zn 。沉积物中金属的EF层次分别为Cd> Cu> Pb> Cr> Ni> Mn> Zn,平均分别为3.6> 2.1> 1.8> 1.4> 1.0> 0.8> 0.7。 Cd浓度最低为0.01-1.5 mg kg(-1),平均为0.77 mg kg(-1)。铜的浓度范围从25 mg kg(-1)到最大81 mg kg(-1),平均浓度为50 mg kg(-1)。大多数金属集中在与海洋平行的东部附近的站点中,这些区域是金属积累的热点。

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