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Geochemical speciation of trace metals in sediments of the northern Nile Delta Lake by sequential extraction technique

机译:顺序提取技术北尼罗河三角洲沉积物痕量金属的地球化学体态

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摘要

The present study was performed to investigate surface sediment samples from Lake Edku of the Nile Delta Lagoons, Egypt. The Lake is important for fishing in the region. The importance of research is to understand the mobility and bioavailability of each studied metal. The study was carried out on 10 sampling sites during 2017. The sediments were subjected to the technique of sequential extraction to examine the chemical forms of some trace metals (Fe, Mn, Zn, Cu, Pb and Ni). Five stage extractions were done as the following order: soluble and exchangeable, carbonate, iron and manganese oxides, organic matter fraction and residual fraction. Attained results from the five fractions showed variations in the concentrations of metal contents of different sites under study. The overall metal concentrations (%) in the initial four extractable fractions (exchangeable, carbonate, oxides and organic matter fractions) were assessed to configure the mobility of each studied metal. The risk assessment code (RAC) represents the summation of exchangeable and carbonate fractions, it was between low and medium risk for aquatic environment. The range percentage of RAC for the metals was in the following order: 1.8-13, 4-23.5, 15-26, 5.7-19.5, 9-25 and 4.8-18.2 for Fe, Mn, Zn, Cu, Pb and Ni, respectively. Approximately 30% of the total copper was associated to the organic fraction, which may represent a high mobility of copper in these sediments. The highest mobility of metals in the sediments could be confirmed by its bioavailability factor (BF), which was within the ranges of 0.32-0.61, 0.36-0.59, 0.64-0.83, 0.36-0.72, 0.37-0.62 and 0.52-0.78 for Fe, Mn, Zn, Cu, Pb and Ni, respectively. The BF exhibited the following order: Zn > Ni > Cu > Pb approximate to Mn > Fe. The high levels of BF for the studied metals may represent the potentiality for toxic metals to be easily released into the aquatic environment.
机译:对本研究进行了研究从埃及尼罗河三角洲湖埃克湖的表面沉积物样本。湖泊对于该地区钓鱼很重要。研究的重要性是了解每个研究的金属的移动性和生物利用度。该研究在2017年期间在10个采样位点进行。沉积物进行序列萃取的技术,以检查一些痕量金属的化学形式(Fe,Mn,Zn,Cu,Pb和Ni)。 5阶段提取作为以下顺序进行:可溶性和可更换的碳酸盐,碳酸盐,铁和锰氧化物,有机物馏分和残留级分。达到五个级分的结果显示出在研究中不同部位的金属含量浓度的变化。评估初始四种可提取级分中的总金属浓度(%)(可更换,碳酸盐,氧化物和有机物质级分)以构成每个研究金属的迁移率。风险评估代码(RAC)代表了可交换和碳酸盐馏分的总和,它是水生环境的低和中等风险。用于金属的RAC的范围百分比按以下顺序:1.8-13,4-23.5,5-26,5.7-19.5,9-25和4.8-18.2用于Fe,Mn,Zn,Cu,Pb和Ni,分别。总铜的大约30%与有机级分相关,这可能代表这些沉积物中的铜的高迁移率。沉积物中金属的最高迁移率可以通过其生物利用度因子(BF)来证实,其在0.32-0.61,0.36-0.59,0.64-0.83,0.36-0.72,0.37-0.62和0.52-0.78的范围内分别分别。,Mn,Zn,Cu,Pb和Ni。 BF表现出以下顺序:Zn> Ni> Cu> Pb近似到Mn> Fe。研究金属的高水平BF可以代表容易释放到水生环境中的有毒金属的潜力。

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