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Comparison between B CR sequential extraction and geo-accumulation method to evaluate metal mobility in sediments of Dongting Lake, Central China

机译:B CR序贯提取法与地质积累法评价洞庭湖沉积物中金属迁移率的比较

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摘要

The form in which a metal exists strongly influences its mobility and thus,the effects on the environment.Operational methods of speciation analysis,such as the use of sequential extraction procedures,are commonly applied.The Dongting Lake,the second largest fresh-water lake in China,contains three China wetlands of international importance,the East Dongting Lake,South Dongting Lake,and West Dongting Lake.In this work,an optimized BCR sequential extraction procedure was used to assess the environmental risk of Cd,Cr,Cu,Ni,Pb and Zn in contaminated sediment of the Dongting Lake.The procedure was evaluated by using a certified reference material,BCR701.The results of the partitioning study indicated that in the lake sediments,more easily mobilized forms(acid exchangeable) were predominant for Cd,particularly in the samples from the East Dongting Lake.In contrast,the largest amount of Pb was associated with the iron and manganese oxide fractions and Cu,Zn,Cr,and Ni analyzed were mainly distributed in residual phase at an average percentage greater than 60% of the total metals.The potential risk to the lake's water contamination was highest in the East Dongting Lake based on the calculated contamination factors.On the other hand,the total metal content was determined as well by inductively coupled plasma and mass spectrometry(ICP-MS)and assessed by using geo-accumulation index.The assessment results using geo-accumulation index were compared with the information on metal speciation.Both were correspondent with each other.
机译:金属的存在形式强烈地影响其迁移率,进而影响环境。物种分析的操作方法,例如使用顺序提取程序,通常被使用。第二大淡水湖-洞庭湖在中国,中国有三个具有国际重要意义的湿地,即东洞庭湖,南洞庭湖和西洞庭湖。在这项工作中,采用了优化的BCR顺序提取程序来评估Cd,Cr,Cu,Ni的环境风险。 ,洞庭湖受污染沉积物中的铅,铅和锌。该过程使用认证的参考物质BCR701进行了评估。分区研究的结果表明,在湖泊沉积物中,更容易迁移的形式(可交换酸)是镉的主要来源。相比之下,Pb的最大含量与铁和锰的氧化物组分有关,而分析的Cu,Zn,Cr和Ni主要为残留相中的平均百分比占金属总量的60%以上。根据计算得出的污染因子,东洞庭湖对该湖水污染的潜在风险最高。另一方面,确定了总金属含量并采用电感耦合等离子体质谱法(ICP-MS)并利用地积累指数进行评估。将地积累指数的评估结果与金属形态信息进行比较,两者相互对应。

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