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Geochemical Assessment of a Subtropical Reservoir: A Case Study in Curitiba, Southern Brazil

机译:亚热带水库的地球化学评估:以巴西南部库里蒂巴为例

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摘要

Suspended particles and dissolved substances in water provide reactive surfaces, influence metabolic activity and contribute to the net sediment deposition. It therefore plays an important part in the ecology and quality of the water mass. The water quality in reservoirs is crucial and it is naturally maintained by flushing and sedimentation, which continuously remove phosphorus from the water. In some reservoirs, however, these removal processes are countered by recycling of ions which could play a key role to start and/or maintain the eutrophic state. The combination of macro-, trace- and microanalysis techniques can be useful to trace pollution sources through a chemical fingerprint, whether be during an acute environmental disaster or a long-term release of pollutants. The water quality and total metal content of reservoir sediments were assessed in a reservoir, situated in the capital of the Parana State, in the South-Eastern part of Brazil. The goal of this paper was to determine the metal presence in the sediment and metal and ionic speciation in the Green River reservoir water. Water and bed sediment samples, collected from various sites during 2008 and 2009, were investigated using XRF, ICP-OES, ICP-MS, XRD and zeta potential measurements. Based on the results, the heavy metal concentration and chemical composition of the suspended matter in the water samples, as well as the sediment's chemical composition will be discussed.
机译:水中的悬浮颗粒和溶解物质可提供活性表面,影响代谢活性并有助于净沉积物沉积。因此,它在水团的生态和质量中起着重要的作用。水库中的水质至关重要,通过冲水和沉淀自然保持水质,不断从水中去除磷。但是,在某些水库中,这些回收过程通过离子的循环来抵消,而离子的循环在开始和/或维持富营养化状态中起着关键作用。宏观分析,痕量分析和微量分析技术的组合可用于通过化学指纹来追踪污染源,无论是在严重的环境灾难中还是在长期释放污染物的过程中。在巴西东南部巴拉那州首府的一个水库中评估了水库沉积物的水质和总金属含量。本文的目的是确定绿河水库水中沉积物中的金属含量以及金属和离子形态。使用XRF,ICP-OES,ICP-MS,XRD和zeta电位测量对2008年和2009年从不同地点采集的水和床沉积物样本进行了调查。根据结果​​,将讨论水样品中悬浮物的重金属浓度和化学组成,以及沉积物的化学组成。

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  • 来源
    《Clean》 |2012年第4期|p.364-372|共9页
  • 作者单位

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Department of Geology, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Chemistry Institute, Sao Paulo State University UNESP, Araraquara, Sao Paulo, Brazil;

    Chemistry Institute, Sao Paulo State University UNESP, Araraquara, Sao Paulo, Brazil;

    Chemistry Institute, Sao Paulo State University UNESP, Araraquara, Sao Paulo, Brazil;

    University of Brasilia, Planaltina, DC, Brazil;

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Environmental Engineering Department, Federal University of Parana/UFPR, Curitiba, Parana, Brazil;

    Division of Chemistry and Environmental Science, School of Science and the Environment, Manchester Metropolitan University, Manchester, UK,Department of Chemistry, Micro and Trace Analysis Centre, University of Antwerp, Antwerp, Belgium,Molecular Science Institute, School of Chemistry, University of the Witwatersrand, Johannesburg, South Africa;

    University of Brasilia, Planaltina, DC, Brazil;

    University of Brasilia, Planaltina, DC, Brazil;

    Department of Chemistry, Micro and Trace Analysis Centre, University of Antwerp, Antwerp, Belgium;

    Department of Chemistry, Micro and Trace Analysis Centre, University of Antwerp, Antwerp, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    eutrophication; heavy metals; nutrients; water quality;

    机译:富营养化重金属;营养素水质;

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