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Trace toxic elements in agricultural soil and sediment in the biggest estuarine area, northern Vietnam

机译:越南北部最大河口地区农业土壤和沉积物中的痕迹

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Soil quality, especially its toxic elements content, plays an important part in clarifying the sustainability of an estuarine ecosystem. In this study, six toxic elements (As, Pb, Cd, Zn, Cr, Cu) in soils and sediments of the Ba Lat estuary, northern Vietnam, were assessed using the ICP-MS technique. Soil properties, such as major minerals, soil particles, organic carbon content, were also measured using an X-ray diffractometer (XRD) system and other common methods. The FE-EPMA technique was applied to explore the surface chemical properties of the soil and sediment particles. Detailed information about arsenic and heavy metal forms in the samples was analyzed by the sequential extraction method. Sixty-seven surface soil and sediment samples were collected. In addition, several soil and sediment cores (1m of depth) were also taken from mangrove forests and paddy fields to evaluate their toxic element content. The chemical analyses have shown that the surface layers of the river sediment and mangrove forest soil contain accumulated As and heavy metals, which could have been transported from the upstream Red River. The average concentrations of heavy metals (Pb, Cd, Zn, Cr, Cu) did not exceed the allowable limit for agricultural soil; however, these elements tend to accumulate on the surface layer of the soil and sediment profiles. The spatial distribution of the toxic elements suggests that intensive human activities in the upstream Red River in recent decades were the cause of elevated levels of these toxic elements in the estuarine ecosystem of Ba Lat estuary.
机译:土壤质量,尤其是其有毒元素含量,在阐明河口生态系统的可持续性方面发挥着重要组成部分。在本研究中,使用ICP-MS技术评估了六个越南地区土壤和沉积物中的六种有毒元素(如,Pb,Cd,Zn,Cr,Cu)。使用X射线衍射仪(XRD)系统和其他常用方法,还测量土壤性质,如主要矿物质,土壤颗粒,有机碳含量。应用Fe-EPMA技术探索土壤和沉积物颗粒的表面化学性质。通过顺序提取方法分析样品中砷和重金属形式的详细信息。收集六十七种表面土壤和沉积物样品。此外,还从红树林林和稻田中取出了几种土壤和沉积物核心(1M深度),以评估它们的毒性因子含量。化学分析表明,河流沉积物和红树林土壤的地表层含有积累的和重金属,这可能已经从上游红河运输。重金属的平均浓度(Pb,Cd,Zn,Cr,Cu)没有超过农业土壤的允许极限;然而,这些元素倾向于积聚在土壤和沉积物谱的表面层上。剧毒元素的空间分布表明,近几十年来,近几十年上游河流的密集人类活动是巴特河口河口生态系统中这些有毒元素水平升高的原因。

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