首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Geoacumulation of Heavy Metals in Sediment of the Fluvial–Lagoon–Deltaic System of the Palizada River Campeche Mexico
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Geoacumulation of Heavy Metals in Sediment of the Fluvial–Lagoon–Deltaic System of the Palizada River Campeche Mexico

机译:墨西哥坎佩切州帕利扎达河河流-泻湖-三角洲系沉积物中重金属的地质累积

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摘要

The fluvial–lagoon–deltaic system of the Palizada River in Campeche is an ecosystem of socioeconomic and ecological importance. It is justifiable to carry out studies in this system due to its connection with another larger ecosystem called the Términos Lagoon. The objective of this investigation was to analyze the concentration of Pb and Cd in sediments of the fluvial–lagoon–deltaic system of the Palizada River and to determine, with this, the contamination index of these metals. Cd showed the highest concentration in sampling sites and climatic seasons with respect to Pb, with a maximum value of 53.9 ± 5.0, while the Pb concentration was 10.4 ± 0.2 μg∙g . The same tendency was present with pollution and geoaccumulation indexes; here, the Cd index stands out. The enrichment of heavy metals was identified through the accumulation of Cd and Pb; such a process was evaluated through the geoacumulation index (Igeo). The results of this indicated that the contamination of these elements is mainly of anthropogenic origin. This element represents an ecological toxic risk due to the chronic presence of heavy metals in a priority area for the conservation of aquatic and terrestrial biota such as the Palizada system, owing to its high toxicity even at low concentrations. Thus, it is important to evaluate its sublethal effects in the organisms that inhabit this system, which requires the implementation of integral monitoring.
机译:坎佩切州帕利扎达河的河流—泻湖—三角洲系统是具有社会经济和生态重要性的生态系统。由于该系统与另一个称为特米诺斯泻湖的较大生态系统有关,因此有理由在此系统中进行研究。这项研究的目的是分析帕利扎达河河流-泻湖-三角洲系统沉积物中的铅和镉的浓度,并以此确定这些金属的污染指数。镉在采样点和气候季节相对于铅表现出最高的浓度,最大值为53.9±5.0,而铅的浓度为10.4±0.2μg∙g。污染和地质累积指数也存在同样的趋势。此处,Cd指数突出。重金属的富集通过镉和铅的积累来确定。通过地理累积指数(Igeo)评估了这一过程。结果表明,这些元素的污染主要是人为来源。由于重金属长期存在于保护水生和陆地生物区系(例如Palizada系统)的优先区域,由于即使在低浓度下也具有高毒性,因此该元素具有生态毒性风险。因此,重要的是评估其在居住于该系统的生物中的亚致死作用,这需要实施整体监测。

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