温带南美洲(阿根廷)三条低地河流中的必需和非必需金属:分布和积累。

J. Rosso, E. Avigliano, A. Fernández Cirelli
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引用次数: 3

摘要

地球上基本金属的地理分布在很大程度上是不均匀的。因此,评估淡水生态系统中金属含量的区域具体方法是强制性的。测定了潘潘平原3个河流生态系统水体、沉积物和鱼类中Cd、Cu、Cr、Pb、Ni、Mn和Zn的含量,探讨了这些必需和非必需金属的分配特征。方法采集潘潘亚平原3条河流的水、沉积物和8种鱼类。采用电感耦合等离子体光学发射光谱仪(ICP-OES)对水、沉积物和肌肉中Cd、Cr、Cu、Mn、Ni、Pb和Zn的浓度进行了三次测定。计算污染指数(Hakanson’s index)和生物浓度因子,评估污染程度和基质之间的关系;估算目标危害商,探讨食用鱼类对人体健康的风险。结果所有采样河流的水中金属浓度均低于检测限。沉积物主要富集Mn (186 ~ 474 mg kg-1),其次是Zn (36.8 ~ 40.3 mg kg-1),而鱼类则相反,说明这些元素的生物地球化学途径不同,生物富集不均匀。所有被探测到的金属的最高浓度无一例外地记录在酱格兰德河的鱼身上,尽管只有Cd、Cu和Ni在该地点的沉积物中含量最高。事实上,生物富集因子表明,Cd和Zn在所有采样河流中几乎所有物种都在积极积累。基于bonariensis肌肉金属浓度组织的目标危害商数小于1。结论:似乎没有一种金属会对人类造成重大风险。在某些研究点,生物群落沉积物中Cd、Zn和肌肉中Cd、Cr、Ni、Zn和Pb的浓度因子最高,表明其可作为新热带鱼群落生物监测的前哨种。
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Essential and non-essential metals in three lowland rivers of temperate South America (Argentina): Distribution and accumulation.
BACKGROUND Geographic distribution of essential metals on earth is largely uneven. Therefore, regional specific approaches to assess metal contents in freshwater ecosystems are mandatory. Cd, Cu, Cr, Pb, Ni, Mn and Zn concentrations were measured in water, sediments and fish tocharacterize the partitioning of these essential and non-essential metals in three river ecosystems of the Pampean Plain==. METHODS Water, sediment and eight fish species were collected at three rivers from the Pampean Plain. After sample-specific pretreatments, Cd, Cr, Cu, Mn, Ni, Pb and Zn concentrations in water, sediment and muscle were determined in triplicate by Inductively Coupled Plasma Optical Emission Spectrometer (ICP-OES). Contamination (Hakanson´s index) and bioconcentration factors were calculated to assess the degree of contamination and the relationship between the matrices, while the target hazard quotient was estimated to explore the risk to human health from fish consumption. RESULTS Water metal concentration was below detection limit in all sampled rivers. Sediments were mostly enriched by Mn (186-474 mg kg-1) followed by Zn (36.8-40.3 mg kg-1), whereas in fish, the situation was the opposite, suggesting different biogeochemical pathways and uneven bioaccumulation of these elements. The largest concentrations for all explored metals were invariably recorded in fish from the Sauce Grande River, although only Cd, Cu and Ni in sediments were highest at this site. Indeed, the bioconcentration factor showed that Cd and Zn are actively accumulated by almost all species in all sampled rivers. The Targeted Hazard Quotient based on the muscle metal concentration tissue of the edible fish species (Odontesthes bonariensis) was less than 1. CONCLUSION None metal seemed to pose a significant risk for humans. In some sites biota-sediment concentration factors of Cd and Zn and muscle Cd, Cr, Ni, Zn and Pb levels were highest in the silurid Pimelodella laticeps, suggesting that it may be used as a sentinel species for biomonitoring programs in Neotropical fish assemblages.
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