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首页> 外文期刊>Environmental Monitoring and Assessment >Dynamics of (total and methyl) mercury in sediment, fish, and crocodiles in an Amazonian Lake and risk assessment of fish consumption to the local population
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Dynamics of (total and methyl) mercury in sediment, fish, and crocodiles in an Amazonian Lake and risk assessment of fish consumption to the local population

机译:亚马逊湖沉积物,鱼类和鳄鱼中(全部和甲基)汞的动态以及当地居民鱼类消费的风险评估

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摘要

Increasing concerns have been raised about the toxicity of mercury (Hg) to humans, especially for those that consume a great amount of fish. High Hg concentrations have previously been measured in Amazonian waterbodies, both resulting from natural and anthropogenic sources. However, few studies have been conducted so far in Amazonian lakes that are fished by local populations. In addition, few of those studies included methylmercury (MeHg), the most toxic and bioaccumulative Hg form, and evaluated the influence of physico-chemical conditions and season on Hg dynamics. In the present study, total Hg (THg) and MeHg concentrations were measured in bottom sediment as well as in two fish and two crocodile species of the Amazonian Cunia Lake. Bottom sediment MeHg concentrations were higher in the dry season than in the wet season, which is related to differences in physico-chemical (pH and electrical conductivity) conditions. Diet appeared to be related with animal tissue MeHg concentrations, with the herbivorous fish having lower MeHg levels than the predatory fish and crocodiles. Based on the measured tissue concentrations and published data on local person weight and fish consumption, MeHg risk to Cunia Lake populations was estimated. Although the MeHg fish tissue concentrations did not exceed national and international standards, a significant risk to the local population is anticipated due to their high fish consumption rates.
机译:人们对汞(Hg)对人类的毒性越来越关注,特别是对于那些消耗大量鱼类的鱼类。先前已经在亚马逊水体中测量到高汞含量,这都是自然和人为来源造成的。但是,到目前为止,在由当地居民捕捞的亚马逊湖中尚未进行任何研究。此外,这些研究中几乎没有包括甲基汞(MeHg),它是最具毒性和生物蓄积性的汞形式,并评估了理化条件和季节对汞动力学的影响。在本研究中,测量了亚马逊河Cunia湖底沉积物以及两条鱼和两种鳄鱼中的总Hg(THg)和MeHg浓度。干旱季节底部沉积物的MeHg浓度高于潮湿季节,这与物理化学(pH和电导率)条件的差异有关。饮食似乎与动物组织中的MeHg浓度有关,草食性鱼类的MeHg水平低于掠食性鱼类和鳄鱼。根据测得的组织浓度和当地人体重和鱼类食用量的公开数据,估计甲基汞对Cunia Lakes种群的危险。尽管甲基汞鱼类的组织浓度未超过国家和国际标准,但由于鱼类的高消费率,预计对当地人口构成重大风险。

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