尼日利亚伊洛林阿萨河中捕集的Buthupogon和Heterobranchus Longifilis的金属吸收和生物蓄积潜力

O. M. Akinloye, Fawole Olatunde Olubanjo
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引用次数: 2

摘要

尽管尼日利亚有环境立法,但水生环境仍然是废物的下水道,不顾其对居民资源的影响。重金属污染已成为全世界关注的问题,这可能是由于它们在水生生物中生物积累的能力,而水生生物是人类的生计来源。因此,本研究旨在对尼日利亚阿萨河中buthupogon和Heterobranchus longifilis的重金属积累进行研究。在2011年4月至2013年3月期间,通过侦察调查,每月两次使用不同大小的鱼钩、陷阱和撒网采集鱼类样本,并立即进行鉴定。对样品进行处理,用原子吸收分光光度计测定鳃、肝脏和肌肉中的重金属浓度。在取样鱼类的鳃、肝脏和肌肉中分析不同的金属,并使用t检验统计软件包对所得数据进行统计分析,以确定平均值之间的差异水平。(mg kg-1,干重)的结果显示,两种鱼类中所分析的金属含量不同。两种鱼的重金属积累顺序为鳃>肝脏>肌肉,重金属生物积累水平在季节、采样地点、鱼种和器官之间差异显著(p<0.05)。所分析的所有金属在被检测的两种鱼类、季节和采样地点之间都有显著差异。结果表明,由于阿萨河污水的随意排放,鱼类中重金属的污染负荷较高,可能对人体健康造成危害。因此,建议密切监测阿萨河的重金属负荷,以期尽量减少对依赖这条河提供水和鱼的人口的健康造成的风险。
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Metal Uptake and Bioaccumulation Potentials of Clarias Buthupogon and Heterobranchus Longifilis Collected from Asa River, Ilorin, Nigeria
Despite the existence of environmental legislations in Nigeria, aquatic environment has remained the sewer for wastes not minding its implications on the resident resources. Heavy metals pollution has become a worldwide concern and this may be due to their ability to bioaccumulate in aquatic organisms which is a source of livelihood for human populations. Therefore, this work aimed at assessing heavy metal accumulation in Clarias buthupogon and Heterobranchus longifilis in Asa River, Nigeria. After reconnaissance survey, fish samples were collected using hooks, traps and cast nets of various sizes twice monthly between April 2011 and March 2013 and were identified immediately. The samples were processed and heavy metal concentrations were determined in the gill, liver and muscle using atomic absorption spectrophotometer. Different metals were analysed in the gill, liver and muscle of the sampled fish species and the data obtained were subjected to statistical analysis using the T-test statistical package to determine the level of difference between means. The results in (mg kg-1, dry weight) showed different levels of the analysed metals in the two fish species. The order of heavy metals accumulation in the two fish species are gills>liver>muscle and the levels of heavy metals bioaccumulation varied significantly (p<0.05) among season, sample locations, fish species and fish organs. All metals analysed vary significantly in the two fish species examined, seasons and across sampling sites. The results suggest that Asa River has high pollution loads of these heavy metals in fishes due to an indiscriminate of discharge of effluents in the river and could pose a health hazards to man. Consequently, close monitoring of heavy metal loads in Asa River is recommended with a view of minimizing the risks to health of the population that depend on the river for their water and fish supply.
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