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Geochemical Assessment of Trace Metals in Peri-Urban Drainage and Bioaccumulation in Selected Food Crops in the Kumasi Metropolis, Ghana

机译:加纳库玛西大都市周边城市排水中微量金属的地球化学评估和某些粮食作物的生物富集

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This paper evaluates some geochemical properties of trace metals in peri-urban drainage and bioaccumulation in cassava, plantain, lettuce and sugarcane in the Kumasi metropolis in Ghana, West Africa. The aim is to establish water quality and food safety. Water, sediment and the food crops were sampled along the profiles of Wiwi and Subin rivers for analysis. T-test statistic shows that pH, HCO3, Cl, Cu, As, Pb and Ni are significant in water and sediment. Mean concentrations of Cu, As, Pb and Ni in water and sediment are (0.01mg/l; 3.2mg/kg), (3.08mg/l; 4.9mg/kg), (0.034mg/l; 8.7mg/kg) and (0.021mg/l; 6.1mg/kg), respectively. In water, As, Pb and Ni concentrations are above primary maximum contamination limits of 0.05 mg/l, 0.015 mg/l and 0.020mg/l with metal ratios of 61.54, 2.27 and 1.05, respectively. In sediment, As concentration is above the continental crustal background value of 1.8mg/kg with a metal ratio of 2.72. From geochemical process models: (1) As and Ni adsorbs into sediment and may lead to attenuation in water in closed systems; (2) Cu and Pd are in equilibrium and may affect water quality at higher concentrations. The food crops have trace metals concentrations below reference values and bioaccumulation factors 1 for Cu and As, respectively, while lettuce has TF>1 for Pd and Ni. Crops with TF>1 may bioaccumulate the respective trace metals in over a prolonged period.
机译:本文评估了西非加纳库玛西大都市木薯,车前草,生菜和甘蔗中城市郊区排水和生物富集中微量金属的一些地球化学性质。目的是建立水质和食品安全。沿着维维河和苏宾河的剖面对水,沉积物和粮食作物进行采样,以进行分析。 T检验统计数据表明,pH值,HCO3,Cl,Cu,As,Pb和Ni在水和沉积物中均显着。水和沉积物中的铜,砷,铅和镍的平均浓度分别为(0.01mg / l; 3.2mg / kg),(3.08mg / l; 4.9mg / kg),(0.034mg / l; 8.7mg / kg)和(0.021mg / l; 6.1mg / kg)。在水中,As,Pb和Ni的浓度分别高于最大最大污染限值0.05 mg / l,0.015 mg / l和0.020mg / l,金属比分别为61.54、2.27和1.05。在沉积物中,砷浓度高于大陆地壳本底值1.8mg / kg,金属比为2.72。根据地球化学过程模型:(1)砷和镍吸收到沉积物中,并可能导致封闭系统中的水衰减; (2)铜和钯处于平衡状态,在较高浓度下可能会影响水质。粮食作物中的痕量金属浓度低于参考值,铜和砷的生物蓄积系数分别为1,而生菜的钯和镍的TF> 1。 TF> 1的农作物可能会长时间长时间生物富集相应的痕量金属。

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