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Determination of Some Heavy Metals in Roadside Soils from Some Major Roads in Maiduguri, Borno State, Nigeria

机译:尼日利亚博物馆博恩州博物馆的一些主要道路的路边土壤中一些重金属的测定

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Heavy metal concentration in road side soils with its potential ecological effects draws much attention in the developing countries. This necessitates the study of their accumulation in the road side soils of Maiduguri (longitude 11 13 N; latitude 13 05 E), to ensure effective protection of soil from the potential loss of its fertility. In this study, roadside soil samples from major roads (Baga road, Bama road, Ngala road and Kano/Jos road) of Maiduguri were collected and determined the levels of heavy metals (As, Cr, Mn, Fe, Ni, Pb, Zn, Cd, and Cu) in the roadside soil using the Perkin-Elmer analyst 300 Atomic Absorption Spectroscopy (AAS). The results showed that in all the sampling locations, Mn, Zn, Fe and Pb have higher concentration of 137.40.04 mg/kg, 392.110.07 mg/kg, 13491.700.07 mg/kg and 928.500.04 mg/kg respectively in roadside soil as compared with Cd of concentration ranges from 0 to maximum of 0.870.04mg/kg in Ngala road. The concentrations of Pb and Cd in the soil samples were higher than the recommended value of 48 mg/kg and 5.0 mg/kg respectively. The higher concentration of these metals in the roadside soil samples may be attributed to human activities and traffic volume. Therefore, there is need to further study the concentrations of such heavy metals in agricultural soil, plants and vegetables grown in that area, animals that fed on the plants and any other source that directly or indirectly link to the source of food of the populace.
机译:道路侧土壤中的重金属浓度及其潜在的生态效应引起了发展中国家的重视。这需要研究他们在Maiduguri的路边土壤中积聚(经度11 13 n;纬度13 05 e),以确保从潜在的生育率丧失土壤保护土壤。在本研究中,收集了Maiduguri主要道路(巴拉路,巴拉路,牛尔岛路和Kano / Jos路)的路边土样品,并确定了重金属水平(如,Cr,Mn,Fe,Ni,Pb,Zn使用Perkin-Elmer分析师300原子吸收光谱(AAS)的路边土壤中的CD和Cu)。结果表明,在所有取样位置,Mn,Zn,Fe和Pb中,分别具有较高浓度的137.40.04mg / kg,392.110.07mg / kg,13491.700.07 mg / kg和928.500.04 mg / kg路边土相比,浓度的CD范围为0至最多0.870.04mg / kg在牛达尔路。土壤样品中Pb和Cd的浓度分别高于48mg / kg和5.0mg / kg的推荐值。路边土壤样品中这些金属的浓度较高可能归因于人类活动和交通量。因此,需要进一步研究在该地区生长的农业土壤,植物和蔬菜中这种重金属的浓度,饲喂植物上的动物和任何其他来源,这些来源直接或间接链接到群体的食物来源。

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