首页> 外文期刊>Journal of Environment and Earth Science >Trace Metals and Hydraulic Characterization of Soils and Groundwater Around Ajakanga Dumpsite in Ibadan Metropolis, Southwest Nigeria.
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Trace Metals and Hydraulic Characterization of Soils and Groundwater Around Ajakanga Dumpsite in Ibadan Metropolis, Southwest Nigeria.

机译:尼日利亚西南部伊巴丹都会区Ajakanga垃圾场周围土壤和地下水的微量金属和水力特征。

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Trace metals concentrations and hydraulic characteristics of soil were studied with a view to assessing the impact of the Ajakanga dumpsite in Ibadan, Southwest Nigeria, on soil and groundwater. Forty one surface soil samples were taken at the depth of 0.2 cm, eleven samples each of disturbed and undisturbed soils along two (2) vertical profiles at up-slope and down-slope pits within the dumpsite premises. Eight groundwater samples were also collected. Digestion of 0.5 gm each of fraction (< 63 μm) of the soil samples was carried out. Both the digested soil and groundwater samples were analysed for Zn, Cu, Mn, Pb, Cd, Ni, As, Co and Cr using Buck Model 205 Atomic Absorption Spectrophotometer (AAS). The undisturbed soils were used for the determination of hydraulic properties. The data collected were interpreted using appropriate qualitative and quantitative statistical techniques. Trace elements results for soil showed average values for Zn (29.30 ± 16.1 mg/L), Pb (14.72 ± 0.84 mg/L), Cd (2.49 ± 0.48 mg/L), Ni (2.03 ± 1.12 mg/L), As (0.84 ± 0.22 mg/L), Co (0.16 ± 0.10 mg/L) and Cr (0.92 ± 1.40 mg/L) that were higher than those of control site values suggesting contamination. Grain size analysis showed that the clay size particles average abundance was higher in the B-level of the down-slope soil profile with mean value of 5.07±0.82 % compared with mean value of 4.85 ± 0.59 % at the up-slope pit. Evaluated results showed that the B-level is more polluted than the A and C levels probably due to adsorbsion effect of clay-sized materials that are more abundant in the B-level. Groundwater trace elements average concentration values were Mn (0.31± 0.74), Pb (0.03 ± 0.04), Cd (0.02 ± 0.03 mg/L), As (0.06 ±0.03 mg/L) and Ni (0.13 ± 0.08mg/L) which were higher than the WHO (2007) permissible levels especially in samples taken close to the dumpsite. The study concluded that the soils and groundwater samples close to Ajakanga open dumpsites were more polluted than those taken far away. The soil contamination was well pronounced within 0 – 3.5 m of the vertical soil profile at the dumpsite vicinity.
机译:为了评估尼日利亚西南部伊巴丹的Ajakanga垃圾场对土壤和地下水的影响,研究了土壤中的痕量金属浓度和水力特征。在0.2厘米的深度处采集了41个表层土壤样品,在垃圾场场所内的上坡和下坡坑,沿着两(2)个垂直剖面,分别对11个扰动和未扰动土壤进行采样。还收集了八个地下水样品。对每份土壤样品(<63μm)进行0.5 gm的消化。使用Buck 205型原子吸收分光光度计(AAS)分析了消化的土壤和地下水样品中的Zn,Cu,Mn,Pb,Cd,Ni,As,Co和Cr。未受干扰的土壤用于确定水力性质。使用适当的定性和定量统计技术解释收集的数据。土壤微量元素结果显示锌(29.30±16.1 mg / L),铅(14.72±0.84 mg / L),镉(2.49±0.48 mg / L),镍(2.03±1.12 mg / L)的平均值(0.84±0.22 mg / L),Co(0.16±0.10 mg / L)和Cr(0.92±1.40 mg / L)均高于表明有污染的对照值。粒度分析表明,在下坡土壤剖面的B层,粘土粒度颗粒的平均丰度更高,平均值为5.07±0.82%,而上坡坑的平均值为4.85±0.59%。评估结果表明,B级比A级和C级污染更严重,这可能是由于B级中含量较高的粘土胶料的吸附作用所致。地下水中痕量元素的平均浓度值为Mn(0.31±0.74),Pb(0.03±0.04),Cd(0.02±0.03 mg / L),As(0.06±0.03 mg / L)和Ni(0.13±0.08mg / L)高于世卫组织(2007年)允许的水平,尤其是在垃圾场附近采集的样品中。研究得出的结论是,靠近阿贾坎加露天垃圾场的土壤和地下水样品比远处采集的土壤和地下水污染程度更高。在垃圾场附近垂直土壤剖面的0 – 3.5 m范围内,土壤污染非常明显。

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