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尼日利亚西南部奥克泰格固体废物倾倒场污染物影响的地球物理和地球化学研究。

Geophysical and geochemical study of the contaminant impact of Oke-Tage solid waste dumpsite, Southwestern Nigeria.

机构信息

Department of Physics and Engineering Physics, Obafemi Awolowo University, Ile-Ife, Nigeria.

Department of Chemistry, Obafemi Awolowo University, Ile-Ife, Nigeria.

出版信息

Sci Rep. 2023 Mar 22;13(1):4704. doi: 10.1038/s41598-023-31948-3.

Abstract

The physicochemical properties of groundwater, geochemical characteristics and subsurface formation of the Oke-Tage waste dumpsite soil material were assessed to determine the impact of the leachate generated from the waste dumpsite on the quality of the groundwater within the study area. Water samples collected from hand-dug wells were analyzed to determine groundwater quality, while soil samples were examined for their geochemical characteristics. Ten Vertical Electrical Sounding (VES) surveys were carried out with an electrode spacing (AB/2) increasing from 1 to 200 m. Also, four 2D electrical resistivity profilings were done using the dipole-dipole configuration. The hydro-chemical analysis showed an elevated Cadmium (Cd) and Lead (Pb) concentration above the maximum permissible limits. The physicochemical results indicated that the Electrical Conductivity (EC) ranged from 1900 to 3670 µS/m, while Total Dissolved Solid (TDS) ranged from 585 to 620 mg/L. The health risk assessment showed no significant health risks associated with exposure to the metals due to HI values less than 1. Based on the VES result, four geoelectric layers comprising topsoil, weathered layer, fractured basement, and fresh basement were identified. The 2D resistivity structures revealed that the topsoil and weathered layers practically merged and are characterized by relatively low resistivity (< 30 Ωm) beneath the dump site. The study concluded that the groundwater and soil in the vicinity of the investigated Oke-Tage waste dumpsite had been negatively impacted to levels that called for caution especially using the water for regular potability purposes.

摘要

对奥克塔格废物倾倒场土壤物质的地下水物理化学性质、地球化学特征和地下地层进行了评估,以确定废物倾倒场产生的渗滤液对研究区域内地下水质量的影响。采集了手挖井中的水样来分析地下水质量,同时还检查了土壤样本的地球化学特征。进行了 10 次垂直电测深(VES)测量,电极间距(AB/2)从 1 米增加到 200 米。还使用偶极-偶极配置进行了 4 次 2D 电阻率 profiling。水化学分析显示,镉(Cd)和铅(Pb)的浓度超过了最大允许限值。物理化学结果表明,电导率(EC)范围为 1900 至 3670 µS/m,总溶解固体(TDS)范围为 585 至 620 mg/L。健康风险评估显示,由于 HI 值小于 1,与接触金属相关的健康风险并不显著。根据 VES 结果,确定了包含表土、风化层、断裂基底和新鲜基底的四个地球电层。2D 电阻率结构表明,表土和风化层在倾倒场下方几乎合并,并且特征是电阻率相对较低(<30 Ωm)。研究得出结论,受调查的奥克塔格废物倾倒场附近的地下水和土壤受到了负面影响,需要引起警惕,特别是将其用于日常饮用水目的时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a33/10033965/54705239a43a/41598_2023_31948_Fig1_HTML.jpg

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