首页> 外文期刊>Journal of African Earth Sciences >Time dependent electrical resistivity tomography and seasonal variation assessment of groundwater around the Olushosun dumpsite Lagos, South-west, Nigeria
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Time dependent electrical resistivity tomography and seasonal variation assessment of groundwater around the Olushosun dumpsite Lagos, South-west, Nigeria

机译:尼日利亚西南部拉各斯Olushosun垃圾场周围地下水的时变电阻层析成像和季节性变化评估

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Time-lapse electrical resistivity tomography (ERT) and seasonal variation studies of the physicochemical properties of groundwater were carried out on the Olushosun dumpsite in Lagos South-western Nigeria, to monitor, track the depth of leachate contamination, and to investigate the impact of seasonal variation on groundwater quality around the dumpsite. Six 2-D resistivity imaging lines were investigated. The independent inversion of the dipole dipole and pole-dipole resistivity data indicated that contaminated zones are characterised by resistivity values ranging from 0.63 to 12.5 Omega m, and a maximum depth of 141 m was investigated. The pole-dipole models show clear evidence of vertical migration of contaminant with time, as depth of contamination increased from 106 m in May 2014 to about 120 m in December 2015 around the investigated portion of the dumpsite. Analysis of the seasonal variation of the examined physicochemical properties of the water samples taken from wells and boreholes within and around the site showed that there is increase in concentration of TDS and EC in the dry season study and a corresponding increase in the mean concentration of pH, Ca, Mg, hardness, Cu, Cr, NO3, SO4 and Na from the dry season results. Also, there is reduction in the mean concentration of Fe, Zn, Mn, PO4, Cl, and Ni in the dry season when compared with the wet season analysis. Generally, there is a strong correlation between the ERT results and the physicochemical parameters of ground water quality viz-a-viz the contamination status of the Olushosun dumpsite. This increased trend in the dry season period could be attributed to the increase in concentration of the dissolved metals due to evaporation, and on the other hand, dilution effect of the rainfall during the wet season. South East direction of contaminant flow was established from the water table contour lines produced for the area. The research has clearly shown that the groundwater within the study area has been impacted by the leachate from the decomposed refuse at the dumpsite and may constitute danger to the life of residents living around the dumpsite.
机译:在尼日利亚西南部拉各斯的Olushosun垃圾场上进行了时移电阻层析成像(ERT)和地下水的理化性质的季节性变化研究,以监测,跟踪渗滤液的污染深度,并调查季节性影响垃圾场周围地下水质量的变化。研究了6条二维电阻率成像线。偶极偶极和极偶极电阻率数据的独立反演表明,污染区的特征是电阻率值介于0.63至12.5Ωm之间,并且研究了最大深度141 m。极子-偶极子模型显示了污染物随时间垂直迁移的清晰证据,因为污染物深度从2014年5月的106 m增加到2015年12月在垃圾场附近的约120 m。从现场内外的水井和钻孔中抽取的水样的理化性质的季节性变化分析表明,在旱季研究中,TDS和EC的浓度增加,pH的平均浓度相应增加,钙,镁,硬度,铜,铬,NO3,SO4和Na均来自干旱季节。此外,与雨季分析相比,旱季的Fe,Zn,Mn,PO4,Cl和Ni的平均浓度降低。通常,ERT结果与地下水质量的物理化学参数(即Olushosun垃圾场的污染状况)之间存在很强的相关性。干旱季节期间这种增加的趋势可能归因于由于蒸发引起的溶解金属浓度的增加,另一方面,是由于雨季期间降雨的稀释作用。根据该区域产生的地下水位等高线确定污染物向东南方向流动。研究清楚地表明,研究区域内的地下水已受到垃圾场中腐烂垃圾产生的渗滤液的影响,并可能对垃圾场周围居民的生命构成危险。

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