电阻率法在评价含水层保护能力和土壤腐蚀性中的应用——以尼日利亚东北部wajari及其周边地区为例

A. Yusuf, H. Haruna, R. P. Tabale, S. Mukkafa, I. A. Kwami
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引用次数: 1

摘要

电阻率技术应用于尼日利亚东北部Wajari及其周边地区覆盖层单元的腐蚀程度和含水层保护能力(APC)或含水层脆弱性的研究。本研究的目的包括:列出地下水易受地表污染物污染的地区,以及可能对地下金属管道具有腐蚀性的地下土壤。利用AB/2 = 80 m的电极展布,研究了12个垂直电测深(VES)位置。采用斯伦贝谢阵列法,部署OHMEGA Terrameter进行数据采集。利用Win-Resist、Microsoft- Excel和surf -13软件对结果进行分析(解释)。电阻率数据解释揭示了4个地电层,生成的分布曲线为A、H、K、HK和QQ型。覆岩岩性单元实测厚度范围为0.396 ~ 27.2 m,平均值为5.407m。覆岩地质单元的纵向电导在0.0199 ~ 3934 mhos之间。当前研究的ves04显示出相当高的表土电阻率特征,实际上是非腐蚀性的(VNC)。其中,08、09、10级具有中等腐蚀性,01、02、03、05、06、07、11、12级具有轻微腐蚀性。根据获得的纵向电导值,划定了5个显著的含水层保护能力区;即差(03、04、05和08分)、弱(01、07和10分)、中等(02和06分)、很好(09分)和优秀(11和12分)。研究区的ves01、03、04、05、07、08和10区由于APC的变化可能会受到地表污染的影响,而VES02、06、09、11和12区由于APC的变化可能不会受到地表污染的影响。因此,考虑到贡贝州政府在这一地区(贡贝-达丁-科瓦路线)规划的工业园区选址。这项研究的结果将成为该地区地下水、工业和基础设施发展规划中需要考虑的技术问题的一部分
本文章由计算机程序翻译,如有差异,请以英文原文为准。
APPLICATION OF ELECTRICAL RESISTIVITY METHOD IN EVALUATION OF AQUIFER PROTECTIVE CAPACITY AND SOIL CORROSIVITY: A CASE STUDY OF WAJARI AND ENVIRONS, NORTHEASTERN, NIGERIA
Electrical resistivity technique was deployed in the study of extent of corrosivity and aquifer protective capacity (APC) or aquifer vulnerability of the overburden units around Wajari and environs, north eastern Nigeria. The objectives of this research includes; outlining areas that have high susceptibility to groundwater pollution from surface pollutants and subsurface soils that could be corrosive to buried metal pipes. Twelve (12) vertical electrical sounding (VES) locations were studied using electrode spreads of AB/2 equals to 80 m. OHMEGA Terrameter was deployed to acquire the data by employing Schlumberger array method. The analysis (interpretations) of the results were assisted by employing Win-Resist, Microsoft- Excel and surfer-13 Software The resistivity data interpretation revealed 4 geo-electric layers and the generated distribution curves are of type A, H, K, HK, and QQ. The measured thickness of the overburden lithologic units are in the range of 0.396 m to 27.2 m, with an average value of5.407m. The longitudinal conductance of the overburden geologic units are in the range of 0.0199 mhos to 3934 mhos. VES 04 of the current study showed quite high topsoil resistivity signatures which is virtually non-corrosive (VNC). However, VES 08, 09 and 10 have moderate corrosivity and VES 01, 02, 03, 05, 06, 07, 11 and 12 are slightly corrosive. Five noticeable aquifer protective capacity zones were demarcated, on the basis of the obtained values of longitudinal conductance; namely poor (VES 03, 04, 05 and 08), weak (VES 01, 07 and 10), moderate (VES 02 and 06), very good (VES 09) and excellent (VES 11 and 12). VES 01, 03, 04,05, 07, 08 and 10 of the research area could be susceptible to surface pollution whereas, VES02, 06, 09, 11, and 12 might not be susceptible to pollution due to the variation in the APC. Therefore, considering the planned siting of industrial park along this area (Gombe - Dadin Kowa route) by the Government of Gombe State. The results of this research shall form parts of the technical issues to be considered for groundwater, industrial, and infrastructural development planning of the area
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