尼日利亚拉各斯州Soluos垃圾场周边地下水重金属浓度分布预测

F. Adeyemo, L. Salami
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引用次数: 0

摘要

水污染是对人类生命的威胁。垃圾场的渗滤液中的重金属污染了垃圾场附近的地下水。对拉各斯州Soluos垃圾场周围地下水重金属浓度进行了预测。利用矩阵实验室(Matlab) 7.9中实现的有限差分技术,建立了一个含衰减因子的一维输运模型,预测了Soluos垃圾场附近地下水中重金属的浓度分布。本文研究的重金属铅(Pb)、铜(Cu)、镍(Ni)、铬(Cr)和铁(Fe)的浓度分布相似,但浓度值不同。在Salami和Susu的工作中,一维输运模型与不考虑衰减因子的一维输运模型相比,对Soluos垃圾场附近22 m深度地下水的实验数据的预测置信度高达98%,而一维输运模型对实验数据的预测置信度高达94%。预测了38、46、54、62 m深度地下水重金属浓度分布。结果表明,含衰减因子的一维输运模型比不含衰减因子的一维输运模型对索洛斯垃圾场周围地下水重金属的预测效果更好。预测的不同深度的浓度分布可以作为一个指南,以确定在Soluos垃圾场附近的钻孔深度,以便提供良好的地下水。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction of Heavy Metals Concentrations Profiles in Groundwater around Soluos Dumpsite in Lagos State, Nigeria
Water pollution is a threat to human life. Heavy metals in leachates from dumpsites pollute groundwater within the vicinity of the dumpsites. This work was carried out to predict the heavy metals concentration profiles in groundwater around Soluos dumpsite in Lagos State. A one dimensional transport model with a decay factor component was used to predict the concentration profiles of heavy metals in groundwater within the vicinity of Soluos dumpsite using finite difference techniques implemented in matrix laboratory (Matlab) 7.9. the concentration profiles for heavy metals considered in this work which include lead (Pb), copper (Cu), nickel (Ni), chromium (Cr) and Iron (Fe) were similar but different in term of concentrations values. The one dimensional transport model used predicted the experimental data from groundwater at the depth of 22 m within the vicinity of Soluos dumpsite up to 98 percent confidence level compare to a one dimensional transport model without a decay factor which predicted the experimental data up to 94 percent confidence level in the work of Salami and Susu. The concentration profiles of heavy metals in groundwater were also predicted at the depths of 38, 46, and 54 and 62 m. It was shown that the one dimensional transport model with a decay factor component yeilded a better prediction of heavy metals in groundwater around Solous dumpsite than the one dimensional transport model without a decay factor. The predicted concentration profiles at various depths can be used as a guide to determine the depth to which boreholes within the vicinity of Soluos dumpsite should be dug for the purpose of provision of good groundwater.    
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