Arid
DOI10.1016/j.jafrearsci.2016.05.031
Geophysical and geochemical studies to delineate seawater intrusion in Bagoush area, Northwestern coast, Egypt
Eissa, Mustafa A.1,2,3; Mahmoud, Hussein Hosni4; Shouakar-Stash, Orfan2,3; El-Shiekh, Abdelfattah5; Parker, Beth3
通讯作者Eissa, Mustafa A.
来源期刊JOURNAL OF AFRICAN EARTH SCIENCES
ISSN1464-343X
EISSN1879-1956
出版年2016
卷号121页码:365-381
英文摘要

Coastal aquifers are the main source for sustainable freshwater in many arid and semi-arid regions around the earth. In such regions, groundwater extraction far exceeds the natural replenishment rates due to additional demands on groundwater resources especially in the last few decades. The characterization of the seawater intrusion in the Baghoush area along the northwestern coast of Egypt assesses the risk of seawater intrusion for the purpose of managing the groundwater resources in coastal areas. The (SI) in the oolitic Pleistocene aquifer is affected by several natural factors, including the drainage patterns, geological structures, distance from the sea and the manipulation of groundwater. Electrical Resistivity Tomography (ERT) has been implemented to identify the geometry of the brackish/saline water interface and to map the distribution of brackish water zone floating over the denser saline water. Seven 2-D resistivity imaging profiles were conducted using a Wenner array with different electrode distance spacings. The inverse resistivity models of these profiles indicate that these profiles are composed of three zones: the upper dry zone, the middle brackish water zone, and the lower saline water zone. The thickness of the brackish groundwater zone decreases toward the sea and the resistivity decreases with depth due to increase in water salinity. Water table along these profiles decreases from south to north, which indicates that groundwater flow is from south (inland) to north (sea). Groundwater chemistry and stable isotopes were used to determine the fresh groundwater recharge source(s), to identify mixing of different groundwaters, to evaluate seawater intrusion zone along the coast, and to investigate the upwelling of deep saline groundwater underneath the brackish zone. The recharge of fresh groundwater originates from the mountain watershed located upstream as well as the annual rainfall; however, seawater is the main source of groundwater salinization. The estimated mixing ratios between the fresh groundwater recharge to seawater ranges between 32% and 75% groundwater to 68% and 25% seawater. The outcomes of this study emphasize the importance of closely monitoring groundwater management to limit upwelling of the underlying salt-water into the overlying groundwater along the coast to limit further seawater intrusion. (C) 2016 Elsevier Ltd. All rights reserved.


英文关键词Seawater intrusion Electrical resistivity tomography Hydrogeochemistry Chlorine isotopes Northwestern coast Egypt
类型Article
语种英语
国家Egypt ; Canada
收录类别SCI-E
WOS记录号WOS:000381167900029
WOS关键词WADI WATIR DELTA ; GROUNDWATER RECHARGE ; STABLE-ISOTOPES ; SALINIZATION ; FRACTIONATION ; AQUIFER ; LIQUID ; VAPOR ; CHEMISTRY ; SINAI
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/193931
作者单位1.Desert Res Ctr, Hydrogeochem Dept, Cairo, Egypt;
2.Univ Guelph, G Grp 360, Ctr Appl Groundwater Res, Guelph, ON, Canada;
3.Isotope Tracer Technol Inc, Waterloo, ON, Canada;
4.Desert Res Ctr, Geophys Explorat Dept, Cairo, Egypt;
5.Desert Res Ctr, Hydrol Dept, Cairo, Egypt
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Eissa, Mustafa A.,Mahmoud, Hussein Hosni,Shouakar-Stash, Orfan,et al. Geophysical and geochemical studies to delineate seawater intrusion in Bagoush area, Northwestern coast, Egypt[J],2016,121:365-381.
APA Eissa, Mustafa A.,Mahmoud, Hussein Hosni,Shouakar-Stash, Orfan,El-Shiekh, Abdelfattah,&Parker, Beth.(2016).Geophysical and geochemical studies to delineate seawater intrusion in Bagoush area, Northwestern coast, Egypt.JOURNAL OF AFRICAN EARTH SCIENCES,121,365-381.
MLA Eissa, Mustafa A.,et al."Geophysical and geochemical studies to delineate seawater intrusion in Bagoush area, Northwestern coast, Egypt".JOURNAL OF AFRICAN EARTH SCIENCES 121(2016):365-381.
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