Impact of managed aquifer recharge on the chemical and isotopic composition of a karst aquifer, Wala reservoir, Jordan (vol 23, pg 1027, 2015)

被引:0
|
作者
Xanke, Julian
Goeppert, Nadine
Sawarieh, Ali
Liesch, Tanja
Klinger, Jochen
Ali, Wasim
Hoetzl, Heinz
Hadidi, Khair
Goldscheider, Nico
机构
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D O I
10.1007/s10040-015-1262-1
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Storm-water harvesting and storage via managed aquifer recharge (MAR) is a promising approach to combat water scarcity in semi-arid regions, but poses a challenge for karst aquifers and regions with highly variable water availability. The infiltration of low-mineralized surface water and its impact on highly mineralized groundwater of a karst aquifer was investigated at Wala reservoir in Jordan over a period of approximately 10 years. The results show significant groundwater-level rise in a wellfield, in response to the yearly average infiltration of about 6.7 million m(3). This corresponds to about 60 % of the yearly average abstraction of about 11.7 million m(3), confirmed by mixing calculations with tritium. A decreasing trend in infiltration due to sedimentation is observed. Mean groundwater residence times of several thousand years, derived from carbon-14 dating, indicate a large storage capacity of the aquifer. The heterogeneous distribution of the residence times is caused by strong groundwater withdrawals and artificial recharge along with karst-specific aquifer characteristics. Temporal groundwater salinity fluctuations in the wellfield are observed after the first MAR infiltration. Enhanced groundwater flow along the wadi course was demonstrated, which is an important aspect with regards to future MAR projects in similar wadis of the region.
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页码:1041 / 1041
页数:1
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