Managed aquifer recharge with reverse-osmosis desalinated seawater: modeling the spreading in groundwater using stable water isotopes

被引:13
作者
Ganot, Yonatan [1 ,2 ,5 ]
Holtzman, Ran [2 ]
Weisbrod, Noam [3 ]
Bernstein, Anat [3 ]
Siebner, Hagar [3 ]
Katz, Yoram [4 ]
Kurtzman, Daniel [1 ]
机构
[1] Agr Res Org, Inst Soil Water & Environm Sci, Volcani Ctr, IL-7505101 Rishon Leziyyon, Israel
[2] Hebrew Univ Jerusalem, Dept Soil & Water Sci, IL-7610001 Rehovot, Israel
[3] Ben Gurion Univ Negev, Dept Environm Hydrol & Microbiol, Zuckerberg Inst Water Res, Jacob Blaustein Inst Desert Res, IL-8499000 Midreshet Ben Gurion, Israel
[4] Water Co Ltd, Mekorot, IL-6713402 Tel Aviv, Israel
[5] Univ Calif Davis, Dept Land Air & Water Resources, Davis, CA 95616 USA
关键词
ENVIRONMENTAL ISOTOPES; SIMULATION; CALIBRATION; TRANSPORT; DYNAMICS;
D O I
10.5194/hess-22-6323-2018
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The spreading of reverse-osmosis desalinated seawater (DSW) in the Israeli coastal aquifer was studied using groundwater modeling and stable water isotopes as tracers. The DSW produced at the Hadera seawater reverse-osmosis (SWRO) desalination plant is recharged into the aquifer through an infiltration pond at the managed aquifer recharge (MAR) site of Menashe, Israel. The distinct difference in isotope composition between DSW (delta O-18 = 1.41 %; delta(2H) = 11.34 %) and the natural ground-water (delta O-18 = -4.48% to -5.43 %; delta H-2 = -18.41% to -22.68 %) makes the water isotopes preferable for use as a tracer compared to widely used chemical tracers, such as chloride. Moreover, this distinct difference can be used to simplify the system to a binary mixture of two end-members: desalinated seawater and groundwater. This approach is validated through a sensitivity analysis, and it is especially robust when spatial data of stable water isotopes in the aquifer are scarce. A calibrated groundwater flow and transport model was used to predict the DSW plume distribution in the aquifer after 50 years of MAR with DSW. The results suggest that after 50 years, 94% of the recharged DSW was recovered by the production wells at the Menashe MAR site. The presented methodology is useful for predicting the distribution of reverse-osmosis desalinated seawater in various downstream groundwater systems.
引用
收藏
页码:6323 / 6333
页数:11
相关论文
共 39 条
[1]   Variations in isotopic composition of desalinated water [J].
Al-Basheer, Watheq ;
Al-Jalal, AbdulAziz ;
Gasmi, Khaled .
WATER AND ENVIRONMENT JOURNAL, 2017, 31 (02) :209-214
[2]  
[Anonymous], 2017, WATER SUI, DOI DOI 10.3390/W9030177
[3]   Fundamental chemistry and engineering aspects of post-treatment processes for desalinated water - A review [J].
Birnhack, Liat ;
Voutchkov, Nikolay ;
Lahav, Ori .
DESALINATION, 2011, 273 (01) :6-22
[4]   Study of stable isotopes in the Kouris catchment (Cyprus) for the description of the regional groundwater flow [J].
Boronina, A ;
Balderer, W ;
Renard, P ;
Stichler, W .
JOURNAL OF HYDROLOGY, 2005, 308 (1-4) :214-226
[5]   SIMULATION OF CONTAMINANT TRANSPORT IN 3 DIMENSIONS .2. DIMENSIONALITY EFFECTS [J].
BURNETT, RD ;
FRIND, EO .
WATER RESOURCES RESEARCH, 1987, 23 (04) :695-705
[6]  
Carle S.F., 1999, T PROGS TRANSITION P, P84
[7]   The role of desalination in augmentation of water supply in GCC countries [J].
Dawoud, MA .
DESALINATION, 2005, 186 (1-3) :187-198
[8]   Integrating large scale seawater desalination plants within Israel's water supply system [J].
Dreizin, Y. ;
Tenne, A. ;
Hoffman, D. .
DESALINATION, 2008, 220 (1-3) :132-149
[9]   Geochemical Processes During Managed Aquifer Recharge With Desalinated Seawater [J].
Ganot, Y. ;
Holtzman, R. ;
Weisbrod, N. ;
Russak, A. ;
Katz, Y. ;
Kurtzman, D. .
WATER RESOURCES RESEARCH, 2018, 54 (02) :978-994
[10]   Monitoring and modeling infiltration-recharge dynamics of managed aquifer recharge with desalinated seawater [J].
Ganot, Yonatan ;
Holtzman, Ran ;
Weisbrod, Noam ;
Nitzan, Ido ;
Katz, Yoram ;
Kurtzman, Daniel .
HYDROLOGY AND EARTH SYSTEM SCIENCES, 2017, 21 (09) :4479-4493