Arid
DOI10.1016/j.jafrearsci.2004.07.004
Stable isotope (chlorine, hydrogen and oxygen), geochemical and field evidence for continental fluid flow vectors in the Al-Khiran sabkha (Kuwait)
Duane, MJ; Al-Zamel, A; Eastoe, CJ
通讯作者Duane, MJ
来源期刊JOURNAL OF AFRICAN EARTH SCIENCES
ISSN0899-5362
出版年2004
卷号40期号:1-2页码:49-60
英文摘要

The elevated coastal barriers of southern Kuwait minimize the effects of seawater intrusion into the Al-Khiran sabkha by focusing continental fluids into a now sedimented lagoon. This topographic-hydrologic regime is reflected in the chemistry and isotopic character of the waters, where a steady evaporative concentration gradient is recorded from inland to the coastal basins. Presently the sabkha is in a state of depositional equilibrium.


Two east west traverses were conducted orthogonal to the main facies boundaries, providing new data on deltaDparts per thousand, delta(18)Oparts per thousand and delta(37)Clparts per thousand isotopic compositions of the marine and coastal sabkha waters. Observations on the E-W traverse into the desert, show that samples near the tidal creek but going west increase in heavy isotopes. deltaD and delta(18)O values for the brines range from -11 to +38parts per thousand and -0.1 to +10.3parts per thousand, respectively. This trend is explained without invoking tidal inundation of the sabkha or excessive seawater mixing. Rather, the data fit an "ascending-brine model" whereby continental waters dominate the reflux media. The main batch of waters sampled form a group isotopically distinct from the local meteoritic water and the Neogene formation waters. They represent an apparent evaporation trend from old formation waters from the two main Kuwait aquifers (Damman Limestone and Kuwait Group gravels), with a characteristic increase in heavier isotopes. Only a narrow band of the data indicate sabkha waters with an evaporitic seawater signature (adjacent to the tidal creeks). Zones of mixing are represented by low pH and progressive gradients in chemical species (SO4, Cl, Mg, K, Br and Ca), and the sectors within the sabkha are considered to be anomalously narrow (<100sm) by contrast with the classic Trucial Coast sabkhas (10s km).


The range of delta(37)Cl values, -0.5 to 0.3parts per thousand, extends well above the range predicted for simple evaporation of seawater but largely decoupled from the deltaD and delta(18)O trends. delta(37)Cl isotopic signatures suggest that dissolution of evaporites occurs in the bare sabkha facies probably in response to laterally descending ephemeral meteoritic waters. A combination of wind-transported Cl and diffusion explains the observed delta(37)Cl values. This study emphasizes the important aspects of continental-marine brine interface which can be used for modelling economic and environmental aspects of sabkhas. (C) 2004 Elsevier Ltd. All rights reserved.


英文关键词sabkha isotopes fluid flow evaporites dissolution
类型Article
语种英语
国家Kuwait ; USA
收录类别SCI-E
WOS记录号WOS:000225564700004
WOS关键词ARABIAN GULF ; ABU-DHABI ; SURFACE GEOLOGY ; COASTAL SABKHA ; PERSIAN GULF ; EVAPORITES ; DOLOMITE ; BRINES ; DOLOMITIZATION ; EVOLUTION
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
来源机构University of Arizona
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/147096
作者单位(1)Kuwait Univ, Dept Earth & Environm Sci, Safat 13060, Kuwait;(2)Univ Arizona, Dept Geosci, Tucson, AZ 85721 USA
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Duane, MJ,Al-Zamel, A,Eastoe, CJ. Stable isotope (chlorine, hydrogen and oxygen), geochemical and field evidence for continental fluid flow vectors in the Al-Khiran sabkha (Kuwait)[J]. University of Arizona,2004,40(1-2):49-60.
APA Duane, MJ,Al-Zamel, A,&Eastoe, CJ.(2004).Stable isotope (chlorine, hydrogen and oxygen), geochemical and field evidence for continental fluid flow vectors in the Al-Khiran sabkha (Kuwait).JOURNAL OF AFRICAN EARTH SCIENCES,40(1-2),49-60.
MLA Duane, MJ,et al."Stable isotope (chlorine, hydrogen and oxygen), geochemical and field evidence for continental fluid flow vectors in the Al-Khiran sabkha (Kuwait)".JOURNAL OF AFRICAN EARTH SCIENCES 40.1-2(2004):49-60.
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