Arid
DOI10.1016/j.jhydrol.2016.12.009
Hydrochemical and stable isotope indicators of pyrite oxidation in carbonate-rich environment; the Hamersley Basin, Western Australia
Dogramaci, Shawan1,2; McLean, Laura2; Skrzypek, Grzegorz2
通讯作者Skrzypek, Grzegorz
来源期刊JOURNAL OF HYDROLOGY
ISSN0022-1694
EISSN1879-2707
出版年2017
卷号545页码:288-298
英文摘要

Sulphur (S) is a commonly occurring element in most aquifers, primarily in oxidised (sulphates) and reduced (sulphides) forms. Sulphides often constitute a risk to groundwater quality due to acid rock drainage, especially in catchments that are subject to mining excavations or groundwater injection. However, in semi-arid regions detection of the acid rock drainage risk can be challenging and traditional methods based on observations of increasing SO4 concentrations or SO4/Cl ratios in surface and groundwater, are not necessarily applicable. In addition, decreasing pH, usually accompanying pyrite oxidation, can be masked by the high pH-neutralisation capacity of carbonate and silicate minerals.


Analysis of 73 surface and groundwater samples from different water bodies and aquifers located in the Hamersley Basin, Western Australia found that most of the samples are characterised by neutral pH but there was also a large spatial variability in the dissolved sulphate (SO4) concentrations that ranged from 1 mg/L to 15,000 mg/L. Not surprisingly, groundwater in aquifers that contained pyrite had high sulphate concentrations (>1000 mg/L). This was associated with low delta S-34(SO4) values (+1.2 parts per thousand to +4.6 parts per thousand) and was consistent with the values obtained from aquifer matrix pyritic rock samples (-1.9 parts per thousand to +4.4 parts per thousand). It was also found that the SO4 concentrations and acidity levels were not only dependent on delta S-34(SO4) values and existence of pyrite but also on the presence of carbonate minerals in the aquifer matrix. The groundwater in aquifers containing both pyrite and carbonate minerals had a neutral pH and was also saturated with respect to gypsum and had high magnesium concentrations of up to 2200 mg/L suggesting de-dolomitisation as the process buffering the acidity generated by pyrite oxidation.


Based on the findings from this study, a classification scheme has been developed for identification of the acid rock drainage contribution to groundwater that encompasses a myriad of geochemical processes that occur in aqueous systems. The classification uses five proxies (SO4, SO4/Cl, SI of calcite, delta S-34(SO4) and delta O-18(SO4)) to improve assessment of the oxidation of sulphide potential contribution to overall sulphate ion concentrations regardless of acidity levels of the aqueous system. (C) 2016 Elsevier B.V. All rights reserved.


英文关键词Sulphur Oxygen Isotope Groundwater ARD Western Australia
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000394399100022
WOS关键词ACID-MINE DRAINAGE ; SULFUR-ISOTOPE ; NORTHWEST AUSTRALIA ; MURRAY BASIN ; OXYGEN ; GROUNDWATER ; SULFATE ; GEOCHEMISTRY ; SALINITY ; SYSTEM
WOS类目Engineering, Civil ; Geosciences, Multidisciplinary ; Water Resources
WOS研究方向Engineering ; Geology ; Water Resources
来源机构University of Western Australia
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/200562
作者单位1.Rio Tinto Iron Ore, 152-158 St Georges Terrace, Perth, WA 6000, Australia;
2.Univ Western Australia, West Australian Biogeochem Ctr, Sch Plant Biol M090, 35 Stirling Highway, Crawley, WA 6009, Australia
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Dogramaci, Shawan,McLean, Laura,Skrzypek, Grzegorz. Hydrochemical and stable isotope indicators of pyrite oxidation in carbonate-rich environment; the Hamersley Basin, Western Australia[J]. University of Western Australia,2017,545:288-298.
APA Dogramaci, Shawan,McLean, Laura,&Skrzypek, Grzegorz.(2017).Hydrochemical and stable isotope indicators of pyrite oxidation in carbonate-rich environment; the Hamersley Basin, Western Australia.JOURNAL OF HYDROLOGY,545,288-298.
MLA Dogramaci, Shawan,et al."Hydrochemical and stable isotope indicators of pyrite oxidation in carbonate-rich environment; the Hamersley Basin, Western Australia".JOURNAL OF HYDROLOGY 545(2017):288-298.
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