Arid
DOI10.1016/j.gca.2013.08.016
Chromium isotope variations (delta Cr-53/52) in mantle-derived sources and their weathering products: Implications for environmental studies and the evolution of delta Cr-53/52 in the Earth’s mantle over geologic time
Farkas, Juraj1; Chrastny, Vladislav1; Novak, Martin1; Cadkova, Eva1; Pasava, Jan1; Chakrabarti, Ramananda2,3; Jacobsen, Stein B.2; Ackerman, Lukas1,4; Bullen, Thomas D.5
通讯作者Farkas, Juraj
来源期刊GEOCHIMICA ET COSMOCHIMICA ACTA
ISSN0016-7037
EISSN1872-9533
出版年2013
卷号123页码:74-92
英文摘要

Here we report chromium isotope compositions, expressed as delta Cr-53/ 52 in per mil (&) relative to NIST 979, measured in selected Cr-rich minerals and rocks formed by the primary magmatic as well as the secondary metamorphic and weathering processes. The main objectives of this study were: (i) to further constrain the isotope composition of the Earth’s mantle Cr inventory and its possible variation during geological history, based on the analysis of globally distributed and stratigraphically constrained mantle-derived chromites; and (ii) to investigate the magnitude and systematics of Cr isotope fractionation during oxidative weathering and secondary alteration (i. e., hydration, serpentinization) of the magmatic Cr sources. Specifically, we analyzed delta Cr-53/ 52 in a set of globally distributed mantle-derived chromites (FeMgCr2O4, n = 30) collected from various locations in Europe, Asia, Africa and South America, and our results confirm that a chromite-hosted Earth’s mantle Cr inventory is uniform at - 0.079 +/- 0.129& (2SD), which we named here as a ` canonical’ mantle d 53/ 52 Cr signature. Furthermore our dataset of stratigraphically constrained chromites, whose crystallization ages cover most of the Earth’s geological history, indicate that the bulk Cr isotope composition of the chromite-hosted mantle inventory has remained uniform, within about +/- 0.100&, since at least the Early Archean times (similar to 3500 million years ago, Ma).


To investigate the systematics of Cr isotope fractionation associated with alteration processes we analyzed a number of secondary Cr-rich minerals and variably altered ultramafic rocks (i. e., serpentinized harzburgites, lherzolites) that revealed large positive delta Cr-53/ 52 anomalies that are systematically shifted to higher values with an increasing degree of alteration and serpentinization. The degree of aqueous alteration and serpentinization was quantified by the abundances of fluid-mobile (Rb, K) elements, and by the Loss On Ignition (LOI) parameter, which determines the amount of structurally bound water (OH/ H2O) present in secondary hydrated minerals like serpentine. Overall, we observed that altered ultramafic rocks that yielded the highest LOI values, and the lowest amounts of fluid mobile elements, also yielded the heaviest delta Cr-53/ 52 signatures. Therefore, we conclude that secondary alteration (i.e., hydration, serpentinization) of ultramafic rocks in near-surface oxidative environments tend to shift the bulk Cr isotope composition of the weathered products to isotopically heavier values, pointing to a dynamic redox cycling of Cr in the Earth’s crustal and near-surface environments. Hence, if validated by future


类型Article
语种英语
国家Czech Republic ; USA ; India
收录类别SCI-E
WOS记录号WOS:000326871400005
WOS关键词CR STABLE-ISOTOPES ; BOHEMIAN MASSIF ; HEXAVALENT CHROMIUM ; PERIDOTITE XENOLITHS ; MOJAVE DESERT ; FRACTIONATION ; REDUCTION ; DEPOSITS ; EVENT ; SERPENTINIZATION
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
来源机构United States Geological Survey
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/177317
作者单位1.Czech Geol Survey, Prague, Czech Republic;
2.Harvard Univ, Dept Earth & Planetary Sci, Cambridge, MA 02138 USA;
3.Indian Inst Sci, Ctr Earth Sci, Bangalore 560012, Karnataka, India;
4.Acad Sci Czech Republic, Inst Geol, Prague, Czech Republic;
5.US Geol Survey, Menlo Pk, CA 94025 USA
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GB/T 7714
Farkas, Juraj,Chrastny, Vladislav,Novak, Martin,等. Chromium isotope variations (delta Cr-53/52) in mantle-derived sources and their weathering products: Implications for environmental studies and the evolution of delta Cr-53/52 in the Earth’s mantle over geologic time[J]. United States Geological Survey,2013,123:74-92.
APA Farkas, Juraj.,Chrastny, Vladislav.,Novak, Martin.,Cadkova, Eva.,Pasava, Jan.,...&Bullen, Thomas D..(2013).Chromium isotope variations (delta Cr-53/52) in mantle-derived sources and their weathering products: Implications for environmental studies and the evolution of delta Cr-53/52 in the Earth’s mantle over geologic time.GEOCHIMICA ET COSMOCHIMICA ACTA,123,74-92.
MLA Farkas, Juraj,et al."Chromium isotope variations (delta Cr-53/52) in mantle-derived sources and their weathering products: Implications for environmental studies and the evolution of delta Cr-53/52 in the Earth’s mantle over geologic time".GEOCHIMICA ET COSMOCHIMICA ACTA 123(2013):74-92.
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