Arid
DOI10.1016/j.quageo.2010.05.001
Chronometry and formation pathways of gypsum using Electron Spin Resonance and Fourier Transform Infrared Spectroscopy
Nagar, Y. C.1; Sastry, M. D.1; Bhushan, B.2; Kumar, A.3; Mishra, K. P.3; Shastri, A.4; Deo, M. N.; Kocurek, G.5; Magee, J. W.6; Wadhawan, S. K.7; Juyal, N.1; Pandian, M. S.8; Shukla, A. D.1; Singhvi, A. K.1
通讯作者Singhvi, A. K.
来源期刊QUATERNARY GEOCHRONOLOGY
ISSN1871-1014
EISSN1878-0350
出版年2010
卷号5期号:6页码:691-704
英文摘要

Gypsum is an authigenic precipitate that forms under periods of accentuated aridity and occurs widely in arid zones. However its use in quantitative paleoclimatology has been limited due to the absence of a method to determine the timing of its formation. We present here the results of a feasibility study that demonstrates that the timing of the formation event of gypsum can be estimated using Electron Spin Resonance (ESR) analysis. We used well documented samples from White Sands in New Mexico, USA, the That Desert, India and lakes in the Simpson Desert and Mallee Region, Australia and found that ESR ages could be obtained using radiation sensitive SO4-, SO3- radicals and a photobleachable signal O-3(-). ESR signals were consistent with control ages based on contextual information. These suggest that the dating signals (SO4-, SO3-) are stable over time scales >100 ka. We propose that this stability of the SO4- signals over geological time scales arises due to hydrogen bonding between the water proton and the SO4- radical and that the suitability of these radiation-induced radicals comes from their being a part of the host matrix. Further, ESR along with Fourier Transform Infrared (FT-IR) Spectroscopy methods additionally inform on the geochemical pathways for gypsum formation and help elucidate complex formation processes even in samples that appeared unambiguous gypsum precipitates. Thus, the presence of Hannebachite (CaSO(3 center dot)1/2H(2)O) and Mn2+ in Thar and Australian samples suggested a reducing environment such that low valence sulfur reacted with CaCO3 to form hannebachite and eventually gypsum. The presence of sulfur, partially as sulfite in That gypsum samples suggested that redox cycles were mediated by microbial activity. Absence of these features in White Sands samples suggested oxic conditions during gypsum precipitation. (C) 2010 Elsevier B.V. All rights reserved.


英文关键词Gypsum Hannebachite ESR FT-IR Thar Desert White sands
类型Article
语种英语
国家India ; USA ; Australia
收录类别SCI-E
WOS记录号WOS:000285173300008
WOS关键词TRAP LEVEL SPECTROSCOPY ; REDUCED SULFUR GASES ; SINGLE-CRYSTALS ; ESR ; AUSTRALIA ; DESERT ; LAKES
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/166130
作者单位1.Phys Res Lab, Ahmadabad 380009, Gujarat, India;
2.Bhabha Atom Res Ctr, Food Technol Div, Mumbai 400085, Maharashtra, India;
3.Bhabha Atom Res Ctr, Radiat Biol & Hlth Sci Div, Mumbai 400085, Maharashtra, India;
4.Bhabha Atom Res Ctr, Atom & Mol Phys Div, Mumbai 400085, Maharashtra, India;
5.Univ Texas Austin, Dept Geosci, Austin, TX 78712 USA;
6.Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 0200, Australia;
7.Geol Survey India, Gandhinagar, Gujarat, India;
8.Pondicherry Univ, Dept Earth Sci, Pondicherry, India
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Nagar, Y. C.,Sastry, M. D.,Bhushan, B.,et al. Chronometry and formation pathways of gypsum using Electron Spin Resonance and Fourier Transform Infrared Spectroscopy[J],2010,5(6):691-704.
APA Nagar, Y. C..,Sastry, M. D..,Bhushan, B..,Kumar, A..,Mishra, K. P..,...&Singhvi, A. K..(2010).Chronometry and formation pathways of gypsum using Electron Spin Resonance and Fourier Transform Infrared Spectroscopy.QUATERNARY GEOCHRONOLOGY,5(6),691-704.
MLA Nagar, Y. C.,et al."Chronometry and formation pathways of gypsum using Electron Spin Resonance and Fourier Transform Infrared Spectroscopy".QUATERNARY GEOCHRONOLOGY 5.6(2010):691-704.
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