Arid
DOI10.1111/j.1945-5100.2003.tb00306.x
Iron oxidation state in the Fe-rich layer and silica matrix of Libyan Desert Glass: A high-resolution XANES study
Giuli, G; Paris, E; Pratesi, G; Koeberl, C; Cipriani, C
通讯作者Giuli, G
来源期刊METEORITICS & PLANETARY SCIENCE
ISSN1086-9379
出版年2003
卷号38期号:8页码:1181-1186
英文摘要

Libyan Desert Glass (LDG) is an enigmatic type of glass that occurs in western Egypt in the Libyan Desert. Fairly convincing evidence exists to show that it formed by impact, although the source crater is currently unknown. Some rare samples present dark-colored streaks with variable amounts of Fe, and they are supposed to contain a meteoritic component.


We have studied the iron local environment in an LDG sample by means of Fe K-edge high-resolution X-ray absorption near edge structure (XANES) spectroscopy to obtain quantitative data on the Fe oxidation state and coordination number in both the Fe-poor matrix and Fe-rich layers. The pre-edge peak of the high-resolution XANES spectra of the sample studied displays small but reproducible variations between Fe-poor matrix and Fe-rich layers, which is indicative of significant changes in the Fe oxidation state and coordination number. Comparison with previously obtained data for a very low-Fe sample shows that, while iron is virtually all trivalent and in tetrahedral coordination (([4])Fe(3+)) in the low-Fe sample, the sample containing the Fe-rich layers display a mixture of tetra-coordinated trivalent iron (([4])Fe(3+)) and penta-coordinated divalent iron (([5])Fe(2+)), with the Fe in the Fe-rich layer being more reduced than the matrix. From these data, we conclude the following: a) the significant differences in the Fe oxidation state between LDG and tektites, together with the wide intra-sample variations in the Fe-oxidation state, confirm that LDG is an impact glass and not a tektite-like glass; b) the higher Fe content, coupled with the more reduced state of the Fe, in the Fe-rich layers suggests that some or most of the Fe in these layers may be directly derived from the meteoritic projectile and that it is not of terrestrial origin.


类型Article
语种英语
国家Italy ; Austria
收录类别SCI-E
WOS记录号WOS:000186652800004
WOS关键词ABSORPTION FINE-STRUCTURE ; STRUCTURE SPECTROSCOPY ; IMPACT GLASSES ; STREWN FIELD ; PRE-EDGE ; COORDINATION ; INFORMATION ; CHEMISTRY ; MINERALS ; TEKTITES
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/145434
作者单位(1)Univ Camerino, Dipartimento Sci Terra, I-62032 Camerino, MC, Italy;(2)Univ Camerino, INFM, I-62032 Camerino, Italy;(3)Univ Florence, Sez Mineral & Litol, Museo Storia Nat, I-50121 Florence, Italy;(4)Museo Sci Planetarie Provincia Prato, Prato, Italy;(5)Univ Vienna, Dept Geol Sci, A-1090 Vienna, Austria
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GB/T 7714
Giuli, G,Paris, E,Pratesi, G,et al. Iron oxidation state in the Fe-rich layer and silica matrix of Libyan Desert Glass: A high-resolution XANES study[J],2003,38(8):1181-1186.
APA Giuli, G,Paris, E,Pratesi, G,Koeberl, C,&Cipriani, C.(2003).Iron oxidation state in the Fe-rich layer and silica matrix of Libyan Desert Glass: A high-resolution XANES study.METEORITICS & PLANETARY SCIENCE,38(8),1181-1186.
MLA Giuli, G,et al."Iron oxidation state in the Fe-rich layer and silica matrix of Libyan Desert Glass: A high-resolution XANES study".METEORITICS & PLANETARY SCIENCE 38.8(2003):1181-1186.
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