Direct evidence for decomposition of antigorite under shock loading
Journal of Geophysical Research - Solid Earth Volume 117
Page B03212-
published_at 2012
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Title ( eng ) |
Direct evidence for decomposition of antigorite under shock loading
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Creator |
Meng Chuanmin
Zhu Wenjun
He Hongliang
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Source Title |
Journal of Geophysical Research - Solid Earth
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Volume | 117 |
Start Page | B03212 |
Abstract |
Detailed wave profiles of antigorite (a serpentine mineral) under plate-impact shock loading have been measured to a pressure of 131 GPa in order to understand its dynamic behavior because serpentine is present in pristine meteorites as well as in the Earth mantle. All the profiles indicate single wave structures, and a sudden decrease in density was detected at similar to 60 GPa with increasing pressure when shock-loaded for a long duration (similar to 0.6 mu s) using a thick flyer. Such a drop in density also was observed during recompression by a high-impedance window material (LiF). Although exothermic decomposition is generally considered to be fast, the decomposition of antigorite under shock loading requires a reaction time so that the Hugoniot may represent a metastable state at which stable phase cannot appear in a timely way. Based on these observations, antigorite decomposes exothermically into an assemblage of either brucite + stishovite + periclase or brucite + perovskite above a shock pressure of 60 GPa, but does not dehydrate endothermically into assemblages with water fluid. The observed dynamic behavior of serpentine, coupled with the previous results of the shock-recovered serpentines, reinforces that serpentine plays a key role to carry water within the snowline of the solar system.
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Keywords |
Hugoniot
decomposition
density decrease
exothermic
impact behavior
serpentine
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NDC |
Earth sciences. Geology [ 450 ]
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Language |
eng
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Resource Type | journal article |
Publisher |
American Geophysical Union
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Date of Issued | 2012 |
Rights |
(c) 2012 by the American Geophysical Union.
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Publish Type | Version of Record |
Access Rights | open access |
Source Identifier |
[ISSN] 0148-0227
[DOI] 10.1029/2011JB008439
[NCID] AA12077675
[DOI] http://dx.doi.org/10.1029/2011JB008439
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