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  4. Weekly to monthly time scale of melt inclusion entrapment prior to eruption recorded by phosphorus distribution in olivine from mid-ocean ridges
 
research article

Weekly to monthly time scale of melt inclusion entrapment prior to eruption recorded by phosphorus distribution in olivine from mid-ocean ridges

Manzini, Melina
•
Bouvier, Anne-Sophie
•
Baumgartner, Lukas P.
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2017
Geology

Melt inclusions (MIs) hosted in euhedral olivine have been proposed to represent droplets of primary melt, protected from processes occurring near Earth's surface during eruption. The complex zoning of phosphorus (P) in some olivines and the presence of a P-depleted zone around MIs indicate a complex history for the host-MI system. We analyzed P in olivine and MIs from two mid-oceanic ridge basalt (MORB) samples from the Mid-Atlantic Ridge (MAR) by electron probe microanalyzer, secondary ion mass spectrometry (SIMS), and NanoSIMS. Phosphorus dendrites in olivine suggest an initial fast olivine growth followed by a stage of slower growth. Dissolution textures around some MIs were identified and were probably caused by adiabatic decompression melting. Based on diffusion modeling of P in olivine, we infer that olivine beneath the MAR remains in the system (1) for days to weeks after crystallization of P-rich lamellae, and (2) for a few hours after recrystallization of dissolved olivine. Dissolution and reprecipitation of olivine containing boundary layers suggests that most MIs might be affected by late post-entrapment processes.

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Type
research article
DOI
10.1130/G39463.1
Web of Science ID

WOS:000416486200002

Author(s)
Manzini, Melina
Bouvier, Anne-Sophie
Baumgartner, Lukas P.
Muntener, Othmar
Rose-Koga, Estelle F.
Schiano, Pierre
Escrig, Stephane  
Meibom, Anders  
Shimizu, Nobumichi
Date Issued

2017

Publisher

Geological Soc Amer, Inc

Published in
Geology
Volume

45

Issue

12

Start page

1059

End page

1062

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LGB  
AHEAD  
Available on Infoscience
January 15, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/144100
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