An experimental study of the kinetics of decompression-induced crystallization in silicic melt

Experiments were conducted to study the temporal evolution of feldspar crystallization kinetics during isothermal decompression. Pinatubo dacite was held at 780°C, 220 MPa, fO2 = NNO + 2, H2O‐saturated conditions for an equilibration period, decompressed to final pressures, Pf, ranging from 175 to 5...

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Veröffentlicht in:Journal of Geophysical Research: Solid Earth 2002-01, Vol.107 (B1), p.ECV 8-1-ECV 8-24
Hauptverfasser: Hammer, Julia E., Rutherford, Malcolm J.
Format: Artikel
Sprache:eng
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Zusammenfassung:Experiments were conducted to study the temporal evolution of feldspar crystallization kinetics during isothermal decompression. Pinatubo dacite was held at 780°C, 220 MPa, fO2 = NNO + 2, H2O‐saturated conditions for an equilibration period, decompressed to final pressures, Pf, ranging from 175 to 5 MPa, and then held for 0.3–931 hours. According to the plagioclase liquidus curve in PH2O‐T space for the relevant melt composition, these decompressions impose effective undercoolings, ΔTeff, of 34–266°C. Growth of preexisting phenocrysts and newly formed sparse microlites dominate crystallization at 75 ≤ Pf < 150 MPa (ΔTeff = 34–93°C), and equilibrium crystal modes are achieved in
ISSN:0148-0227
2156-2202
DOI:10.1029/2001JB000281