Late crystallization of K-feldspar and the paradox of megacrystic granites

被引:0
|
作者
Allen F. Glazner
Breck R. Johnson
机构
[1] University of North Carolina at Chapel Hill,Department of Geological Sciences
[2] Anadarko Petroleum,undefined
关键词
K-feldspar; Textural coarsening; Yosemite National Park; Granodiorite; Granite;
D O I
暂无
中图分类号
学科分类号
摘要
K-feldspar crystals >5 cm in greatest dimension are common in calc-alkaline granites and granodiorites worldwide. Such megacrysts are generally interpreted as having grown to large sizes early in a magma’s crystallization history while they were largely molten, owing to field relations such as megacryst alignment and megacryst-rich clusters and to crystallographic features such as zonally arranged inclusions and sawtooth Ba zoning. These features are consistent with early growth but do not require it. In contrast, experimental petrology, mineral compositions, and natural examples of partial melting of granite demonstrate that K-feldspar is typically the last major phase to crystallize and that most K-feldspar growth occurs after the magma crosses the rheologic lock-up threshold of ~50 % crystals. The near-absence of K-feldspar phenocrysts in dacite lavas and tuffs, even in highly crystalline ones, demonstrates that natural magmas do not precipitate significant K-feldspar while they are mobile. The highly potassic compositions of megacrysts (and indeed, of K-feldspar in non-megacrystic granites as well) require exsolution of albite component down to temperatures of ~400 °C. The low Ca contents of megacrysts cannot result from exsolution of anorthite and must represent recrystallization of the crystals at low temperature. These mineralogical and experimental constraints require that K-feldspar megacrysts indicate widespread and thorough recrystallization of the host granites and granodiorites.
引用
收藏
页码:777 / 799
页数:22
相关论文
共 50 条
  • [21] Natural luminescence and anomalous fading in K-feldspar
    Lamothe, Michel
    Barre, Magali
    Huot, Sebastien
    Ouimet, Stephanie
    RADIATION MEASUREMENTS, 2012, 47 (09) : 682 - 687
  • [23] PLANAR DEFECTS AND DISSOCIATION OF DISLOCATIONS IN A K-FELDSPAR
    HEGGIE, MI
    ZHENG, Y
    PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1987, 56 (05): : 681 - 688
  • [24] Thermoluminescence signal in K-feldspar grains: Revisited
    Gong, Gelian
    Sun, Weidong
    Xu, Hongyun
    APPLIED RADIATION AND ISOTOPES, 2015, 105 : 80 - 87
  • [25] Temperature effects on the electrical conductivity of K-feldspar
    Sadhukhan, Supti
    Dutta, Tapati
    GEOPHYSICAL PROSPECTING, 2024, 72 (09) : 3338 - 3349
  • [26] Alkali ion migration in albite and K-feldspar
    A. Jones
    D. Palmer
    M. S. Islam
    M. Mortimer
    Physics and Chemistry of Minerals, 2004, 31 : 313 - 320
  • [27] Microporous and micropermeable subgrain microtextures in K-feldspar
    Mark, D. F.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (12) : A593 - A593
  • [28] Alkali ion migration in albite and K-feldspar
    Jones, A
    Islam, MS
    Mortimer, M
    Palmer, D
    PHYSICS AND CHEMISTRY OF MINERALS, 2004, 31 (05) : 313 - 320
  • [29] ORDERING PATH FOR IGNEOUS K-FELDSPAR MEGACRYSTS
    EGGLETON, RA
    AMERICAN MINERALOGIST, 1979, 64 (7-8) : 906 - 911
  • [30] TUNNELING RADIATIVE RECOMBINATION IN K-FELDSPAR SANIDINE
    VISOCEKAS, R
    NUCLEAR TRACKS AND RADIATION MEASUREMENTS, 1993, 21 (01): : 175 - 178