Linking titanite U–Pb dates to coupled deformation and dissolution–reprecipitation

被引:0
|
作者
Amy C. Moser
Bradley R. Hacker
George E. Gehrels
Gareth G. E. Seward
Andrew R. C. Kylander-Clark
Joshua M. Garber
机构
[1] University of California,Department of Earth Science
[2] Santa Barbara,Department of Geosciences
[3] University of Arizona,Department of Geosciences
[4] The Pennsylvania State University,undefined
关键词
Titanite; U–Pb geochronology; Deformation; Interface-coupled dissolution–reprecipitation; Coast shear zone;
D O I
暂无
中图分类号
学科分类号
摘要
Titanite U–Pb geochronology is a promising tool to date high-temperature tectonic processes, but the extent to and mechanisms by which recrystallization resets titanite U–Pb dates are poorly understood. This study combines titanite U–Pb dates, trace elements, zoning, and microstructures to directly date deformation and fluid-driven recrystallization along the Coast shear zone (BC, Canada). Twenty titanite grains from a deformed calc-silicate gneiss yield U–Pb dates that range from ~ 75 to 50 Ma. Dates between ~ 75 and 60 Ma represent metamorphic crystallization or inherited detrital cores, whereas ~ 60 and 50 Ma dates reflect localized, grain-scale processes that variably recrystallized the titanite. All the analyzed titanite grains show evidence of fluid-mediated dissolution–reprecipitation, particularly at grain rims, but lack evidence of thermally mediated volume diffusion at a metamorphic temperature of > 700 °C. The younger U–Pb dates are predominantly found in bent portions of grains or fluid-recrystallized rims. These features likely formed during ductile slip and associated fluid flow along the Coast shear zone, although it is unclear whether the dates represent 10 Myr of continuous recrystallization or incomplete resetting of the titanite U–Pb system during a punctuated metamorphic event. Correlations between dates and trace-element concentrations vary, indicating that the effects of dissolution–reprecipitation decoupled U–Pb dates from trace-element concentrations in some grains. These results demonstrate that U–Pb dates from bent titanite lattices and titanite subgrains may directly date crystal-plastic deformation, suggesting that deformation microstructures enhance fluid-mediated recrystallization, and emphasize the complexity of fluid and deformation processes within and among individual grains.
引用
收藏
相关论文
共 50 条
  • [31] U/Pb dates for the base of the terminal Proterozoic and Cambrian - Reply
    Gradstein, F
    Ogg, J
    EPISODES, 1996, 19 (03): : 91 - 91
  • [32] REPLACEMENT OF URANINITE BY BORNITE VIA COUPLED DISSOLUTION-REPRECIPITATION: EVIDENCE FROM TEXTURE AND MICROSTRUCTURE
    Macmillan, Edeltraud
    Ciobanu, Cristiana L.
    Ehrig, Kathy
    Cook, Nigel J.
    Pring, Allan
    CANADIAN MINERALOGIST, 2016, 54 (06): : 1369 - 1383
  • [34] In situ U-Pb dating of titanite by LA-SF-ICP-MS and insights into titanite crystallization and closure temperature
    Zhao LingHao
    Zeng LingSen
    Zhan XiuChun
    Hu MingYue
    Yuan JiHai
    Sun DongYang
    Zhang LiFei
    ACTA PETROLOGICA SINICA, 2020, 36 (10) : 2983 - 2994
  • [35] U-Pb dating of prograde and retrograde titanite growth during the Scandian orogeny
    Essex, RM
    Gromet, LP
    GEOLOGY, 2000, 28 (05) : 419 - 422
  • [36] Matrix effects and improved calibration procedures for SIMS titanite U-Pb dating
    Ling, Xiao-Xiao
    Li, Qiu-Li
    Huyskens, Magdalena H.
    Liu, Yu
    Yin, Qing-Zhu
    Tang, Guo-Qiang
    Li, Jiao
    Zhang, Hua-Feng
    Skublov, Sergey G.
    Melnik, Aleksey E.
    Li, Xian-Hua
    CHEMICAL GEOLOGY, 2022, 593
  • [37] Linking deformation, migmatite formation and zircon U-Pb geochronology in polymetamorphic orthogneisses, Sveconorwegian Province, Sweden
    Moller, C.
    Andersson, J.
    Lundqvist, I.
    Hellstrom, F.
    JOURNAL OF METAMORPHIC GEOLOGY, 2007, 25 (07) : 727 - 750
  • [38] Chemical and textural equilibration of garnet during amphibolite facies metamorphism: The influence of coupled dissolution-reprecipitation
    Dempster, Tim J.
    La Piazza, Julie
    Taylor, Andrew G.
    Beaudoin, Nicolas
    Chung, Peter
    JOURNAL OF METAMORPHIC GEOLOGY, 2017, 35 (09) : 1111 - 1130
  • [39] Novel route to synthesize complex metal sulfides: Hydrothermal coupled dissolution-reprecipitation replacement reactions
    Xia, Fang
    Zhou, Jinwen
    Brugger, Joel
    Ngothai, Yung
    O'Neill, Brian
    Chen, Guorong
    Pring, Allan
    CHEMISTRY OF MATERIALS, 2008, 20 (08) : 2809 - 2817
  • [40] Unravelling complex geologic histories using U-Pb and trace element systematics of titanite
    Olierook, Hugo K. H.
    Taylor, Richard J. M.
    Erickson, Timmons M.
    Clark, Chris
    Reddy, Steven M.
    Kirkland, Christopher L.
    Jahn, Inalee
    Barham, Milo
    CHEMICAL GEOLOGY, 2019, 504 : 105 - 122