2021
Geochronology, petrology, and lithium isotope geochemistry of the Bailongshan granite-pegmatite system, northern Tibet: Implications for the ore-forming potential of pegmatites
ZHOU, Jin-Sheng; Qiang WANG; Yi-Gang XU; Jan CEMPÍREK; He WANG et. al.Základní údaje
Originální název
Geochronology, petrology, and lithium isotope geochemistry of the Bailongshan granite-pegmatite system, northern Tibet: Implications for the ore-forming potential of pegmatites
Autoři
ZHOU, Jin-Sheng; Qiang WANG (garant); Yi-Gang XU; Jan CEMPÍREK (203 Česká republika, domácí); He WANG; Jin-Long MA; Gang-Jian WEI; Tong-Yu HUANG; Guan-Hong ZHU a Le ZHANG
Vydání
Chemical Geology, Amsterdam, Elsevier, 2021, 0009-2541
Další údaje
Jazyk
angličtina
Typ výsledku
Článek v odborném periodiku
Obor
10504 Mineralogy
Stát vydavatele
Nizozemské království
Utajení
není předmětem státního či obchodního tajemství
Odkazy
Impakt faktor
Impact factor: 4.685
Kód RIV
RIV/00216224:14310/21:00119365
Organizační jednotka
Přírodovědecká fakulta
UT WoS
000702310500003
EID Scopus
2-s2.0-85114013553
Klíčová slova anglicky
Lithium pegmatite; Li isotopes; Diffusion; Fractional crystallization; Isotope fractionation
Štítky
Příznaky
Mezinárodní význam, Recenzováno
Změněno: 24. 11. 2021 15:04, Mgr. Marie Novosadová Šípková, DiS.
Anotace
V originále
Identification of possible factors that affect Li-mineralizing potential is important to the understanding of the genesis of Li pegmatites. This study provides a comprehensive characterization of the recently discovered Bailongshan Li pegmatite district based on geochronological, petrological, mineralogical, thermal modeling, and Li isotopic data. Columbite-(Fe) U–Pb dating of two pegmatite dikes indicates they were emplaced at 212.3 ± 0.9 and 213.9 ± 0.7 Ma. The spodumene-absent pegmatite dikes yield substantially higher δ7Li values (+2.0‰ to +4.9‰) than spodumene-bearing dikes (−1.9‰ to +0.8‰). Modeling of Li isotopic fractionation during fractional crystallization, fluid exsolution, and diffusion after pegmatite emplacement indicates that the lighter Li isotopic compositions of spodumene-bearing pegmatites are attributable to fluid exsolution or diffusion-driven fractionation of short duration, whereas the heavier isotopic compositions of spodumene-absent pegmatites can be attributed to longer-duration, diffusion-driven fractionation. Together with the results of thermal modeling, we suggest that the cooling rate of pegmatite dikes was an important factor controlling the Li isotopic compositions of pegmatites and slower cooling caused heavier Li isotopic compositions. It may have important implications for the ore-forming potential of Li in pegmatites that high cooling rate is beneficial for forming Li pegmatites.
Návaznosti
GA19-05198S, projekt VaV |
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