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Petrogenesis of the Yeonhwa ultrapotassic intrusions in the Yeongnam Massif―Evidence for enrichment of the Triassic continental lithospheric mantle beneath the Korean peninsula

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dc.contributor.author김지혁-
dc.contributor.author박정우-
dc.contributor.authorLee, Mi Jung-
dc.contributor.author임성환-
dc.contributor.author오창환-
dc.date.accessioned2022-11-29T16:37:04Z-
dc.date.available2022-11-29T16:37:04Z-
dc.date.issued2022-
dc.identifier.urihttps://repository.kopri.re.kr/handle/201206/14129-
dc.description.abstractThe Triassic period is when abundant late-orogenic magmatism occurred in the Korean peninsula, but the characteristics of the lithospheric mantle at that time beneath the Yeongnam Massif have not been well-defined because of the scarcity of mafic intrusions. We report zircon U-Pb and phlogopite 40Ar/39Ar ages, petrography, and geochemistry of the Triassic (227.6 Ma) ultrapotassic igneous rocks in the Yeonhwa I Mine (Yeonhwa Ultrapotassic Intrusions, YUI) emplaced into the Taebaeksan Basin in the Yeongnam Massif. The YUI occur as two stocks with different lithologies: phlogopite-rich and amphibole-rich, where the former underwent carbonate melt interaction along the margin in contact with the carbonate formation. The two lithologies share similar compositional and isotopic characteristics; however, the phlogopite-rich YUI better retains its mantle-derived features, having idiomorphic high Mg# (up to 91.9) phlogopite and diopside phenocrysts and bulk concentra tions of high MgO (Mg# = molar 100 Mg/[Mg + Fe] > 70), Cr (208?1150 ppm), and Ni (48?219 ppm). The enrichment of the YUI in H2O (phlogopite-rich), silica contents (50.2?56.9 wt%), and large ion lithophile ele ments (LILE; K, Rb, Sr, Ba, Pb), together with depletion of high fields strength elements (HFSE; Ti, Zr, Nb, Hf, Ta), are typical of the ultrapotassic rocks in orogenic settings. The elemental and isotopic data imply that the YUI originated from partial melts of the phlogopite-bearing lithospheric mantle near the spinel-garnet transition zone. The extremely enriched isotopic ratios (87Sr/86Sr(t) = 0.70756 to 0.71227, εNd(t) = -8.82 to -11.0) suggest a highly enriched mantle source, possibly more enriched than the contemporary pelagic sediments. Considering that the Yeongnam Massif was in a subduction system during Permian Triassic, not a continental collisional belt, the enrichment was inherited from a combination of both young, subduction-related and ancient, pre-existing metasomes in the continental lithospheric mantle. Our data confirm the presence of the enriched, volatile-rich lithospheric mantle beneath the Triassic Yeongnam Massif. This enriched origin contrasts with earlier (c. 240?280 Ma) Yeongnam arc plutons that originated from the depleted asthenospheric mantle (εNd(t) ≥+2). Since the enrichment is also characteristic of most of the c. 220?240 Ma igneous rocks around the Korean peninsula, such lithospheric mantle lithology was widespread during the Late Triassic.-
dc.languageEnglish-
dc.subject.classification해당사항없음-
dc.titlePetrogenesis of the Yeonhwa ultrapotassic intrusions in the Yeongnam Massif―Evidence for enrichment of the Triassic continental lithospheric mantle beneath the Korean peninsula-
dc.title.alternative연화 고칼륨 심성암 성인: 트라이아스기 한반도 부화된 암석권맨틀 존재에 대한 증거-
dc.typeArticle-
dc.identifier.bibliographicCitation김지혁, et al. 2022. "Petrogenesis of the Yeonhwa ultrapotassic intrusions in the Yeongnam Massif―Evidence for enrichment of the Triassic continental lithospheric mantle beneath the Korean peninsula". <em>LITHOS</em>, 422(1): 1-21.-
dc.citation.titleLITHOS-
dc.citation.volume422-
dc.citation.number1-
dc.identifier.doi10.1016/j.lithos.2022.106739-
dc.citation.startPage1-
dc.citation.endPage21-
dc.description.articleClassificationSCIE-
dc.description.jcrRateJCR 2020:21.591-
dc.subject.keywordLithospheric mantle-
dc.subject.keywordMantle metasomatism-
dc.subject.keywordYeonhwa ultrapotassic intrusions-
dc.identifier.localId2022-0252-
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