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U-Th-total Pb monazite chemical dating protocol: application to Gneiss from Wilson metamorphic complex (WMC), Northern Victoria Land (NVL), Antarctica

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Title
U-Th-total Pb monazite chemical dating protocol: application to Gneiss from Wilson metamorphic complex (WMC), Northern Victoria Land (NVL), Antarctica
Other Titles
U-Th-Pb 모나자이트 화학 연대 측정 프로토콜: 남극 북빅토리아랜드 윌슨 변성 복합체 편마암에의 적용
Authors
Sorcar Nilanjana
Kim, Daeyeong
Kim, Hwayoung
Lee, Jong Ik
Yi, Sang-Bong
Kim, Hyeoncheol
Keywords
AntarcticaChemical datingElectron microprobeMonaziteNorthern Victoria LandWilson Metamorphic Complex
Issue Date
2025-07
Citation
Sorcar Nilanjana, et al. 2025. "U-Th-total Pb monazite chemical dating protocol: application to Gneiss from Wilson metamorphic complex (WMC), Northern Victoria Land (NVL), Antarctica". Journal of Analytical Science and Technology, 16(28): 0-0.
Abstract
The present study introduces a novel protocol for U-Th-total Pb monazite chemical dating using JEOL JXA-8530F fieldemission electron microprobe at the Electron Microprobe Laboratory of the Division of Glacier and Earth Sciences, Korea Polar Research Institute (KOPRI), Incheon, Republic of Korea. U-Th-total Pb chemical dating by electron microprobe method is an in situ technique with potentially higher spatial resolution. The consistent chemical-chronological data from the well-dated RW1 and COM-1 monazites validate the reliability of the analytical protocol used for U-Th-total Pb chemical age dating of monazite. The new protocol has been applied to quartzofeldspathic biotite/±cordierite gneiss from the Wilson Metamorphic Complex (WMC), Northern Victoria Land (NVL), Antarctica. The application of this method to WMC quartzofeldspathic gneiss has yielded refined age estimates that reveal multiple thermal phases from texturally constrained in situ monazite age data. Based on new age data, we argue that the thermal history in the WMC occurred in a span of ca. 496?455 Ma with the evidence of inherited older age domain of ca. 515 Ma. These results offer new insights into the geologic history of Northern Victoria Land to improve our understanding of the thermal evolution within the broader context of Antarctic tectonics.
URI
https://repository.kopri.re.kr/handle/201206/16550
DOI
https://doi.org/10.1186/s40543-025-00499-9
Type
Article
Station
Jang Bogo Station
Indexed
SCIE
Appears in Collections  
2025-2025, 남극대륙 로스 조산운동 변성진화사 규명 (25-25) / 이종익 (PN25140)
2025-2025, 남극권 맨틀활동과 지체구조진화 연구 (25-25) / 박숭현 (PE25050)
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