How to Understand in-situ U-Pb Isotopic Data of Uraninite and Pitchblende?

Chunying Guo

Journal of Earth Science ›› 2025, Vol. 36 ›› Issue (4) : 1835 -1841.

PDF
Journal of Earth Science ›› 2025, Vol. 36 ›› Issue (4) : 1835 -1841. DOI: 10.1007/s12583-025-0193-6
Editorial
other

How to Understand in-situ U-Pb Isotopic Data of Uraninite and Pitchblende?

Author information +
History +
PDF

Cite this article

Download citation ▾
Chunying Guo. How to Understand in-situ U-Pb Isotopic Data of Uraninite and Pitchblende?. Journal of Earth Science, 2025, 36(4): 1835-1841 DOI:10.1007/s12583-025-0193-6

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

AlexandreP, KyserT K. Effects of Cationic Substitutions and Alteration in Uraninite, and Implications for the Dating of Uranium Deposits. The Canadian Mineralogist, 2005, 43(3): 1005-1017

[2]

BonnettiC, LiuX D, MercadierJ, et al.. The Genesis of Granite-Related Hydrothermal Uranium Deposits in the Xiazhuang and Zhuguang Ore Fields, North Guangdong Province, SE China: Insights from Mineralogical, Trace Elements and U-Pb Isotopes Signatures of the U Mineralisation. Ore Geology Reviews, 2018, 92: 588-612

[3]

FaureGPrinciple of Isotope Geology, 1977, New York. John Wiley and Sons, Inc.. 1464

[4]

FinchR J, MurakamiT. Systematics and Paragenesis of Uranium Minerals. Reviews in Mineralogy and Geochemistry, 1999, 38(1): 91-179

[5]

GoldichS S, MudreyM GTugarinov. Dilatancy Model for Discordant U-Pb Zircon Ages. Contributions to Recent Geochemistry and Analytical Chemistry, 1972, Moscow. Nauka Publishing Office. 415418

[6]

GuoC Y, QinM K, XuH, et al.. Age of Zhangjia Uranium Deposit in the Miaoershan Ore Field, Guangxi Autonomous Region, China: In Situ Micro-Determination on Pitchblende. Earth Science, 2020, 45(1): 72-89(in Chinese with English Abstract)

[7]

HuangG L, YinZ P, LingH F, et al.. Formation Age, Geochemical Characteristics and Genesis of Pitchblende from No. 302 Uranium Deposit in Northern Guangdong. Mineral Deposits, 2010, 29(2): 352-360(in Chinese with English Abstract)

[8]

LiY S, ZhuJ C, LiX B, et al.. Overview of the Mineralization Era of Uranium Deposits in China. Radioactive Geology, 1980, 1: 1-8(in Chinese)

[9]

LuoJ C, HuR Z, FayekM, et al.. In-situ SIMS Uraninite U-Pb Dating and Genesis of the Xianshi Granite-Hosted Uranium Deposit, South China. Ore Geology Reviews, 2015, 65: 968-978

[10]

LuoJ C, HuR Z, ShiS H. Timing of Uranium Mineralization and Geological Implications of Shazijiang Granite-Hosted Uranium Deposit in Guangxi, South China: New Constraint from Chemical U-Pb Age. Journal of Earth Science, 2015, 26(6): 911-919

[11]

MartzP, MercadierJ, PerretJ, et al.. Post-Crystallization Alteration of Natural uraninites: Implications for Dating, Tracing, and Nuclear Forensics. Geochimica et Cosmochimica Acta, 2019, 249: 138-159

[12]

PalD C, RhedeD. Geochemistry and Chemical Dating of Uraninite in the Jaduguda Uranium Deposit, Singhbhum Shear Zone, India: Implications for Uranium Mineralization and Geochemical Evolution of Uraninite. Economic Geology, 2013, 108(6): 1499-1515

[13]

PeiL N, GuoC Y, ZouM L, et al.. EPMA Chemical Age of Pitchblende and Its Geological Significance in Xianshi Uranium Deposit of Xiazhuang Ore Field, the Northern Guangdong, China. Journal of Earth Sciences and Environment, 2021, 43(5): 814-828(in Chinese with English Abstract)

[14]

SongH, XiaoT, ChiG X, et al.. CAUM: A Software for Calculating and Assessing Chemical Ages of Uranium Minerals. Geoscience Frontiers, 2025, 163102031

[15]

SpencerC J, KirklandC L, TaylorR J M. Strategies towards Statistically Robust Interpretations of in situ U-Pb Zircon Geochronology. Geoscience Frontiers, 2016, 7(4): 581-589

[16]

SternT W, GoldichS S, NewellM F. Effects of Weathering on the U-Pb Ages of Zircon from the Morton Gneiss, Minnesota. Earth and Planetary Science Letters, 1966, 1(6): 369-371

[17]

TiltonG R. Volume Diffusion as a Mechanism for Discordant Lead Ages. Journal of Geophysical Research, 1960, 65(9): 2933-2945

[18]

WangY J, PangY Q, FanH H, et al.. In-Situ Geochronology and Geochemistry of Pitchblende from Xincun Uranium Deposit in Motianling Area, North Guangxi. Earth Science, 2024, 49(4): 1307-1323(in Chinese with English Abstract)

[19]

WetherillG W. Discordant Uranium-Lead Ages, I. Transactions American Geophysical Union, 1956, 37(3): 320-326

[20]

WetherillG W. Discordant Uranium-Lead Ages: 2. Disordant Ages Resulting from Diffusion of Lead and Uranium. Journal of Geophysical Research, 1963, 68(10): 2957-2965

[21]

WuY, QinM K, GuoD F, et al.. Metallogenic Chronology of the Pitchblende of 1101 Uranium Ore Area in Mouding, Middle-South Part of the Kangdian Axis and Its Geological Significance. Earth Science, 2020, 45(2): 419-433(in Chinese with English Abstract)

[22]

XiaY LGeochronology of Uranium Mineralization in China, 2019, Beijing. China Atomic Energy Press. 1301(in Chinese with English Abstract)

[23]

XiaoWLocation Conditions and Mineralization Mechanism of High-Grade Granite Type Uranium Deposit in Southern Zhuguang, 2022, Beijing. Beijing Research Institute of Uranium Geology. (in Chinese with English Abstract)

[24]

ZhangL, WangF Y. New Identification of Quaternary Uranium Mineralization at the Mianhuakeng Granite-Related Uranium Deposit, South China. Journal of Earth Science, 2023, 34(5): 1635-1640

[25]

ZhangL, WangF Y, ZhouT F, et al.. Contrasting U-Pb Geochronology and Geochemistry of Uraninite from the Xianshi and Xiwang Uranium Deposits, South China: Implications for Ore Genesis. Ore Geology Reviews, 2022, 149105120

[26]

ZhengG D, LuoQ, LiuW Q, et al.. In-Situ U-Pb Age and Elemental Characteristics of Pitchblende in Shulouqiu Uranium Deposit and Its Geological Significance. Earth Science, 2021, 46(6): 2172-2187(in Chinese with English Abstract)

[27]

ZhengXU-Pb Geochronology Study on in-situ Micro-Region of Granite-Type Uranium Deposit in Xiazhuang Orefield, 2019, Xi’an. Northwest University. (in Chinese with English Abstract)

[28]

ZhongF J, PanJ Y, QiJ M, et al.. New In-Situ LA-ICP-MS U-Pb Ages of Uraninite from the Mianhuakeng Uranium Deposit, Northern Guangdong Province, China: Constraint on the Metallogenic Mechanism. Acta Geologica Sinica: English Edition, 2018, 92(2): 852-854

[29]

ZhongF J, WangL, WangK X, et al.. Mineralogy and Geochemistry of Hydrothermal Alteration of the Mianhuakeng Uranium Deposit in South China: Implications for Mineralization and Exploration. Ore Geology Reviews, 2023, 160105606

[30]

ZhongF J, YanJ, XiaF, et al.. In-Situ U-Pb Isotope Geochronology of Uraninite for Changjiang Granite-Type Uranium Ore Field in Northern Guangdong, China: Implications for Uranium Mineralization. Acta Petrologica Sinica, 2019, 35(9): 2727-2744(in Chinese with English Abstract)

[31]

ZhuK H, DaiJ W, WangK X, et al.. Age and Genesis of Pitchblende of the Haidewula Uranium Deposit, East Kunlun Orogen and Its Geological Significance. Earth Science, 2022, 47(8): 2940-2950(in Chinese with English Abstract)

RIGHTS & PERMISSIONS

China University of Geosciences (Wuhan) and Springer-Verlag GmbH Germany, Part of Springer Nature

AI Summary AI Mindmap
PDF

179

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/