Xu, Deru; Wang, Chanjuan; Li, Bin; Chi, Guoxiang; Yang, Cui; Deng, Wei; Li, Wenhao; Li, Ying; Zhang, Hengsong; Luo, Longfei; et al. (2025) U (uranium)-polymetallic mineral systems in the world: Genetic types, metallogenic settings and ore-forming mechanisms, and perspective for exploration. Science China Earth Sciences, 68 (5). doi:10.1007/s11430-024-1500-1
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | U (uranium)-polymetallic mineral systems in the world: Genetic types, metallogenic settings and ore-forming mechanisms, and perspective for exploration | ||
Journal | Science China Earth Sciences | ||
Authors | Xu, Deru | Author | |
Wang, Chanjuan | Author | ||
Li, Bin | Author | ||
Chi, Guoxiang | Author | ||
Yang, Cui | Author | ||
Deng, Wei | Author | ||
Li, Wenhao | Author | ||
Li, Ying | Author | ||
Zhang, Hengsong | Author | ||
Luo, Longfei | Author | ||
Liao, Yaoyao | Author | ||
Zou, Shaohao | Author | ||
Deng, Teng | Author | ||
Li, Zenghua | Author | ||
Year | 2025 (May) | Volume | 68 |
Issue | 5 | ||
Publisher | Springer Science and Business Media LLC | ||
DOI | doi:10.1007/s11430-024-1500-1Search in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 18376472 | Long-form Identifier | mindat:1:5:18376472:4 |
GUID | 0 | ||
Full Reference | Xu, Deru; Wang, Chanjuan; Li, Bin; Chi, Guoxiang; Yang, Cui; Deng, Wei; Li, Wenhao; Li, Ying; Zhang, Hengsong; Luo, Longfei; et al. (2025) U (uranium)-polymetallic mineral systems in the world: Genetic types, metallogenic settings and ore-forming mechanisms, and perspective for exploration. Science China Earth Sciences, 68 (5). doi:10.1007/s11430-024-1500-1 | ||
Plain Text | Xu, Deru; Wang, Chanjuan; Li, Bin; Chi, Guoxiang; Yang, Cui; Deng, Wei; Li, Wenhao; Li, Ying; Zhang, Hengsong; Luo, Longfei; et al. (2025) U (uranium)-polymetallic mineral systems in the world: Genetic types, metallogenic settings and ore-forming mechanisms, and perspective for exploration. Science China Earth Sciences, 68 (5). doi:10.1007/s11430-024-1500-1 | ||
In | (2025, May) Science China Earth Sciences Vol. 68 (5). Springer Science and Business Media LLC |
References Listed
These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.
Abed A M. 2011. Review of uranium in the Jordanian phosphorites: Distribution, genesis and industry. Jordan J Earth Environ Sci, 4: 35ā45 | |
Ai Y L, Li B P, Guo D F, Fan G. 2015. Investigate of Be extraction process on mineralogy factors of Baiyanghe deposit (in Chinese). Nonferrous Met (Mineral Process Sect), (3): 1ā14 | |
![]() | |
![]() | Akinfiev, Nikolay N., Korzhinskaya, Valentina S., Kotova, Natalia P., Redkin, Alexander F., Zotov, Alexander V. (2020) Niobium and tantalum in hydrothermal fluids: Thermodynamic description of hydroxide and hydroxofluoride complexes. Geochimica et Cosmochimica Acta, 280. 102-115 doi:10.1016/j.gca.2020.04.009 |
![]() | |
![]() | |
![]() | |
![]() | Anenburg, Michael, Burnham, Antony D., Mavrogenes, John A. (2018) REE Redistribution Textures in Altered Fluorapatite: Symplectites, Veins, and Phosphate-Silicate-Carbonate Assemblages from the Nolans Bore P-REE-Th Deposit, Northern Territory, Australia. The Canadian Mineralogist, 56 (3) 331-354 doi:10.3749/canmin.1700038 |
![]() | |
![]() | Ballouard, C.; Poujol, M.; Boulvais, P.; Mercadier, J.; Tartèse, R.; Venneman, T.; Deloule, E.; Jolivet, M.; Kéré, I.; Cathelineau, M.; et al. (2017) Magmatic and hydrothermal behavior of uranium in syntectonic leucogranites: The uranium mineralization associated with the Hercynian Guérande granite (Armorican Massif, France). Ore Geology Reviews, 80. doi:10.1016/j.oregeorev.2016.06.034 |
![]() | Bargar, J. R., Williams, K. H., Campbell, K. M., Long, P. E., Stubbs, J. E., Suvorova, E. I., Lezama-Pacheco, J. S., Alessi, D. S., Stylo, M., Webb, S. M., Davis, J. A., Giammar, D. E., Blue, L. Y., Bernier-Latmani, R. (2013) Uranium redox transition pathways in acetate-amended sediments. Proceedings of the National Academy of Sciences, 110 (12) 4506-4511 doi:10.1073/pnas.1219198110 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Bian, Leibo, Schovsbo, Niels H., Chappaz, Anthony, Zheng, Xiaowei, Nielsen, Arne ThorshĆøj, Ulrich, Thomas, Wang, Xibo, Dai, Shifeng, Galloway, Jennifer M., MaÅachowska, Aleksandra, Xu, Xuhui, Sanei, Hamed (2021) Molybdenum-uranium-vanadium geochemistry in the lower Paleozoic Alum Shale of Scandinavia: Implications for vanadium exploration. International Journal of Coal Geology, 239. 103730pp. doi:10.1016/j.coal.2021.103730 |
![]() | |
![]() | Bonnetti, C., Cuney, M., Michels, R., Truche, L., Malartre, F., Liu, X., Yang, J. (2015) The Multiple Roles of Sulfate-Reducing Bacteria and Fe-Ti Oxides in the Genesis of the Bayinwula Roll Front-Type Uranium Deposit, Erlian Basin, NE China. Economic Geology, 110 (4) 1059-1081 doi:10.2113/econgeo.110.4.1059 |
![]() | Bonnetti, Christophe, Cuney, Michel, Bourlange, Sylvain, Deloule, Etienne, Poujol, Marc, Liu, Xiaodong, Peng, Yunbiao, Yang, Jianxing (2017) Primary uranium sources for sedimentary-hosted uranium deposits in NE China: insight from basement igneous rocks of the Erlian Basin. Mineralium Deposita, 52 (3) 297-315 doi:10.1007/s00126-016-0661-0 |
![]() | Bonnetti, Christophe; Liu, Xiaodong; Zhaobin, Yan; Cuney, Michel; Michels, Raymond; Malartre, Fabrice; Mercadier, Julien; Cai, Jiangfang (2017) Coupled uranium mineralisation and bacterial sulphate reduction for the genesis of the Baxingtu sandstone-hosted U deposit, SW Songliao Basin, NE China. Ore Geology Reviews, 82. doi:10.1016/j.oregeorev.2016.11.013 |
![]() | Bonnetti, Christophe; Liu, Xiaodong; Mercadier, Julien; Cuney, Michel; Wu, Bin; Li, Guanglai (2021) Genesis of the volcanic-related Be-U-Mo Baiyanghe deposit, West Junggar (NW China), constrained by mineralogical, trace element and U-Pb isotope signatures of the primary U mineralisation. Ore Geology Reviews, 128. doi:10.1016/j.oregeorev.2020.103921 |
Bowles J F W, Howie R A, Vaughan D J, Zussman J. 2011. Rock-Forming Minerals (Volume 5A): Non-silicatesāOxides, Hydroxides and Sulphides. 2nd ed. London: The Geological Society. 920 | |
Boyle R W. 1982. Geochemical Prospecting for Thorium and Uranium Deposits. Amsterdam: Elsevier Scientific Publishing Company. 1ā498 | |
Not Yet Imported: - edited-book : 10.1515/9781501509193 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
![]() | Cai, Jianxin; Yu, Liangliang; Xu, Deru; Gao, Cheng; Chen, Genwen; Yu, Deshui; Jiao, Qianqian; Ye, Tingwei; Zou, Shaohao; Li, Lirong (2020) Multiple episodes of tectono-thermal disturbances in the Huayangchuan U-Nb-Pb polymetallic deposit in the Xiaoqinling region, central China and their significances on metallogeny. Ore Geology Reviews, 127. doi:10.1016/j.oregeorev.2020.103755 |
![]() | |
![]() | Cao, MingJian, Qin, KeZhang, Evans, Noreen J., Li, GuangMing, Ling, XiaoXiao, McInnes, Brent I. A., Zhao, JunXing (2021) Titanite in situ SIMS UāPb geochronology, elemental and Nd isotopic signatures record mineralization and fluid characteristics at the Pusangguo skarn deposit, Tibet. Mineralium Deposita, 56 (5) 907-916 doi:10.1007/s00126-020-01021-4 |
![]() | |
![]() | |
Äerný P, Blevin P L, Cuney M, London D. 2005. Granite-related ore deposits. Econ Geol, 100th Anniversary Volume (1905ā2005): 337ā370 | |
![]() | |
![]() | Chakravarti, R., Singh, S., Venkatesh, A. S., Patel, K., Sahoo, P. R. (2018) A Modified Placer Origin for Refractory Gold Mineralization Within the Archean Radioactive Quartz-Pebble Conglomerates from the Eastern Part of the Singhbhum Craton, India. Economic Geology, 113 (3) 579-596 doi:10.5382/econgeo.2018.4563 |
![]() | Chakravarti, Rajarshi, Frimmel, Hartwig E., Singh, Sahendra, Barla, Anmol, Venkatesh, Akella S., Balakrishnan, Srinivasan (2022) A geochemical and mineral chemical assessment of sediment provenance and post-depositional alteration of auriferous conglomerates in the Singhbhum Craton. Journal of Geochemical Exploration, 243. 107095 doi:10.1016/j.gexplo.2022.107095 |
Chang J, AudĆ©tat A. 2018. Petrogenesis and metal content of hornblenderich xeneliths from two laramide-age magma systems in Southwestern U.S.A: Insights into the metal budget of arc magmas. J Petrol, 59: 1869ā1898 | |
Chen G N, Qiu W, Lu Y X, Peng Z L, Lan H C, Lou F, Zhang J H, Xu Q Y, Wang Y. 2015. Multi crustal melting and its relationship to the formation of volcanic-type uranium-polymetal ore-field (in Chinese). Earth Sci Front, 22: 22ā28 | |
![]() | |
Chen J Y, Fan H H, Gu D Z. 2015. Preliminary study on the metallogenic chronology of the large Baiyanghe Uranium-Berylium deposit in Xinjiang: Constraints from Sm-Nd isotope ages of fluorite (in Chinese). Acta Geol Sin, 89(Suppl): 1ā2 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Chen, Wei, Liu, Hang-Yu, Lu, Jue, Jiang, Shao-Yong, Simonetti, Antonio, Xu, Cheng, Zhang, Wen (2020) The formation of the ore-bearing dolomite marble from the giant Bayan Obo REE-Nb-Fe deposit, Inner Mongolia: insights from micron-scale geochemical data. Mineralium Deposita, 55 (1) 131-146 doi:10.1007/s00126-019-00886-4 |
Chen Z H, Zheng M L, Song S Z, Liang Y W, Zhao W. 2008. Analysis on uranium resources situations and metallogenic potential of Heyuan mineralization belt of Guangdong province (in Chinese). Uranium Geol, 24: 108ā111 | |
Cheng X H. 2017. Integretade resarch on Mesozoic magmatism and gold-uranium metallogenesis in the liaodong Peninsula, Liaoning Province (in Chinese). Dissertation for Doctoral Degree. Beijing: University of Science and Technology Beijing. 1ā186 | |
![]() | |
Chernoff C B, Orris G J. 2002. Data set of world phosphate mines, deposits, and occurrencesāPart A. Geologic data. USGS Open File Report, 02-156-A. 1ā352 | |
![]() | Cherry, Alexander R., McPhie, Jocelyn, Kamenetsky, Vadim S., Ehrig, Kathy, Keeling, John L., Kamenetsky, Maya B., Meffre, Sebastien, Apukhtina, Olga B. (2017) Linking Olympic Dam and the Cariewerloo Basin: Was a sedimentary basin involved in formation of the worldās largest uranium deposit?. Precambrian Research, 300. 168-180 doi:10.1016/j.precamres.2017.08.002 |
![]() | |
![]() | |
![]() | Chi, Guoxiang; Ashton, Kenneth; Deng, Teng; Xu, Deru; Li, Zenghua; Song, Hao; Liang, Rong; Kennicott, Jacklyn (2020) Comparison of granite-related uranium deposits in the Beaverlodge district (Canada) and South China ā A common control of mineralization by coupled shallow and deep-seated geologic processes in an extensional setting. Ore Geology Reviews, 117. doi:10.1016/j.oregeorev.2020.103319 |
![]() | CHI, Guoxiang, XU, Deru, XUE, Chunji, LI, Zenghua, LEDRU, Patrick, DENG, Teng, WANG, Yumeng, SONG, Hao (2022) Hydrodynamic Links between Shallow and Deep Mineralization Systems and Implications for Deep Mineral Exploration. Acta Geologica Sinica - English Edition, 96 (1) 1-25 doi:10.1111/1755-6724.14903 |
![]() | Chowdhury, Sangita; Pal, Dipak C.; Papineau, Dominic; Lentz, David R. (2020) Major and trace element and multiple sulfur isotope composition of sulfides from the Paleoproterozoic Surda copper deposit, Singhbhum shear Zone, India: Implications for the mineralization processes. Ore Geology Reviews, 120. doi:10.1016/j.oregeorev.2020.103396 |
![]() | Ciobanu, Cristiana L., Wade, Benjamin P., Cook, Nigel J., Schmidt Mumm, Andreas, Giles, David (2013) Uranium-bearing hematite from the Olympic Dam CuāUāAu deposit, South Australia: A geochemical tracer and reconnaissance PbāPb geochronometer. Precambrian Research, 238. 129-147 doi:10.1016/j.precamres.2013.10.007 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
Cuney M, Kyser K. 2009. Recent and not-so-recent developments in uranium deposits and implications for exploration. Mineral Assoc Canada Short Course Ser, 39: 1ā257 | |
![]() | Cuney, Michel, Friedrich, Marc, Blumenfeld, Philippe, Bourguignon, Anne, Boiron, Marie Christine, Vigneresse, Jean Louis, Poty, Bernard (1990) Metallogenesis in the French part of the Variscan orogen. Part I: U preconcentrations in pre-Variscan and Variscan formations ā a comparison with Sn, W and Au. Tectonophysics, 177 (1) 39-57 doi:10.1016/0040-1951(90)90273-b |
![]() | Dahl, Tais W., Boyle, Richard A., Canfield, Donald E., Connelly, James N., Gill, Benjamin C., Lenton, Timothy M., Bizzarro, Martin (2014) Uranium isotopes distinguish two geochemically distinct stages during the later Cambrian SPICE event. Earth and Planetary Science Letters, 401. 313-326 doi:10.1016/j.epsl.2014.05.043 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Dai, Shifeng, Seredin, Vladimir V., Ward, Colin R., Hower, James C., Xing, Yunwei, Zhang, Weiguo, Song, Weijiao, Wang, Peipei (2015) Enrichment of UāSeāMoāReāV in coals preserved within marine carbonate successions: geochemical and mineralogical data from the Late Permian Guiding Coalfield, Guizhou, China. Mineralium Deposita, 50 (2) 159-186 doi:10.1007/s00126-014-0528-1 |
![]() | |
![]() | Dai, Shifeng; Xie, Panpan; Jia, Shaohui; Ward, Colin R.; Hower, James C.; Yan, Xiaoyun; French, David (2017) Enrichment of U-Re-V-Cr-Se and rare earth elements in the Late Permian coals of the Moxinpo Coalfield, Chongqing, China: Genetic implications from geochemical and mineralogical data. Ore Geology Reviews, 80. doi:10.1016/j.oregeorev.2016.06.015 |
![]() | |
Dai S F, Zhao L, Wei Q, Song X L, Wang W F, Liu J J, Duan P P. 2020. Resources of critical metals in coal-bearing sequences in China: Enrichment types and distribution (in Chinese). Sci Bull, 65: 3715ā3729 | |
![]() | |
![]() | |
Deng J, Zhai Y S, Mo X X, Wang Q F, Li C S. 2019. Temporal-spatial distribution of metallic ore deposits in China and their geodynamic settings. Soc Econ Geol Spec Publ, 22: 103ā132 | |
![]() | Ding, Xing, Lundstrom, Craig, Huang, Fang, Li, Jie, Zhang, Zeming, Sun, Xiaoming, Liang, Jinlong, Sun, Weidong (2009) Natural and experimental constraints on formation of the continental crust based on niobiumātantalum fractionation. International Geology Review, 51 (6) 473-501 doi:10.1080/00206810902759749 |
![]() | |
![]() | |
Du J G, AudĆ©tat A. 2020. Early sulfide saturation is not detrimental to porphyry Cu-Au formation. Geology, 48: 519ā524 | |
Du L T, Wang Y M. 1984. The unity of mineralization mechanisms among granite-type, volcanic-type, carbonaceous-siliceous-mudstone-type, and sandstone-type uranium deposits in South China (in Chinese). Uranium Geol, (3): 1ā10 | |
Du Y S, Yu W C, Zhou Q, Guo H, Jin S, Liu Z C, Huang H, Liu H, Wang P, Qi L. 2023. Discussion about the coupling relationship between the breakup of supercontinent and the large-scale manganese accumulation in China (in Chinese). J Palaeogeogr, 25: 1211ā1234 | |
![]() | |
Ehrig K, Liebezeit V, MaCmillan E, Lower C, Ciobanu C L. 2015. Uranium mineralogy versus the recovery of uranium at Olympic Dam. Adelaide: The AusIMM International Uranium Conference 2015 | |
![]() | |
![]() | Elrick, Maya, Polyak, Victor, Algeo, Thomas J., Romaniello, Stephen, Asmerom, Yemane, Herrmann, Achim D., Anbar, Ariel D., Zhao, Laishi, Chen, Zhong-Qiang (2017) Global-ocean redox variation during the middle-late Permian through Early Triassic based on uranium isotope and Th/U trends of marine carbonates. Geology, 45 (2) 163-166 doi:10.1130/g38585.1 |
![]() | |
![]() | |
![]() | Mercadier, J., Annesley, I. R., McKechnie, C. L., Bogdan, T. S., Creighton, S. (2013) Magmatic and Metamorphic Uraninite Mineralization in the Western Margin of the Trans-Hudson Orogen (Saskatchewan, Canada): A Uranium Source for Unconformity-Related Uranium Deposits?. Economic Geology, 108 (5) 1037-1065 doi:10.2113/econgeo.108.5.1037 |
![]() | |
Fan H R, Xie Y H, Wang K Y, Yang X M. 2001. Carbonatitic fluids and REE mineralization (in Chinese). Earth Sci Front, 8: 289ā295 | |
![]() | |
Fang W X. 2014. Geotectonic evolution and the proterozoic iron oxide copper-gold deposits on the western margin of the Yangtze massif (in Chinese). Geotect Metal, 38: 733ā757 | |
Fang W X, Liu Y L, Zhang S L, Guo M H. 2009. Three types of continental geodynamics and metallogenic models for IOCG (Iron-oxide Copper Gold Deposits) from the global view (in Chinese). J Northwest Univ-Nat Sci Ed, 39: 404ā413 | |
Fang W X, Wang L, Lu J, Li T C, Jia R X. 2020. Mesozoic-Cenozoic sedimentary basin, foreland fold-and-thrust meralization reglarities of copper-lead-zinc-celesite-uranium-coal in Wulagen, Xinjiang, China (in Chinese). Geotect Metal, 44: 881ā912 | |
![]() | |
Fayek M, Kyser T K. 1997. Characterization of multiple fluid-flow events and rare-earth-element-mobility associated with formation of unconformity-type uranium deposits in the Athabasca Basin, Saskatchewan. Can Mineral, 35: 627ā658 | |
![]() | |
![]() | Ferguson, Daniel, Chi, Guoxiang, Normand, Charles, Mercadier, Julien, Wang, Yumeng, McKee, Kelsey, Anderson, Magdalena, Robbins, John (2025) Relationship between U and Ni-Co-As mineralization in the Midwest polymetallic U deposit, Athabasca Basin (Canada) ā constraints from mineralogical, geochemical, and fluid inclusion studies. Mineralium Deposita, 60 (1). doi:10.1007/s00126-024-01304-0 |
![]() | Ferreira da Silva, Guilherme, Silva, Adalene Moreira, Toledo, Catarina Labouré Bemfica, Chemale Junior, Farid, Klein, Evandro Luiz (2022) Predicting mineralization and targeting exploration criteria based on machine-learning in the Serra de Jacobina quartz-pebble-metaconglomerate Au-(U) deposits, São Francisco Craton, Brazil. Journal of South American Earth Sciences, 116. 103815 doi:10.1016/j.jsames.2022.103815 |
Foley N K, Hofstra A H, Lindsey D A, Seal R R, Jaskula B, Piatak N M. 2010. Occurrence model for volcanogenic beryllium deposits. Reston: Mineral Deposit Models for Resource Assessment. US Geological Survey | |
![]() | Foley, Stephen F, Barth, Matthias G, Jenner, George A (2000) Rutile/melt partition coefficients for trace elements and an assessment of the influence of rutile on the trace element characteristics of subduction zone magmas. Geochimica et Cosmochimica Acta, 64 (5) 933-938 doi:10.1016/s0016-7037(99)00355-5 |
![]() | |
Frimmel H E, Groves D I, Kirk J, Ruiz J, Minter W E L. 2005. The formation and preservation of the Witwatersrand goldfields, the worldās largest gold province. In: Hedenquist J W, Thompson J F H, Goldfarb R J, Richards J P, eds. Economic Geology: One Hundredth Anniversary Volume. Littleton: Society of Economic Geologists, Inc. 769ā797 | |
![]() | |
![]() | |
![]() | Fuchs, Sebastian H.J., Schumann, Dirk, Williams-Jones, Anthony E., Murray, Andrew J., Couillard, Martin, Lagarec, Ken, Phaneuf, Michael W., Vali, Hojatollah (2017) Gold and uranium concentration by interaction of immiscible fluids (hydrothermal and hydrocarbon) in the Carbon Leader Reef, Witwatersrand Supergroup, South Africa. Precambrian Research, 293. 39-55 doi:10.1016/j.precamres.2017.03.007 |
Not Yet Imported: - journal-article : 10.1016/j.anucene.2013.03.010 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Gao C, Kang Q Q, Jiang H J, Zheng H, Li P, Zhang X M, Li L, Dong Q Q, Ye X C, Hu X J. 2017. A unique uranium polymetallic deposit discovered in the Qinling orogenic belt: The Huayangchuan super-large U-Nb-Pb-REE deposit associated with pegmatites and carbonatites (in Chinese). Geochimica, 46: 446ā455 | |
Gao P X, Liu X M. 1999. Disscussion on geological records of convergence and disintegration in China continent durin Mesoproterozoic and Neoroterozoic (in Chinese). Prog Precambrian Res, 22: 47ā54 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Groves, D. I., Bierlein, F. P., Meinert, L. D., Hitzman, M. W. (2010) Iron Oxide Copper-Gold (IOCG) Deposits through Earth History: Implications for Origin, Lithospheric Setting, and Distinction from Other Epigenetic Iron Oxide Deposits. Economic Geology, 105 (3) 641-654 doi:10.2113/gsecongeo.105.3.641 |
Guo F S, Lin Z W, Li G R, Deng J Z, Fang G X. 2017. Study on the geological structure of Xiangshan uranium-bearing volcanic basin: Evidences from magnetotelluric sounding and GOCAD modeling. Chin J Geophys, 60: 1491ā1510 | |
![]() | Guo, Fusheng; Li, Zenghua; Deng, Teng; Qu, Mengmeng; Zhou, Wanpeng; Huang, Qinyi; Shang, Pei; Zhang, Chengyong; Yan, Zhaobin (2020) Key factors controlling volcanic-related uranium mineralization in the Xiangshan Basin, Jiangxi Province, South China: A review. Ore Geology Reviews, 122. doi:10.1016/j.oregeorev.2020.103517 |
![]() | |
![]() | |
![]() | |
Han Y W, Ma Z D, Zhang H F, Zhang B R, Li F L, Gao S, Bao Z Y. 2003. Geochemistry. Beijing: Geological Publishing House. 1ā370 | |
![]() | |
![]() | |
![]() | |
Hitzman M W. 2000. Iron oxide-Cu-Au deposits: What, where, when, and why. In: Porter T M, ed. Hydrothermal Iron Oxide Copper-Gold and Related Deposits: A Global Perspective. Adelaide: PGC Publishing. 9ā25 | |
![]() | |
![]() | |
![]() | |
![]() | |
Hou L, Ding J, Wang C M, Liao Z W, Guo Y, Wang S W, Wang Z Z. 2013. Ore-forming fluid and metallogenesis of the Yinachang Fe-Cu-Au-REE deposit, Wuding, Yunan Province, China (in Chinese). Acta Petrol Sin, 29: 1187ā1203 | |
![]() | Hou, Lin, Ding, Jun, Deng, Jun, Peng, Hui-juan (2015) Geology, geochronology, and geochemistry of the Yinachang FeāCuāAuāREE deposit of the Kangdian region of SW China: Evidence for a PaleoāMesoproterozoic tectono-magmatic event and associated IOCG systems in the western Yangtze Block. Journal of Asian Earth Sciences, 103. 129-149 doi:10.1016/j.jseaes.2014.09.016 |
Hou L, Peng H J, Ding J. 2015b. Sources of the ore-forming materials for the Yinachang Fe-Cu-Au-REE deposit, Wuding, Yunnan Province: Constraints from the ore geology and the S, Pb, H, O isotope geochemistry (in Chinese). Acta Petrol Mineral, 34: 205ā218 | |
Hou Z Q, Chen J, Zhai M G. 2020. Current status and frontiers of research on critical mineral resources (in Chinese). Sci Bull, 65: 3651ā3652 | |
Hu B Q, Qiu L F, Li M G, Sun Z X, Lv G X, Zhou Y P, Bai L H. 2015. The tectono-magmatic evolution and metallogenic regularity of Xiangshan uranium ore-field in Jiangxi Province (in Chinese). Earth Sci Front, 22: 29ā36 | |
Hu M M. 2000. Gharacteristics of basement and uranium and polymetallic mineralizations in Shengyuan basin (in Chinese). Uranium Geol, 16: 150ā156, 163 | |
![]() | |
![]() | |
Hua R M, Mao J W. 1999. A preliminary discussion on the Mesozoic metallogenic explosion in east China (in Chinese). Miner Depos, 18: 300ā307 | |
Huang C J, Wang J Z, Li Z Q. 2015. REE geochemistry of fluorite from Lala IOCG deposit, SW margin of Yangtze block (in Chinese). Acta Mineral Sin, 35: 95ā102 | |
![]() | Huang, Qiuyue, Kamenetsky, Vadim S., McPhie, Jocelyn, Ehrig, Kathy, Meffre, Sebastien, Maas, Roland, Thompson, Jay, Kamenetsky, Maya, Chambefort, Isabelle, Apukhtina, Olga, Hu, Yongbin (2015) Neoproterozoic (ca. 820ā830 Ma) mafic dykes at Olympic Dam, South Australia: Links with the Gairdner Large Igneous Province. Precambrian Research, 271. 160-172 doi:10.1016/j.precamres.2015.10.001 |
Huang S J. 1982. Geological criteria for prospecting carbonaceous siliceous mudstone-type uranium deposits. In: Anthology of Carbonaceous Siliceous Mudstone-type Uranium Deposits. Beijing: Atomic Energy Press. 147ā156 | |
Huang Z X, Li Z Y, Jiao Y L, Liu J, Sun X C. 2015. Processes and models of uranium-polymetallic mineralization in northern Hebei Province (in Chinese). Acta Mineral Sin, 35(S1): 300ā301 | |
Hui X C, Li Z Y, Huang Z Z, Li X Z, Guo J. 2012. Metallogenic characteristics of the Huayangchuan uranium-polymetallic deposit in Shaanxi Province (in Chinese). Deposit Geol, 31(S1): 201ā202 | |
![]() | Hurtig, N. C., Heinrich, C. A., Driesner, T., Herrmann, W., Wall, V., Mathison, I. (2014) Fluid Evolution and Uranium (-Mo-F) Mineralization at the Maureen Deposit (Queensland, Australia): Unconformity-Related Hydrothermal Ore Formation with a Source in the Volcanic Cover Sequence. Economic Geology, 109 (3) 737-773 doi:10.2113/econgeo.109.3.737 |
Hussey K J, Tyrrell J. 2012. Nolans Project Update. Perth: Arafura Resources Limited | |
![]() | Huston, David L., Maas, Roland, Cross, Andrew, Hussey, Kelvin J., Mernagh, Terrence P., Fraser, Geoff, Champion, David C. (2016) The Nolans Bore rare-earth element-phosphorus-uranium mineral system: geology, origin and post-depositional modifications. Mineralium Deposita, 51 (6) 797-822 doi:10.1007/s00126-015-0631-y |
IAEA (International Atomic Energy Agency). 2016. World distribution of uranium deposits (UDEPO). TECDOC-1843 | |
IAEA (International Atomic Energy Agency). 2018a. IAEA annual report 2017 (www.iaea.org). GC(62)/3. 1ā160 | |
IAEA (International Atomic Energy Agency). 2018b. Geological classification of uranium deposits and description of selected examples. IAEA-TECDOC-1842 | |
IAEA (International Atomic Energy Agency). 2021. Under construction reactors [EB/OL]. (2021-05-13)[2022-03-25]. https://pris.iaea.org/PRIS/WorldStatistics/UnderConstructionReactorsByCountry.aspx | |
![]() | |
![]() | Ingham, Edwina S., Cook, Nigel J., Cliff, John, Ciobanu, Cristiana L., Huddleston, Adam (2014) A combined chemical, isotopic and microstructural study of pyrite from roll-front uranium deposits, Lake Eyre Basin, South Australia. Geochimica et Cosmochimica Acta, 125. 440-465 doi:10.1016/j.gca.2013.10.017 |
![]() | |
Jefferson C W, Thomas D, Gandhi S S, Ramaekers P, Olson R A. 2007. Unconformity-associated uranium deposits of the Athabasca Basin, Saskatchewan and Alberta. Geol Sur Canada Bull, 588: 23ā67 | |
Jiang S Y, Zhao K D, Jiang H, Su H M, Xiong S F, Xiong Y Q, Xu Y M, Zhang W, Zhu L Y. 2020. Spatiotemporal distribution, geological characteristics and metallogenic mechanism of tungsten and tin deposits in China:An overview (in Chinese). Sci Bull, 65: 3730ā3745 | |
![]() | |
![]() | |
Johnson S C. 2017. The geochemistry of metalliferous black shales: Understanding primary enrichments, metamorphic processes, and the role of metalrich black shales in archiving earth evolution. Dissertation for Doctoral Degree. Hobart: University of Tasmania | |
Kamenetsky V S, Ehrig K, Maas R, Meffre S, Cook N J. 2015. The supergiant Olympic Dam Cu-U-Au-Ag ore deposit: Toward a new genetic model. Hobart: SEG 2015: World Class Ore Deposits: Discovery to Recovery. Society of Economic Geologists | |
![]() | Kirchenbaur, Maria, Maas, Roland, Ehrig, Kathy, Kamenetsky, Vadim S., Strub, Erik, Ballhaus, Chris, Münker, Carsten (2016) Uranium and Sm isotope studies of the supergiant Olympic Dam CuāAuāUāAg deposit, South Australia. Geochimica et Cosmochimica Acta, 180. 15-32 doi:10.1016/j.gca.2016.01.035 |
![]() | |
![]() | |
![]() | |
![]() | Kumar, Ajay; Venkatesh, A.S.; Kumar, Pramod; Rai, A.K.; Parihar, P.S. (2017) Geochemistry of Archean Radioactive Quartz Pebble Conglomerates and Quartzites from western margin of Singhbhum-Orissa Craton, eastern India: Implications on Paleo-weathering, provenance and tectonic setting. Ore Geology Reviews, 89. doi:10.1016/j.oregeorev.2017.06.014 |
Kwak T A P, White A J R. 1982. Contrasting of W-Mo-Cu and W-Sn-F skarn types and related granitoids. Miner Geol, 32: 339ā351 | |
Kyser K, Cuney M. 2009. Unconformity-related uranium deposits. In: Cuney M., Kyser K, eds. Recent and Not-so-recent Developments in Uranium Deposits and Implications for Exploration. Mineral Assoc Canada Short Course Series, 39: 161ā219 | |
![]() | |
![]() | |
![]() | |
![]() | Legros, Hélène, Czas, Janina, Luo, Yan, Woodland, Sarah, Sarkar, Chiranjeeb, Shirey, Steven B., Schulze, Dan, Pearson, D. Graham (2024) Post-Archean Nb-REE-U enrichment in the Superior craton recorded in metasomatised mantle rocks erupted in the 1.1 Ga Midcontinental Rift event. Mineralium Deposita, 59 (2) 373-396 doi:10.1007/s00126-023-01214-7 |
![]() | |
Li H D, Zhong F J, Zhang Z Y, Shen T, Huang G W. 2015. Uraniumpolymetallic combination characteristics and significance of volcanic type uranium deposits in China (in Chinese). Miner Resour Geol, 29: 283ā288, 294 | |
Li J K, Zou T R, Wang D H, Ding X. 2017. A Review of beryllium metallogenic regularity in China (in Chinese). Deposit Geol, 36: 951ā978 | |
Li J W, Zhao X F, Deng X D, Tan J, Hu H, Zhang D Y, Li Z K, Li H, Rong H, Yang M Z, Cao K, Jin X Y, Sui J X, Zu B, Chang J, Wu Y F, Wen G, Zhao S R. 2019. An overview of the advance on the study of Chinaās ore deposits during the last seventy years. Sci China Earth Sci, 49: 1720ā1771 | |
Li L W, Bai Y S. 2023. Strategic considerations on Chinaās āThree-Stepā nuclear energy development plan under the āDual Carbonā goals (in Chinese). China Electric Power Enter Manage, 28: 71ā73 | |
Li Q, Chen Q, Wang J B, Chen Y J, Kang L G, Chen B, Shi Z H. 2023. Current situation of uranium resources in the world and suggestions on resource guarantee of nuclear power development in China (in Chinese). China Min Mag, 32: 1ā9 | |
Li S Z, Suo Y H, Zhou J, Zhong S H, Sun G Z, Liu J, Wang G Z, Zhu J J, Jiang S H, Li X Y, Guo X Y, Liu L J, Liu Y J, Cao X Z, Guo L L, Zhao S J, Wang P C, Guan Q B, Chen L, Liu B R, Zhou J P, Jiang Z X, Liu L, Cao H H, Dai L M, Yu S Y, Liu B, Wang X J, Wang C C, Wang X, Liu Z, Guan H X, Li M H, Hu J, Duan W, Yu L, Liu X G, Wang Y H, Zhong Y, Liu P, Zhang W C, Li L Y, Zhao Y Y, Xu S M. 2022. Microplate and megaplate: Fundamental principles and paradigm transition (in Chinese). Acta Geol Sin, 96: 3541ā3558 | |
Li W S, Zhang Z F, Sun X L. 1995. The metallogenic features and prospecting prognosis of the gold deposits hosted in conglomerates in the Jiamusi-Mudanjiang region (in Chinese). Geol Expol Non-Ferrous Metals, 4: 83ā88, 95 | |
![]() | |
![]() | Li, Xiaofeng; Wang, Guo; Mao, Wei; Wang, Chunzeng; Xiao, Rong; Wang, Mou (2015) Fluid inclusions, muscovite ArāAr age, and fluorite trace elements at the Baiyanghe volcanic BeāUāMo deposit, Xinjiang, northwest China: Implication for its genesis. Ore Geology Reviews, 64. doi:10.1016/j.oregeorev.2014.07.017 |
![]() | Li, Xian-hua, Li, Zheng-Xiang, Zhou, Hanwen, Liu, Ying, Kinny, Peter D. (2002) UāPb zircon geochronology, geochemistry and Nd isotopic study of Neoproterozoic bimodal volcanic rocks in the Kangdian Rift of South China: implications for the initial rifting of Rodinia. Precambrian Research, 113 (1) 135-154 doi:10.1016/s0301-9268(01)00207-8 |
![]() | |
![]() | |
![]() | |
![]() | Li, Yanyan; Zhang, Chengjiang; Duo, Ji; Zhang, Fangfang; Song, Hao; Zhang, Baojian; Xing, Yifei (2021) Genesis of the Baimadong carbonate-hosted uranium deposit, Guizhou, SW China: Constrains from geology, fluid inclusions, and C-O isotopes. Ore Geology Reviews, 139. doi:10.1016/j.oregeorev.2021.104487 |
![]() | Li, Zenghua, Chi, Guoxiang, Bethune, Kathryn M., Thomas, David, Zaluski, Gerard (2017) Structural Controls on Fluid Flow During Compressional Reactivation of Basement Faults: Insights from Numerical Modeling for the Formation of Unconformity-Related Uranium Deposits in the Athabasca Basin, Canada. Economic Geology, 112 (2) 451-466 doi:10.2113/econgeo.112.2.451 |
![]() | Li, Zenghua, Chi, Guoxiang, Bethune, Kathryn M., Eldursi, Khalifa, Thomas, David, Quirt, David, Ledru, Patrick (2018) Synchronous egress and ingress fluid flow related to compressional reactivation of basement faults: the Phoenix and Gryphon uranium deposits, southeastern Athabasca Basin, Saskatchewan, Canada. Mineralium Deposita, 53 (2) 277-292 doi:10.1007/s00126-017-0737-5 |
![]() | Li, Zenghua, Chi, Guoxiang, Bethune, Kathryn M., Eldursi, Khalifa, Quirt, David, Ledru, Patrick, Thomas, David (2021) Interplay between thermal convection and compressional fault reactivation in the formation of unconformity-related uranium deposits. Mineralium Deposita, 56 (7) 1389-1404 doi:10.1007/s00126-020-01011-6 |
Li Z Q, Hu R Z, Wang J Z, Liu J J, Li C Y, Liu Y P, Ye L. 2002. Lala Fe-Oxide-Cu-Au-U-REE ore deposit, Sichuan ChinaāAn example of superimposed mineralization (in Chinese). Bull Mineral Petrol Geochem, 21: 258ā260 | |
![]() | |
![]() | Li, Z.X., Bogdanova, S.V., Collins, A.S., Davidson, A., De Waele, B., Ernst, R.E., Fitzsimons, I.C.W., Fuck, R.A., Gladkochub, D.P., Jacobs, J., Karlstrom, K.E., Lu, S., Natapov, L.M., Pease, V., Pisarevsky, S.A., Thrane, K., Vernikovsky, V. (2008) Assembly, configuration, and break-up history of Rodinia: A synthesis. Precambrian Research, 160 (1) 179-210 doi:10.1016/j.precamres.2007.04.021 |
Li Z X, Qin M K, Qi F C, Wang W Q, Wang J, Yi L S, Zhang Y L, Li G C, Han H Z. 2020. Research status and prospect of uranium-bearing phosphorite deposits (in Chinese). Uranium Geol, 36: 520ā528 | |
Li Z X, Qin M K, Wang W Q, Wang J, Han H Z. 2022. Geochemical Characteristics of baizhuyu U-polymetallic phosphorite deposit (in Chinese). Uranium Geol, 38: 25ā37 | |
Lin W, Xu D R, Hou Q L, Li S J, Meng L T, Rem Z H, Qiu H B, Chu Y. 2019. Early Cretaceous extensional dome and related polymetallic mineralization in the central and eastern China (in Chinese). Geotect Metal, 43: 409ā430 | |
![]() | |
Liu B G, Luo Y N, Yao Y, Zhong H, Wilson A H. 2008. PGE mineralization of layered intrusions in Panxi rift region, China (in Chinese). Earth Sci Front, 15: 269ā279 | |
Liu C H, Liu F L. 2015. The Mesoproterozoic rifting in the North China Craton: A case study for magmatism and sedimentation of the Zhaertai-Bayan Obo-Huade rift zone (in Chinese). Acta Petrol Sin, 31: 3107ā3128 | |
Liu C Y, Tan C Q, Sun W. 2005. Study on the coexistence and accumulation Mechanisms, as well as enrichment and distribution patterns of multiple energy minerals. In: Liu C, ed. Advances in Research on the Coexistence and Enrichment of Multiple Energy Minerals in Basins (in Chinese). Beijing: Science Press. 1ā16 | |
![]() | |
Liu C, Tian J J, Fang G, Zhao X B, Wang M, Yi L S, Qiu L F, Wu Y, Zou Y L. 2020a. The mineralogical characteristics of euclase (BeAlSiO4(OH)) in the Baiyanghe super-large beryllium (uranium) deposit and their geological significances (in Chinese). Acta Mineral Sin, 40: 191ā200 | |
Liu C, Tian J J, Wang M, Yang W L, Zhang L, Zhao X B, Yi L S, Wu Y, Zou Y L. 2020b. Relationship between the beryllium and uranium mineralization in Baiyanghe Be-U deposit, western Junggar: Evidence from wall-rock alteration and contact relation of ores and minerals (in Chinese). Geol Explor, 56: 465ā477 | |
Liu G, Wang G R, Li Y L, Dang L, Yin K B. 2014. Analysis on metallogen ic geological conditions of uranium ploymetallic deposit in Yinisala area of Xuemisitan volcanic belt (in Chinese). World Nuclear Geosci, 31: 575ā600 | |
![]() | |
Not Yet Imported: Journal of Oceanology and Limnology - journal-article : 10.1007/s00343-019-8339-y If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Liu H, Ding X, Yan H, Liu K X, Liu J F, Huang X L. 2024. The solubility and complexation of Niobium in hydrothermal fluids. Solid Earth Sci, 9: 100162 | |
![]() | Liu, Lei, Chen, Wei Terry, Li, Xiao-Chun, Zhao, Xin-Fu (2024) Origin and tectonic environment of the Longbohe Fe-Cu-(LREE) deposit in the Ailao ShanāRed River shear zone, Southwest China: a Neoproterozoic subduction-related IOCG deposit?. Mineralium Deposita, 59 (1) 23-46 doi:10.1007/s00126-023-01198-4 |
Liu T, Liu Q F. 2017. Uranium resources present situation and development trend ofnuclear power around world (in Chinese). Modern Min, 33: 98ā103 | |
![]() | Liu, Weihua, Borg, Stacey J., Testemale, Denis, Etschmann, Barbara, Hazemann, Jean-Louis, Brugger, JoĆ«l (2011) Speciation and thermodynamic properties for cobalt chloride complexes in hydrothermal fluids at 35ā440°C and 600bar: An in-situ XAS study. Geochimica et Cosmochimica Acta, 75 (5) 1227-1248 doi:10.1016/j.gca.2010.12.002 |
Liu Y Y, Lu Y X, Liang Y W, Peng Z L, Huang Q R, Ma H M. 2007. Analysis on metallogenic conditions of Rencha volcanic Basin (in Chinese). J Guilin Univ Technol, 27: 469ā473 | |
Liu Y, Cong W K. 2017. Overview on world uranium resources, production and demand (in Chinese). World Nuclear Geosci, 27: 469ā473 | |
![]() | Liu, Yan, Hou, Zengqian (2017) A synthesis of mineralization styles with an integrated genetic model of carbonatite-syenite-hosted REE deposits in the Cenozoic Mianning-Dechang REE metallogenic belt, the eastern Tibetan Plateau, southwestern China. Journal of Asian Earth Sciences, 137. 35-79 doi:10.1016/j.jseaes.2017.01.010 |
Long K R, Van Gosen B S, Foley N K., Cordier D. 2010. The principal rare earth element deposits of the United StatesāA summary of domestic deposits and a global perspective Gd Pr Sm Nd La Ce. United States Geological Survey Scientific Investigations Report. 2010-5220. 96 | |
![]() | Louvel, Marion, Bordage, Amélie, Testemale, Denis, Zhou, Li, Mavrogenes, John (2015) Hydrothermal controls on the genesis of REE deposits: Insights from an in situ XAS study of Yb solubility and speciation in high temperature fluids (T < 400 °C) Chemical Geology, 417. 228-237 doi:10.1016/j.chemgeo.2015.10.011 |
![]() | |
Lu S N, Hao G J, Xiang Z Q. 2016. Precambrian major geological events (in Chinese). Earth Sci Front, 23: 140ā155 | |
Luo Y N. 1985. Understanding and progress in the study of Panxi Ancient Rift Valley. Geol China, (1): 27ā31, 33 | |
![]() | |
Maas R, Kamenetsky V, Ehrig K, Meffre S, Diemar G. 2011. Olympic Dam U-Cu-Au deposit, Australia: New age constraints. Mineral Mag, 75: 1375 | |
![]() | |
![]() | |
![]() | |
![]() | Mao, Jing Wen, Pirajno, Franco, Zhang, Zuo Heng, Chai, Feng Mei, Wu, Hua, Chen, Shi Ping, Cheng, Lin Song, Yang, Jian Min, Zhang, Chang Qing (2008) A review of the CuāNi sulphide deposits in the Chinese Tianshan and Altay orogens (Xinjiang Autonomous Region, NW China): Principal characteristics and ore-forming processes. Journal of Asian Earth Sciences, 32 (2) 184-203 doi:10.1016/j.jseaes.2007.10.006 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | McPhie, Jocelyn, Orth, Karin, Kamenetsky, Vadim, Kamenetsky, Maya, Ehrig, Kathy (2016) Characteristics, origin and significance of Mesoproterozoic bedded clastic facies at the Olympic Dam CuāUāAuāAg deposit, South Australia. Precambrian Research, 276. 85-100 doi:10.1016/j.precamres.2016.01.029 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Migdisov, Art. A., Williams-Jones, A.E., Wagner, T. (2009) An experimental study of the solubility and speciation of the Rare Earth Elements (III) in fluoride- and chloride-bearing aqueous solutions at temperatures up to 300°C. Geochimica et Cosmochimica Acta, 73 (23) 7087-7109 doi:10.1016/j.gca.2009.08.023 |
![]() | |
![]() | |
![]() | |
![]() | |
Misra K C. 1999. Understanding Mineral Deposits. Hingham: Kluwer Academic Publishers. 1ā839 | |
![]() | |
![]() | |
Morton R D, Abut A, Gandhi S S. 1978. Fluid inclusion studies of the Rexspar uranium fluorite deposit, Birch Island, British Columbia. In: Current Research, Part B, Canadian Geology Survery Paper, 78-1B: 137ā140. Ottawa: Geological Survey of Canada | |
![]() | |
![]() | |
Nash J T. 2010. Volcanogenic uranium deposits: Geology, geochemical processes, and criteria for resource assessment. Reston, Virginia: U. S. Geological Survey | |
Nie J T, Li Z Y, Wang J, Guo J. 2015. Characteristics of polymetallic oreforming fluid and metallogenesis of the Xiangshan orefield in Jiangxi (in Chinese). Geol Bull China, 34: 535ā547 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Pal, Dipak C., Barton, Mark D., Sarangi, A. K. (2009) Deciphering a multistage history affecting UāCu(āFe) mineralization in the Singhbhum Shear Zone, eastern India, using pyrite textures and compositions in the Turamdih UāCu(āFe) deposit. Mineralium Deposita, 44 (1) 61-80 doi:10.1007/s00126-007-0165-z |
![]() | Pal, D. C., Chaudhuri, T., McFarlane, C., Mukherjee, A., Sarangi, A. K. (2011) Mineral Chemistry and In Situ Dating of Allanite, and Geochemistry of Its Host Rocks in the Bagjata Uranium Mine, Singhbhum Shear Zone, India--Implications for the Chemical Evolution of REE Mineralization and Mobilization. Economic Geology, 106 (7) 1155-1171 doi:10.2113/econgeo.106.7.1155 |
Palme H, ĆNeill H St C. 2003. Cosmochemical estimates of mantle composition. In: Carlson R W, ed. The Mantle and Core. Treatise on Geochemistry 2. Amsterdam: Elsevier. 1ā38 | |
![]() | |
![]() | |
![]() | |
![]() | Partin, C.A., Bekker, A., Planavsky, N.J., Scott, C.T., Gill, B.C., Li, C., Podkovyrov, V., Maslov, A., Konhauser, K.O., Lalonde, S.V., Love, G.D., Poulton, S.W., Lyons, T.W. (2013) Large-scale fluctuations in Precambrian atmospheric and oceanic oxygen levels from the record of U in shales. Earth and Planetary Science Letters, 369. 284-293 doi:10.1016/j.epsl.2013.03.031 |
![]() | Patten, Clifford, Barnes, Sarah-Jane, Mathez, Edmond A., Jenner, Frances E. (2013) Partition coefficients of chalcophile elements between sulfide and silicate melts and the early crystallization history of sulfide liquid: LA-ICP-MS analysis of MORB sulfide droplets. Chemical Geology, 358. 170-188 doi:10.1016/j.chemgeo.2013.08.040 |
![]() | |
Not Yet Imported: Survey of Progress in Chemistry Volume 5 - book-chapter : 10.1016/B978-0-12-395706-1.50007-8 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | Peiffert, Chantal, nguyen-Trung, Chinh, Cuney, Michel (1996) Uranium in granitic magmas: Part 2. Experimental determination of uranium solubility and fluid-melt partition coefficients in the uranium oxide-haplogranite-H2O-NaX (X = Cl, F) system at 770°C, 2 kbar. Geochimica et Cosmochimica Acta, 60 (9) 1515-1529 doi:10.1016/0016-7037(96)00039-7 |
![]() | |
Phillips G N, Law J D M. 2000. Witwatersrand gold fields: Geology, genesis, and exploration. Rev Econ Geol, 13: 439ā500 | |
![]() | |
![]() | |
![]() | |
![]() | |
Pretorius D A. 1991. The sources of Witwatersrand gold and uranium: A continued difference of opinion. In: Hutchinson R W, Grauch R I, eds. Historical Perspectives of genetic concepts and case histories of Famous Discoveries. Econ Geol Monograph, 8: 139ā163 | |
Qi F C, Zhang Z L, Li Z X, Wang Z M, He Z B, Wang W Q. 2011a. Unconventional uranium resources in China (in Chinese). Uranium Geol, 27: 193ā199 | |
Qi F C, Zhang Z L, He Z B, Li Z X, Wang W Q, Su X L, Zhang C. 2011b. Uranium-polymetallic ore-forming system and mechanism of the black rock series in the southeast continental margin of Yangtze plate (in Chinese). Uranium Geol, 27: 129ā588 | |
Qi F C, Zhang Z L, Li Z X, He Z B, Wang W Q. 2012. Temporal and spatial evolution pattern of carbonaceous-siliceous argillaceous rock type uranium deposits in China (in Chinese). Uranium Geol, 28: 65ā71 | |
Qi F C, Li Z X, Zhang Z L, Wang W Q, Wang W G, Yang Z Q, Zhang Y. 2014. The discovery of onofrite and uraninite in marine phosphorite and its geological significance, Northwestern Hunan (in Chinese). Uranium Geol, 30: 129ā167 | |
Qi F C, Li Z X, Wang W Q, Yang Z Q, Zhang Y. 2015. Uranium polymetallic ore-forming process of gas solution in marine phosphorite of northwestern Hunan (in Chinese). Miner Depos, 34: 179ā188 | |
Qin K Z, Zhai M G, Li G M, Zhao J X, Zeng Q D, Gao J, Xiao W J, Li J L, Sun S. 2017. Links of collage orogenesis of multiblocks and crust evolution to characteristic metallogeneses in China (in Chinese). Acta Petrol Sin, 33: 305ā325 | |
![]() | Rabiei, Morteza, Chi, Guoxiang, Normand, Charles, Davis, William J., Fayek, Mostafa, Blamey, Nigel J.F. (2017) Hydrothermal Rare Earth Element (Xenotime) Mineralization at Maw Zone, Athabasca Basin, Canada, and Its Relationship to Unconformity-Related Uranium Deposits. Economic Geology, 112 (6) 1483-1507 doi:10.5382/econgeo.2017.4518 |
![]() | Rabiei, Morteza, Chi, Guoxiang, Potter, Eric G., Petts, Duane C., Wang, Feiyue, Feng, Renfei (2023) Spatial variations in fluid composition along structures hosting unconformity-related uranium deposits in the Athabasca Basin, Canada: implications for ore-controlling factors. Mineralium Deposita, 58 (6) 1075-1099 doi:10.1007/s00126-023-01171-1 |
Ramaekers P, Jefferson C W, Yeo G M, Collier B, Post R T. 2007. Revised geological map and stratigraphy of the Athabasca Group, Saskatchewan and Alberta. Geol Surv Canada Bull, 588: 155ā192 | |
Rankin A H, Linnen R L, Samson I M. 2005. Carbonatite-associated rare metal deposits: Composition and evolution of ore-forming fluids-the fluid inclusion evidence. Geol Assoc Canada Short Course Notes, 17: 299ā314 | |
Reeve J S, Cross K C, Smith R N, Oreskes N. 1990. The Olympic Dam copper-uranium-gold-silver deposit, South Australia. Aust Inst Min Metall Mon, 14: 1009ā1035 | |
Research Laboratory of Saima Deposit, Beijing Uranium Geological Research Institute. 1977. Uranium deposits in the Saima Alkali Rock Massif in northeast China (in Chinese). Sci Sin, (5): 466ā483 | |
![]() | |
![]() | |
Rich R A, Holland H D, Petersen U. 1977. Hydrothermal Uranium Deposits. Amsterdam-Oxford-New York: Elsevier Scientific Publishing Company. 1ā290 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
Rudnick R L, Gao S. 2003. Composition of the continental crust. In: Holland H D, Turekian K K, eds. Treatise on Geochemistry: The Crust. Amsterdam: Elsevier. 3: 1ā64 | |
![]() | |
Not Yet Imported: Nuclear Technology - journal-article : 10.13182/NT03-2 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
![]() | |
![]() | |
Shahin H A A, Emad B M, Masoud M S. 2021. Uranium and rare metal mineralization in the El Sela and Qash Amir granitic intrusions, south Eastern Desert, Egypt. J Asian Earth Sci-X, 6: 100066 | |
![]() | Shan, PengFei; Cao, MingJian; Evans, Noreen J.; Gao, HuanXiang; Mao, YaJing; Gao, YanLi; Salazar, Leonardo; Zhao, YuSuo; Qin, KeZhang (2023) Automated quantitative mineralogy analysis reveals characteristics of Co occurrence in the Jinchang porphyry deposit, NE China. Ore Geology Reviews, 158. doi:10.1016/j.oregeorev.2023.105524 |
![]() | |
Shi D, Zheng J W. 2007. Sciences C A O. Coexistence and enrichment of oil, gas, coal and uranium in a basin and their organic material base (in Chinese). Nat Gas Geosci, 18: 168ā175 | |
Shi L, Lou H, Wang Q S, Lu H Y, Xu W M. 2015. Gravity field characteristics and crust density structure in the Panxi region, China (in Chinese). Chin J Geophys-Chin Ed, 58: 2402ā2412 | |
![]() | Shi, Zhiqiang; Chen, Bin; Wang, Yanyan; Hou, Mingcai; Jin, Xin; Song, Hao; Wang, Xiaoduan (2020) A linkage between uranium mineralization and high diagenetic temperature caused by coal self-ignition in the southern Yili Basin, northwestern China. Ore Geology Reviews, 121. doi:10.1016/j.oregeorev.2020.103443 |
![]() | |
![]() | |
![]() | |
![]() | Simons, Beth, Andersen, Jens C.Ć., Shail, Robin K., Jenner, Frances E. (2017) Fractionation of Li, Be, Ga, Nb, Ta, In, Sn, Sb, W and Bi in the peraluminous Early Permian Variscan granites of the Cornubian Batholith: Precursor processes to magmatic-hydrothermal mineralisation. Lithos, 278. 491-512 doi:10.1016/j.lithos.2017.02.007 |
![]() | |
![]() | Skirrow, R. G., Bastrakov, E. N., Barovich, K., Fraser, G. L., Creaser, R. A., Fanning, C. M., Raymond, O. L., Davidson, G. J. (2007) Timing of Iron Oxide Cu-Au-(U) Hydrothermal Activity and Nd Isotope Constraints on Metal Sources in the Gawler Craton, South Australia. Economic Geology, 102 (8) 1441-1470 doi:10.2113/gsecongeo.102.8.1441 |
Skirrow R G, Jaireth S, Huston D L, Bastrakov E, Schofield A, Wielen S V D, Barnicoat A. 2009. Uranium mineral systems: Processes, exploration criteria and a new deposit framework. Geosci Aust Rec 20: 44 | |
![]() | Slack, John F., Corriveau, Louise, Hitzman, Murray W. (2016) A Special Issue Devoted to Proterozoic Iron Oxide-Apatite (±REE) and Iron Oxide Copper-Gold and Affiliated Deposits of Southeast Missouri, USA, and the Great Bear Magmatic Zone, Northwest Territories, Canada: Preface. Economic Geology, 111 (8) 1803-1814 doi:10.2113/econgeo.111.8.1803 |
Smith R W. 1983. Aqueous chemistry of molybdenum at elevated temperatures and pressures with applications to porphyry molybdenum deposits. Dissertation for Doctoral Degree. Socorro: New Mexico Institute of Mining and Technology. 1ā311 | |
![]() | Song, Hao; Chi, Guoxiang; Zhang, Chengjiang; Xu, Deru; Xu, Zhengqi; Fan, Guang; Zhang, Gangyang (2020) Uranium enrichment in the Lala Cu-Fe deposit, Kangdian region, China: A new case of uranium mineralization associated with an IOCG system. Ore Geology Reviews, 121. doi:10.1016/j.oregeorev.2020.103463 |
![]() | Song, Hao, Chi, Guoxiang, Wang, Kewen, Li, Zenghua, Bethune, Kathryn M., Potter, Eric G., Liu, Yongxing (2022) The role of graphite in the formation of unconformity-related uranium deposits of the Athabasca Basin, Canada: A case study of Raman spectroscopy of graphite from the world-class Phoenix uranium deposit. American Mineralogist, 107 (11) 2128-2142 doi:10.2138/am-2022-8158 |
Song S W, Zhang C J, Song H. 2012. Discussion on the similarities between the Dahongshan iron-copper deposit and IOCG-type deposits (in Chinese). Adv Earth Sci, 27(Suppl.): 255ā257 | |
Song S Z, Zhao W, Zheng M L, Chen Z H. 2010. Features and uranium mineralization of Malou thrust nappe structure in Rencha Basin of northeast Guangdong (in Chinese). Uranium Geol, 26: 283ā287 | |
![]() | |
![]() | Song, Wenlei, Xu, Cheng, Smith, Martin P., Chakhmouradian, Anton R., Brenna, Marco, Kynický, JindÅich, Chen, Wei, Yang, Yueheng, Deng, Miao, Tang, Haiyan (2018) Genesis of the worldās largest rare earth element deposit, Bayan Obo, China: Protracted mineralization evolution over ā¼1 b.y. Geology, 46 (4) 323-326 doi:10.1130/g39801.1 |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
Sun K X, Shen Y R, Liu G Q, Li Z W, Pan X Y. 1991. Proterozoic Iron-Copper Deposits in Central Yunnan (in Chinese). Wuhan: China University of Geosciences Press. 1ā25 | |
![]() | |
![]() | |
![]() | |
Tang J H. 2020. Metallogenic geological characteristics and metallogenic prediction of uranium and polymetallic ore in Rencha Basin of northeast Guangdong. Dissertation for Doctoral Degree. Nanchang: East China University of Science and Technology. 1ā184 | |
![]() | |
![]() | Teixeira, João Batista Guimarães, de Souza, Jorge André Braz, da Silva, Maria da Glória, Leite, Carlson Matos Maia, Barbosa, Johildo Salomão Figueiredo, Coelho, Carlos Eduardo Silva, Abram, Maisa Bastos, Filho, Valter MÓnaco Conceição, Iyer, Sundaram S.S. (2001) Gold mineralization in the Serra de Jacobina region, Bahia Brazil: tectonic framework and metallogenesis. Mineralium Deposita, 36 (3) 332-344 doi:10.1007/s001260100174 |
![]() | |
Teng J W, Wei S Y. 1987. The formation, evolustion and classificaition of the Panzhihua-Xichang (Panxi) rift (in Chinese). Geotecton Metal, 11: 77ā90 | |
Thomas D J, Matthews R B, Sopuck V. 2000. Athabasca Basin (Canada) unconformity-type uranium deposits: Exploration model, current mine developments and exploration directions. Reno: Proceedings of Geological Society of Nevada, Symposium, Geology and Ore Deposits 2000: The Great Basin and Beyond, 1: 103ā126 | |
![]() | |
![]() | |
Tugarinov A I, Khodakovskii I L, Zhidikova A P. 1973. Physico chemical conditions of molybdenite formation in hydrothermal uranomolybdenic deposits. Geokhimiya, (7): 975ā984 | |
U.S. EIA (U.S. Energy Information Administration). 2019. Annual Energy Outlook 2019, With Projections to 2050 (www.eia.gov/aeo). U.S. Department of Energy, Washington, DC 20585. 1ā83 | |
![]() | Veksler, Ilya V., Dorfman, Alexander M., Dulski, Peter, Kamenetsky, Vadim S., Danyushevsky, Leonid V., Jeffries, Teresa, Dingwell, Donald B. (2012) Partitioning of elements between silicate melt and immiscible fluoride, chloride, carbonate, phosphate and sulfate melts, with implications to the origin of natrocarbonatite. Geochimica et Cosmochimica Acta, 79. 20-40 doi:10.1016/j.gca.2011.11.035 |
Not Yet Imported: - other : 10.1002/9781118755341.ch13 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Wall F, Mariano A N. 1996. Rare earth minerals in carbonatites: A discussion centred in the Kangankunde caebonatite, Malawi. In: Jones A P, Wall F, Williams C T, eds. Rare Earth Minerals: Chemistry, Origin and Ore Deposits. Mineralogical Society Series, vol. 7. London: Chapman and Hall. 193ā225 | |
Wang C, Song J Y, Zhang X, Cai Y Q. 2021. The support ability of world uranium resources and Chinaās countermeasures for carbon peak and carbon-neutralization (in Chinese). Uranium Geol, 37: 765ā779 | |
Wang D Z, Leng C B, Qin C J, Duan F H, Zhou W P, Xu D R. 2022. Geochemical characteristics and mineralization of uranium (in Chinese). Geotecton Metal, 46: 282ā302 | |
Wang J Y, Li Z D, Zhang Q, Li C, Xie Y, Li G Y, Zeng W, Ding N. 2020. Metallogenic epoch of the carbonatite-type Mo-U polymetallic deposit in east Qinling: Evidence from the monazite LA-ICP-MS U-Pb and molybdenite Re-Os isotopic dating (in Chinese). Acta Geol Sin, 4: 2946ā2964 | |
Wang J Z, Li Z Q, Huang C J. 2012. The main geological events of the Kangdian Proterozoic eon and response from to the La-La IOCG deposit (in Chinese). Adv Earth Sci, 27: 1074ā1079 | |
Wang J. 2000. Evolution of Neoproterozoic Rift Basins in South China: With Discussion on its Relationship with the Breakup of Rodinia (in Chinese). Beijing: Geological Publishing House. 1ā146 | |
Wang J, Ma Z H, Wang J L. 1998. Analysis of palaeosedimentary basināThe important way to understand completely breccia gold deposit. Gold, (6): 3ā7 | |
Wang J, Liu B J, Pan G T. 2001. A neoproterozoic rifting history of South ChinaāSignificance to Rodinia breakup (in Chinese). J Mineral Petrol, 21: 135ā145 | |
Wang J, Qi F C, Wang W Q, Wang Z Y, Zhang W D. 2021. Association type of mineralization elements and mineral occurrence of uranium polymetallic-bearing black-rock series in northwestern Hunan (in Chinese). Uranium Geol, 37: 1049ā1056 | |
Wang J, Wang W Q, Qi F C, Wang Z Y, Zhang W D. 2022. Mineral occurrence feature and its indicating significance of uraniumpolymetallic bearing black rock series in Xiaoping depression northwestern Hunan (in Chinese). Uranium Geol, 38: 340ā348 | |
![]() | |
Wang L Y, Wang Z B. 2004. Paleoenvironment of the gravel-type gold mineralization in eastern Heilongjiang and Jilin (in Chinese). Gold Geol, 10: 11ā15 | |
![]() | |
Wang S W, Liao Z W, Sun X M, Jiang X F, Zhou B G, Guo Y, Luo M J, Zhu H P, Ma D. 2013. Geochemistry of Paleoproterozoic diabases in the Dongchuan copper deposit, Yunnan, SW China: Response to breakup of the Columbia supercontinent in the southwestern margin of Yangtze Block (in Chinese). Acta Geol Sin, 87: 1834ā1852 | |
Wang W Q, Qi F C, Li Z X, Yang Z Q. 2017. Mineral composition and uranium existing form of polymetallic Phosphorite in Songlin area, Zunyi (in Chinese). Uranium Geol, 33: 74ā81 | |
Wang W Q, Qi F C, Lin W J, Li Z X. 2021. The existing forms of uranium and genesis of Ni-Mo polymetallic layer in the Songlin area, Zunyi (in Chinese). Acta Geol Sin, 95: 1843ā1853 | |
![]() | |
![]() | |
![]() | XU, Deru, ZHOU, Yueqiang, SHAN, Qiang, NIE, Fengjun, HOU, Maozhou, WU, Chuanjun, FU, Yangrong, WANG, Zhilin, ZHANG, Xiaowen (2014) Gold Mineralization in Hainan Province of South China: Geological Characteristics, Geodynamic Settings, and Ore-deposit Types. Acta Geologica Sinica - English Edition, 88. 815-816 doi:10.1111/1755-6724.12375_67 |
Wang Y, Hu B Q, Wang Q, Li Y G, Sun Z X, Guo G L. 2018. Occurrence characteristics of HREE in Zoujiashan uranium deposit (in Chinese). J Jilin Univ-Earth Sci Ed, 48: 719ā735 | |
Wang Z B, Sun D J. 1992. Conglomerate-type gold deposits in the eastern region of Heilongjiang Province and their prospects (in Chinese). Gold Geol, (2): 19ā23, 30 | |
Wang Z Q, Guan T Y, Li Z Y. 2007. Possibility of the independent mineralization of the dispersed elements under interayer oxidation (in Chinese). Bull Mineral Petrol Geochem, 26: 94ā97 | |
![]() | |
Wen H J, Zhou Z B, Ma W P, Zhu Y. 2024. Research progresses and main scientific issues of strategically critical minerals in black rock series (in Chinese). Bull Mineral Petrol Geochem, 43: 14ā34 | |
Wen L G, Zeng P S, Zhan X C, Fan C Z, Sun D Y, Wang G, Yuan J H, Fei X J. 2018. The Yinachang deposit in central Yunnan Province, Southwest China: A āBayan Obo-typeā Fe-Cu-REE deposit (in Chinese). Earth Sci Front, 25: 308ā329 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
Not Yet Imported: - journal-article : 10.1016/j.copbio.2012.10.008 If you would like this item imported into the Digital Library, please contact us quoting Journal ID | |
Williams P J, Barton M D, Fontbote L, Haller A, Mark G, Oliver N, Marschik R. 2005. Iron oxide-copper-gold deposits: Geology, spacetime distribution and possible modes of origin. Econ Geol, 100th Anniversary Volume. 371ā406 | |
![]() | |
Williams-Jones A E, Migdisov A A. 2014. Experimental constraints on the transport and deposition of metal in ore-forming hydrothermal systems. Soc Econ Geol Spec Publ, 18: 77ā96 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
WNA (World Nuclear Association). 2021. World nuclear power reactors and uranium requirement [EB/OL]. (2021ā12)[2022-04-02]. https://www.world-nuclear.org/information-liberary.aspx | |
![]() | |
Wood S A, Williams-Jones A E. 2007. Speciation and solubility of Co(II) in the system CoāOāHāClāS at saturated water vapor pressure up to 300°C. Kunming: 12th International Symposium on Water-Rock Interaction. Abingdon: Taylor & Francis Ltd. 395ā398 | |
![]() | |
![]() | |
Wu K W, Zhong H, Zhu W G, Leng C B, Gou T Z. 2008. Study on Oreforming fuid of the Dahongshan stratiform copper deposit, Yunnan, China (in Chinese). Acta Petrol Sin, 24: 2045ā2057 | |
Wu T T, Zhou Y H, Chen C, Bao Q Z, Chai L. 2018. Geological features and resource potential of uranium deposits in Mongolia (in Chinese). Geol Explor, 54: 1247ā1255 | |
![]() | |
Wyllie P J, Jones A P, Deng J. 1996. Rare earth elements in carbonate-rich melts from mantle to crust. In: Jones A P, Wall F, Williams C T, eds. Rare Earth Minerals: Chemistry, Origin and Ore Deposits. The Mineralogical Scoiety Series, vol. 7. London: Chapman and Hall. 77ā103 | |
Xiao L. 2004. Plume tectonics and mantle dynamics: On their records in Chinese mainland (in Chinese). Bull Mineral Petrol Geochem, 23: 239ā245 | |
Xie D K. 1994. Breakup-magmatic tectonics model of southeast china continent (in Chinese). Volcanol Miner Resour, 15: 1ā8 | |
Xie Q L, Chen D F, Qi L, Xie X P. 2003. REEs geochemistry of doushantuo phosphorites and modification during post sedimentary stages in Wengāan Area, South China (in Chinese). Acta Sedimentol Sin, 21: 627ā633 | |
![]() | |
![]() | |
![]() | |
Xu D R, Ye T W, Wang Z L, Mao J W, Xie G Q, Huang Q Y, Wang L X. 2019. Spatially heterogeneous distribution of metallogenesis and its controlling factors (in Chinese). Geotect Metal, 43: 368ā388 | |
![]() | |
Xu D R, Dong G J, Wang Z L, Ning J T. 2023a. Metallogenic System of Intracontinental Gold (Polymetallic) Deposits in Northeastern Hunan and Prediction of Deep Resources (in Chinese). Beijing: Science Press. 1ā550 | |
Xu D R, Dong G J, Wang Z L, Ning J T. 2023b. Intracontinental Extensional Deformation Structures and the Dynamic Mechanism of Their Formation and Evolution in Northeastern Hunan. Beijing: Science Press. 1ā604 | |
Xu Z Q, Chen H, Song H, Li T, Tian J M. 2019. Uranium mineralization characteristics and genesis in Xujie area, Mouding, Yunnan province (in Chinese). Comput Tech Geophys Geochem Explor, 41: 241ā249 | |
![]() | |
![]() | |
Yan Q, Wang A J, Wang G S, Chen Q S, Yu W J, Li R P. 2011. Uranium resources survey and demand prediction for 2030 (in Chinese). China Min Mag, 20: 1ā5 | |
![]() | |
Yang Q K, Guo F S, Zhou W P, Qu H Z. 2017. Geochronology and metallogenic model of the Xiangshan U-Pb-Zn deposits, Southern Jiangxi, China (in Chinese). Earth Sci Front, 24: 283ā298 | |
![]() | |
![]() | |
![]() | |
Yang Y. 1990. The distribution regularity of Hunchun tertiary conglomer-atetpye of gold deposits and the forecast of gold mineralizatijon (in Chinese). Gold, 11: 5ā9 | |
Yi L S, Fang H R, Zhai M G, Li Y X, Ma H F, Tian J J, Xiu X Q. 2016. Fluorite Sm-Nd isochron and pitchblende U-Pb dating in the Baiyanghe Be-U deposit, Xinjiang and their geological significances (in Chinese). Acta Petrol Sin, 32: 2099ā2110. | |
![]() | Ying, Yuan-Can, Chen, Wei, Simonetti, Antonio, Jiang, Shao-Yong, Zhao, Kui-Dong (2020) Significance of hydrothermal reworking for REE mineralization associated with carbonatite: Constraints from in situ trace element and C-Sr isotope study of calcite and apatite from the Miaoya carbonatite complex (China). Geochimica et Cosmochimica Acta, 280. 340-359 doi:10.1016/j.gca.2020.04.028 |
![]() | Ying, Yuan-Can, Chen, Wei, Chakhmouradian, Anton R., Zhao, Kui-Dong, Jiang, Shao-Yong (2023) Textural and compositional evolution of niobium minerals in the Miaoya carbonatite-hosted REE-Nb deposit from the South Qinling Orogen of central China. Mineralium Deposita, 58 (1) 197-220 doi:10.1007/s00126-022-01126-y |
Yu M Q. 1990. The uranium resources of the World (in Chinese). World Nuclear Geosci, (1): 95ā97 | |
Yu Q B. 2016. Geological features and prospecting criteria of conglomerate type gold ore mining area in Huangsongdianz (in Chinese). Jilin Geol, 35: 48ā53 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | |
Zhai M G, Hu B. 2021. Thinking to State Security, International competition and national strategy of mineral resources (in Chinese). J Earth Sci Environ, 43: 1ā11 | |
![]() | |
Zhang C J, Ni S J, Xu Z Q, Chen Y L, Wang Y L, Shi Z M. 2009. A preliminary study on major geological Events and uranium mineralization in the western margin of the Yangtze platform and adjacent areas (in Chinese). Acta Mineral Sin, (S1): 648ā649 | |
Zhang C J, Chen Y L, Li J C, Xu Z Q, Yao J. 2015. The discovery of coarse-grained uraninite in Kangdian Axis and its geological significance (in Chinese). Geol Bull China, 34: 2219ā2226 | |
Zhang C J, Yao J, Xu Z Q, Chen Y L, Song H. 2024. Research progress and prospecting direction of presinian-period migmatitization uranium mineralization in Kangdian area (in Chinese). Mineral Petrol, 44: 64ā77 | |
Zhang D S. 1994. Discussion on metallogenetic regularities of carbonate-siliceous-pelitic rock type uranium deposits in China (in Chinese). Uranium Geol, 10: 207ā211, 219 | |
![]() | |
Zhang H H, Wang G, Yang W L, Lu K G, Zhang L. 2019. Geochronological study of mediun-mafic dykes and its constrainr on uranium-beryllium-molybdenum deposit in Xinjiang (in Chinese). Mineral Petrol, 39: 18ā25 | |
Zhang J D, Li Z Y, Cai Y Q, Guo Q Y, Li L Y, Han C Q. 2012. The main advance and achievements in the potential evaluation of uranium resource in China (in Chinese). Uranium Geol, 28: 321ā326 | |
Zhang J D, Li Z Y, Su X B, Tan Y H, Li SX, Su Y R, Li J H, Deng P, Xu L C, Pan Z Q. 2019. Development strategy of nuclear energy mineral resources (in Chinese). Strat Study Chin Acad Eng, 21: 113ā118 | |
![]() | Zhang, Long; Li, Xiaofeng; Wang, Guo; Wang, Mou; Yang, Wenlong; Zhang, Lei; Zhu, Yiting (2019) Hydrothermal alteration and mineral chemistry of the giant Baiyanghe Be-U deposit in Xinjiang, northwest China: Implications for its mineralization. Ore Geology Reviews, 111. doi:10.1016/j.oregeorev.2019.102972 |
![]() | |
Zhang Q. 2015. Research on the metallogenic regularity and metallogenic prediction of neogene sand conglomerate type gold deposit in the west of Yunnan province. Dissertation for Masterās Degree. Beijing: China University of Geosciences (Beijing). 1ā62 | |
Zhang S Y, Shao L C. 2017. Optimization of development and hoisting program design in Poplar River uranium-beryllium mine (in Chinese). Uranium Min Metal, 36: 27ā33 | |
Zhang W Z, Ling M X, Wei Y, Xue S, Ding X, Lai F, Lu W Y, Che J J, Cheng X H, Xu J B, Xu D R, Wu B, Cao J. 2023. Geochemical behaviour of rare earths and niobiumin carbonatite-alkaline rock systems (in Chinese). Geotect Metal, 47: 1442ā1462 | |
![]() | |
![]() | |
Zhang Z R, Chen S Z. 1999. Superlarge gold deposit exploration perspective in Jiaolai Basin of Jiaodong gold metallogenetic domain (in Chinese). Geochimica, 28: 203ā212 | |
Zhao F M. 2012. Features and exploration problems of carbonate-siliceous-argillaceous rock uranium deposit in China (in Chinese). World Nuclear Geosci, 29: 192ā198 | |
![]() | |
![]() | Zhao, Lei; Dai, Shifeng; Nechaev, Victor P.; Nechaeva, Evgeniya V.; Graham, Ian T.; French, David (2019) Enrichment origin of critical elements (Li and rare earth elements) and a Mo-U-Se-Re assemblage in Pennsylvanian anthracite from the Jincheng Coalfield, southeastern Qinshui Basin, northern China. Ore Geology Reviews, 115. doi:10.1016/j.oregeorev.2019.103184 |
Zhao X F. 2010. Paleoproterozoic crustal evolution and Fe-Cu metallogeny of the western Yangtze block, SW China. Dissertation for Doctoral Degree. Hong Kong: University of Hong Kong. 192 | |
![]() | |
![]() | |
![]() | |
![]() | |
![]() | Zhao, Xin-Fu, Zhou, Mei-Fu, Su, Zhi-Kun, Li, Xiao-Chun, Chen, Wei-Terry, Li, Jian-Wei (2017) Geology, Geochronology, and Geochemistry of the Dahongshan Fe-Cu-(Au-Ag) Deposit, Southwest China: Implications for the Formation of Iron Oxide Copper-Gold Deposits in Intracratonic Rift Settings. Economic Geology, 112 (3) 603-628 doi:10.2113/econgeo.112.3.603 |
Zhao X F, Chen W T, Li X C, Zhou M F. 2019. Iron oxide copper-gold deposits in China: A review and perspectives on ore genesis. Soc Econ Geol, SEG Spec Publ, 22: 553ā580 | |
Zhao Z H. 2016. Principles of Trace Element Geochemistry. 2nd ed. Beijing: Science Press. 1ā495 | |
![]() | Zheng, Hui, Chen, Huayong, Li, Dengfeng, Wu, Chao, Chen, Xi, Lai, Chun-kit (2020) Timing of carbonatite-hosted U-polymetallic mineralization in the supergiant Huayangchuan deposit, Qinling Orogen: Constraints from titanite UāPb and molybdenite ReāOs dating. Geoscience Frontiers, 11 (5) 1581-1592 doi:10.1016/j.gsf.2020.03.001 |
![]() | Zheng, Hui, Chen, Huayong, Wu, Chao, Jiang, Hongjun, Gao, Cheng, Kang, Qingqing, Yang, Chunsi, Wang, Dequan, Lai, Chun-kit (2020) Genesis of the supergiant Huayangchuan carbonatite-hosted uranium-polymetallic deposit in the Qinling Orogen, Central China. Gondwana Research, 86. 250-265 doi:10.1016/j.gr.2020.05.016 |
![]() | |
![]() | |
![]() | Zhou, Mingxuan, Dai, Shifeng, Wang, Xibo, Zhao, Lei, Nechaev, Victor P., French, David, Graham, Ian T., Zheng, Jintian, Wang, Yan, Dong, Mengjun (2022) Critical element (Nb-Ta-Zr-Hf-REE-Ga-Th-U) mineralization in Late Triassic coals from the Gaosheng Mine, Sichuan Basin, southwestern China: Coupled effects of products of sediment-source-region erosion and acidic water infiltration. International Journal of Coal Geology, 262. 104101 doi:10.1016/j.coal.2022.104101 |
![]() | |
![]() | |
Zhu P F, Cai Y Q, Guo Q Y, Liu W S, Li J H, Zhang M L, Qi F C, Zhang Z L, JIa L C, Xu H. 2018. Metallogenetic and geological characterization and resource potential assessment of uranium resources in China (in Chinese). Earth Sci Front, 25: 148ā158 | |
![]() | |
![]() |
See Also
These are possibly similar items as determined by title/reference text matching only.