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Song, Mingchun; Yang, Zhiming; Li, Jie; Li, Jian; Wang, Runsheng; He, Chunyan; Yang, Zhenliang; Zhang, Junjin; Xie, Tianci (2026) A step metallogenic model and mechanism for hydrothermal vein-type gold deposits: A case study from the Jiaodong gold province. Science China Earth Sciences, 69 (5). doi:10.1007/s11430-025-1876-0

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Reference TypeJournal (article/letter/editorial)
TitleA step metallogenic model and mechanism for hydrothermal vein-type gold deposits: A case study from the Jiaodong gold province
JournalScience China Earth Sciences
AuthorsSong, MingchunAuthor
Yang, ZhimingAuthor
Li, JieAuthor
Li, JianAuthor
Wang, RunshengAuthor
He, ChunyanAuthor
Yang, ZhenliangAuthor
Zhang, JunjinAuthor
Xie, TianciAuthor
Year2026 (May)Volume69
Issue5
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s11430-025-1876-0Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID20006103Long-form Identifiermindat:1:5:20006103:4
GUID0
Full ReferenceSong, Mingchun; Yang, Zhiming; Li, Jie; Li, Jian; Wang, Runsheng; He, Chunyan; Yang, Zhenliang; Zhang, Junjin; Xie, Tianci (2026) A step metallogenic model and mechanism for hydrothermal vein-type gold deposits: A case study from the Jiaodong gold province. Science China Earth Sciences, 69 (5). doi:10.1007/s11430-025-1876-0
Plain TextSong, Mingchun; Yang, Zhiming; Li, Jie; Li, Jian; Wang, Runsheng; He, Chunyan; Yang, Zhenliang; Zhang, Junjin; Xie, Tianci (2026) A step metallogenic model and mechanism for hydrothermal vein-type gold deposits: A case study from the Jiaodong gold province. Science China Earth Sciences, 69 (5). doi:10.1007/s11430-025-1876-0
In(2026, May) Science China Earth Sciences Vol. 69 (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.

Bagheripour M H, Mostyn G. 1996. Prediction of strength of jointed rock: Theory and practice. In: Proceedings of ISRM International Symposiu-Eurock. Turin-Italy, 96: 231–238
Bai Y W, Li C S, Yin S. 2019. Stress Mohr’s circle and envelope line analysis of high angle normal fault area in the south of Qinshui basin (in Chinese with English abstract). Petrol Geol Eng, 33: 13–19
Chen M H, Le X W, Li Z Y, et al. 2018. A “Ladder” model for carlin-type gold deposits in Longlin isolated carbonate rock platform, western Guangxi and its prospecting potential (in Chinese with English abstract). Geotect Metall, 85: 832–845
Chu G Z. 2011. Introduction to one concentrated mode for large scale oreintensive area—Multi factors confined isothermal field space mode: An example from the Shizishan orefield in Tongling (in Chinese with English abstract). Acta Geol Sin, 85: 862–872
Goldfarb R, Qiu K F, Deng J, et al. 2019. Orogenic Gold Deposits of China. In: Chang Z S, Goldfarb R J, eds. Mineral Deposits of China. Society of Economic Geologists, Inc. SEG Special Publications, 22: 263–324
He C Y, Wang Y, Wang H J, et al. 2022. 3D geological modeling of Jiaojia-Sanshandao fault zone in Jiaodong based on comprehensive geophysical constraints: Metallogenic characteristics and implications for ore prospecting (in Chinese with English abstract). Geol Bull China, 41: 936–945
Hofstra A H, Cline J S. 2000. Characteristrcs and models for Carlintype gold deposits. In: Hagemann S G, Brown P E, eds. Gold in 2000. Reviews in Economy Geology, 13: 163–220
Horino F G, Ellickson M L. 1970. A method of estimating strength of rock containing planes of weakness. US Department of Interior. Bureau of Mines. 7447–7449
Not Yet Imported: - journal-article : 10.1093/nsr/nwac257

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Huang R H, Wang F Q, Wang K Y. 1993. Tin Concentration and Dispersion Related to Tectonism and Metallogeny (in Chinese). Beijing: Geological Publishing House. 139–148
Huang X, Wang Y J, Song Q, et al. 2022. Wide field electromagnetic exploration and prospecting of metallogenic structures in Daliuhang gold field, the north of Jiaodong (in Chinese with English abstract). Geol Bull China, 46: 1107–1220
Jia F, Chang J S, Wang S X, et al. 2025. Geological characteristics and gold mineralization of Xiling super large gold deposit in eastern Shandong Province (in Chinese with English abstract). Acta Geol Sin, 99: 3484–3503
Li H J. 2002. Ore-forming rule of endogenetic gold deposit in north of Jiaodong area (in Chinese with English abstract). Shandong Land Resour, 18: 72–77
Li H J, Qin J J, Ma S J. 2010. Structural ore-controlling rules of gold deposit in northwestern Jiaodong (in Chinese with English abstract). Gold Sci Technol, 18: 41–46
Li S C, Yang L, Li M T, et al. 2009. Influences of 3D internal crack dip angle on tensile mechanical properties and fracture features of rock-like material (in Chinese with English abstract). Chin J Rock Mech Eng, 28: 281–289
Liu D H, Lü G X, Zhang P J, et al. 2015. A study of 3D ore-controlling of the tectonic altered rocks of the Sanshandao fault in Jiaodong Peninsular and the discovery of an offshore super-large gold deposit in China (in Chinese with English abstract). Earth Sci Front, 22: 162–172
Liu G D, Song G Z, Bao Z Y, et al. 2019. New breakthrough of deep prospecting in the northern section of the Zhaoping fault zone and the new understanding of fault distribution in the Jiaodong district (in Chinese with English abstract). Geotect Metall, 43: 226–234
Liu J H, Liu F L, Liu P H, et al. 2011. Polyphase magmatic and metamorphic events from Early Precambrian metamorphic basement in Jiaobei area: Evidences from the zircon U-Pb dating of TTG and granitic gneisses (in Chinese with English abstract). Acta Petrol Sin, 27: 943–960
Liu J Z, Deng Y M, Liu C Q, et al. 2006. Metallogenic conditions and model of the superlarge Shuiyindong stratabound gold deposit in Zhenfeng County, Guizhou Province (in Chinese with English abstract). Geol China, 33: 169–177
Liu R F, Zhou X, Lü Y L, et al. 2019. Ore-controlling regularity and prospecting practice in the Sanshandao-Cangshang fault zone, Jiaodong area (in Chinese with English abstract). Geol Explor, 55: 528–541
Liu X D, Ding Z J, Song M C, et al. 2022. Geology and mineralization of the Dayin’gezhuang supergiant gold deposit (180 t) in the Jiaodong Peninsula, China: A review. China Geol, 5: 1–26
Lu B, Chen Z M, Guan D F, et al. 1996. The activating properties of fault planes and functions of sealing oil-gas accumulation (in Chinese with English abstract). Acta Petrol Sin, 17: 33–38
Not Yet Imported: - journal-article : 10.1115/1.3610013

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Meng Y S, Zhang R Z, Tang L, et al. 2022. Integrated geophysical exploration of the hidden gold deposit in Banbidian, Jiaodong Peninsula (in Chinese with English abstract). Geol Bull China, 46: 1095–1106
Pan S Z, Wang F Y, Zheng Y P, et al. 2015. Crustal velocity structure beneath Jiaodong Peninsula and its tectonic implications (in Chinese with English abstract). Chin J Geophys, 58: 3251–3263
Peters S G. 2001. Use of structural geology in exploration for and mining of sedimentary rock-hosted Au deposits. U.S. Geological Survey Open-File Report. United States Geological Survey, 151: 1–39
Qi J Z, Li L, Yang G C. 2008. Genesis and metallogenic model of Yangshan gold deposit in Gansu Province (in Chinese with English abstract). Miner Deposit, 27: 81–87
Shan W F, Mao X C, Liu Z K, et al. 2023. Numerical simulation of metallogenic processes of Dayingezhuang gold deposit in Jiaodong Peninsula and its prospecting significance (in Chinese with English abstract). Gold Sci Technol, 31: 707–720
Song G Z, Yan C M, Cao J, et al. 2017. Breakthrough and significance of exploration at depth more than 1 000 m in Jiaojia metallogenic belt, Jiaodong: A case of Shaling mining area (in Chinese with English abstract). Gold Sci Technol, 25: 19–27
Song M C, Cui S X, Zhou M L, et al. 2010. The deep oversize gold deposit in the Jiaojia field Shandong Province and its enlightenment for the jiaojiatype gold deposits (in Chinese with English abstract). Acta Geol Sin, 84: 1349–1358
Song M C, Lin S Y, Yang L Q, et al. 2020. Metallogenic model of Jiaodong Peninsula gold deposits (in Chinese with English abstract). Miner Deposit, 39: 215–236
Song M C, Ding Z J, Liu X D, et al. 2022a. Structural controls on the Jiaodong type gold deposits and metallogenic model (in Chinese with English abstract). Acta Geol Sin, 96: 1774–1802
Song M C, Song Y X, Li J, et al. 2022c. Stepwise prospecting method for deep-seated deposits: Focus on deep prospcting of ore concentration area of gold in Shandong Peninsula, China (in Chinese with English abstract). Geol China, 49: 1–15
Song M C, Wang H J, Liu H B, et al. 2024. Deep characteristics of ore-controlling faults in Jiaoxibei gold deposits and its implications for prospecting: Evidence from geophysical surveys (in Chinese with English abstract). Geol China, 51: 1–16
Tan M T, Yao S Z, He M C, et al. 2013. Structural controls on gold mineralization and its implications in ore prospecting for the Dongchuang gold deposit in the Xiaoqinling district (in Chinese with English abstract). Geotect Metall, 37: 225–234
Wang G Y, Yu G M, Li G, et al. 2017. Influence of initial crack dip angle on failure mode and peak strength of rock (in Chinese with English abstract). China Mining Magazine, 26: 173–176
Wang H J, Xiong Y X. 2020. The application of wide field electromagnetic method to deep exploration in Jiaoxibei (northwest Shandong) gold concentration area (in Chinese with English abstract). Geophys Geochem Explor, 44: 1039–1047
Wang L F, Li W L, Shen L X, et al. 2022. Analysis on sealing capacity of low-angle faults in Weixi’nan sag (in Chinese with English abstract). Natural Gas Explor Develop, 45: 34–40
Xiao F L, Zeng Q D, Ma F S, et al. 2018. Features of major gold metallogenic fracture belt in northwestern Jiaodong (in Chinese with English abstract). Gold Sci Technol, 26: 396–405
Xie T C, Dai C G, Li R X, et al. 2022. New understandings of 3D feature and mineralization enrichment regularity in the Dayingezhuang-Caojiawa gold deposit of Jiaodong Peninsula (in Chinese with English abstract). Geol Bull China, 41: 986–992
Yang G Q. 1990. Structural Geochemistry (in Chinese). Guilin: Guangxi Normal University Press. 37–66
Yu G P, Xu T, Liu J T, et al. 2020. Late Mesozoic extensional structures and gold mineralization in Jiaodong Peninsula, eastern North China Craton: An inspiration from ambient noise tomography on data from a dense seismic array (in Chinese with English abstract). Chin J Geophys, 63: 1878–1893
Yu X F, Yang D P, Li D P, et al. 2019. Mineralization characteristics and geological significance in 3000 m depth of Jiaojia gold metallogenic belt, Jiaodong Peninsula (in Chinese with English abstract). Acta Petrol Sin, 35: 2893–2910
Zhang C Q, Wang D H, Wang Y L, et al. 2012. Discuss on the metallogenic model for Gaolong gold deposit in Tianlin County, Guangxi, China (in Chinese with English abstract). Acta Petrol Sin, 28: 213–224
Zhang P J, Song M C, Liu D H, et al. 2015. Features of deep-seated gold orebodies of No. 171 lode and structural ore-controlling action in Ling-long gold orefield, Shandong Peninsula (in Chinese with English abstract). Miner Deposit, 34: 855–873
Zhang S T, Li Z Q. 1998. Faults deflecting and its ore-controlling characteristics (in Chinese with English abstract). Miner Petrol, 18: 85–89
Zhang X F, Sun A Q, Niu S Y, et al. 2012. Analysis on the mineralization construction and ore-controlling role of Jiaojia gold ore field in Jiaodong Area (in Chinese with English abstract). Gold Sci Technol, 20: 18–22
Not Yet Imported: - book-chapter : 10.1007/978-3-540-79511-7_1

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Zhu X. 2014. It is necessary to attach importance to the research and application of the stepped mineralization model (in Chinese). Earth, (12): 110–111


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