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China | |
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- Shizimiao Au-Mo ore field
| Yaqing He, Fengqun Chen, Jianmin Yang, and Huina Yang (2013): Gold Science and Technology 21(1), 28-32 Jiangming Zhang (2011): Geological Survey and Research 34(3), 190-197 |
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| Jingwen Mao, Rongfen Zheng, Huishou Ye, Jianjing Gao, and Wen Chen (2006): Mineral Deposits 25(4), 359-368 |
| Hongyi Ma, Weiqing Lu, Yunzheng Zhang, Hongli Li, Xiuqi Tian, and Yanfei Ma (2007): Geology and Prospecting 43(4), 1-7 |
| Hongyi Ma, Chaoyong Huang, Anmin Ba, Hongli Li, and Fa'an Li (2006): Geology and Prospecting 42(5), 17-22 |
| Senpo Wen (2009): Geology and Exploration 45(3), 247-252 |
| Yuhua Pei and Haiqi Yan (2006): Geology and Prospecting 42(3), 56-60 |
| Shiwei Zhang (2004): Geology and Prospecting 40(5), 12-15 Yongfeng Li, Jingwen Mao, Baojian Guo, Huabin Hu, Fengjun Bai (2004): Mineral Deposits 23(1), 61-66 |
| Shiquan Hua (2011): Gold Science and Technology 19(6), 22-26 |
| Wanzhong Li (2011): Geological Survey and Research 35(2), 126-132 |
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| Senpo Wen, Guoyin Liu, Baolong Qiao, Shenfen Liu, and Fuxing Zheng (2008): China Molybdenum Industry 32(2), 14-17 |
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| Zhijun Wang (2001): Express Information of Mining Industry, Serial No. 368, 1-2 Diankai Chen and Danshen Zhou (1984): Mineral Deposits 3(1), 37-46 |
| Jian, W., Mao, J., Lehmann, B., Chen, L., Song, S., Liu, J., ... & RΓΆsel, D. (2022). Late Triassic Au-Mo mineralization in the Xiaoqinling region and a genetic connection to carbonatitic magmatism. Ore Geology Reviews, 145, 104921. Jian, W., Lehmann, B., Mao, J., Ye, H., Li, Z., He, H., ... & Feng, J. (2015). Mineralogy, fluid characteristics, and Re-Os age of the Late Triassic Dahu Au-Mo deposit, Xiaoqinling region, central China: Evidence for a magmatic-hydrothermal origin. Economic Geology, 110(1), 119-145. Jingwen Mao, Goldfarb, R.J., Zhengwei Zhang, Wenyi Xu, Yumin Qu, and Jun Deng (2002): Mineralium Deposita 37, 306-325 |
| Jingwen Mao, Goldfarb, R.J., Zhengwei Zhang, Wenyi Xu, Yumin Qu, and Jun Deng (2002): Mineralium Deposita 37, 306-325 |
| Chang, M., Liu, J., Santosh, M., Yin, C., Zhai, D., Wang, D., & Wu, T. (2022). Fluid evolution characteristics and ore genesis in the Jinqu Au deposit, Qinling Orogen, China: Implications for ore genesis. Ore Geology Reviews, 104966. |
| Jingwen Mao, Goldfarb, R.J., Zhengwei Zhang, Wenyi Xu, Yumin Qu, and Jun Deng (2002): Mineralium Deposita 37, 306-325 |
| Jingwen Mao, Goldfarb, R.J., Zhengwei Zhang, Wenyi Xu, Yumin Qu, and Jun Deng (2002): Mineralium Deposita 37, 306-325 |
| Jingwen Mao, Goldfarb, R.J., Zhengwei Zhang, Wenyi Xu, Yumin Qu, and Jun Deng (2002): Mineralium Deposita 37, 306-325 |
| Wei Jian, Bernd Lehmann, Jingwen Mao, Huishou Ye, Zongyan Li, Jinge Zhang, Hai Zhang, Jiangwei Feng, and Yongzhe Ye (2014) Telluride and Bi-sulfosalt Mineralogy of the Yangzhaiyu Gold Deposit, Xiaoqinling Region, Central China. Can Mineral 52:883-898 Qingchao Zhang (2004): Gold 25(10), 19-21 |
- Xiaoqinling mining district
| Liu, J., Wang, Y., Huang, S., Wei, R., Sun, Z., Hu, Q., & Hao, J. (2019). The gold occurrence in pyrite and TeβBi mineralogy of the Fancha gold deposit, Xiaoqinling gold field, southern margin of the North China Craton: Implication for ore genesis. Geological Journal. |
| preprint |
| Guang Wu, Yuchuan Chen, Zongyan Li, Xinsheng Yang, Jun Liu, and Cuijie Qiao (2013): Mineral Deposits 32(4), 809-822 Chen, Yan-Jing, Chen, Hua-Yong, Zaw, Khin, Pirajno, Franco, Zhang, Zeng-Jie (2007) Geodynamic settings and tectonic model of skarn gold deposits in China: An overview. Ore Geology Reviews, 31 (1) 139-169 doi:10.1016/j.oregeorev.2005.01.001 |
| Faling Li (2011): Mineral Deposits 30(3), 457-468 |
| Yang, M. Z., Jiang, S. Y., Zhao, K. D., Zhou, Y. Y., Xiong, S. F., & Liu, D. L. (2022). Episodic emplacement of the Lingshan Granitic Complex and related two-stage molybdenum mineralization in the Dabie orogenic belt. Ore Geology Reviews, 144, 104820. |
| Lei, W., Dai, J., Zhao, T., Zhang, Y., & Tao, N. (2018). Field geology, geochronology, and isotope geochemistry of the Luyuangou gold deposit, China: Implications for the gold mineralization in the eastern Qinling Orogen. Geological Journal, 53, 96-112. |