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Pyrite from Heilongjiang, China

China
 
  • Heilongjiang
    • Daxing'anling
      • Huma County
Zhongtian Liu, Hongzhi Fan, Dianyu Zhou, and Liwen Tuo (2014): Gold Science and Technology 22(1), 28-33
Chen Tang, Fan Yang, Jinggui Sun, Qinghai Wang, Xingshi Chen, Bin Zhang, Yixin Li, Peng Chai, Yongsheng Liu (2011): Global Geology 30(4), 532-537
Zhiguo Zhang, Jiuhai Hu, and Tao Liu (2008): Gold Science and Technology 16(1), 43-47
      • Mohe City
Sun, Yonggang, Bile Li, Xusheng Chen, Fanbo Meng, Qingfeng Ding, Ye Qian, and Linlin Wang. (2022) "Fluid Inclusions and C–H–O–S–Pb Isotopes of the Huoluotai Porphyry Cu (Mo) Deposit in the Northern Great Xing’an Range, NE China: Implications for Ore Genesis" Minerals 12, no. 9: 1072. https://doi.org/10.3390/min12091072
        • Shabaosi gold field
Weige Huang, Xianrong Luo, Xueqiang Huang, Yanqiu Dong, and Chunyang Li (2012): Gold Science and Technology 20(1), 19-22
Tao Liu and Yongsheng Yan (2008): Gold Science and Technology 16(2), 33-36
Chunrong Zhao, Xiaoyong Wang, Qinxia Hu, Man Chen, and Hongli Liu (2008): Gold Science and Technology 16(6), 22-26
Qinxia Hu, Chunrong Zhao, Bingjian Song, Xiaoyong Wang, and Houfu Sun (2007): Gold Science and Technology 15(3), 5-10
Guang Wu, Fengyue Sun, Qun Zhu, Zhitong Li, Qingfeng Ding, Guangyuan Li, Qingbang Pang, and Hongbo Wang (2006): Geosciences 25(3), 215-230
Jinzhong Qi, Li Li, and Xiaodong Guo (2000): Mineral Deposits 19(2), 116-125
      • Songling District
Jin, Luying, Kezhang Qin, Guangming Li, Junxing Zhao, Zhenzhen Li, Zhuyin Chu, and Guoxue Song. (2023) "Formation of the Chalukou High Fluorine-Type Mo (–Zn–Pb) Deposit, NE China: Constraints from Fluorite and Sphalerite Rare Earth Elements and Sr–Nd Isotope Compositions" Minerals 13, no. 1: 77. https://doi.org/10.3390/min13010077
Zhu, J., Wang, C., Chen, Q., Shi, K., Duan, H., & Li, Q. (2022). Geochemical and fluid evidences for fluorine-rich magmatic-hydrothermal origin of the giant Chalukou Mo deposit in the northeast China. Ore Geology Reviews, 141, 104679.
Wang, C., Zhu, J., Bagas, L., Chen, Q., Zhang, Z., Duan, H., & Liu, L. (2021). Whether short-lived or prolonged duration of multistage combined magmatic and hydrothermal events in the giant Chalukou porphyry Mo deposit, China. Ore Geology Reviews, 104576.
Zhenzhen Li, Guangming Li, Zhaojun Meng, Kezhang Qin, Guoxue Song, Luying Jin, Xuesheng Kan, Jin Wang, and Xianan Zhang (2014): Mineral Deposits 33(3), 607-624
Xinlu Hu, Shuzhen Yao, Mouchun He, Zhenju Ding, Ming Liu, Yubao Cui, and Jun Shen (2014): Mineral Deposits 33(4), 776-784
Jun Liu, Guang Wu, Feng Wang, Dafeng Luo, and Yanqing Hu (2013): Mineral Deposits 32(6), 1093-1116
Zhaojun Meng, Xuesheng Kan, Xianchen Li, Jianping Wang, Ruizhong Zhang, Kepeng Lü, Zhenjiang Sun, Yaojun Shi, Jianan Zhang, Hongyan Wang, Long Han, and Guoyu Zhang (2011): Geology in China 38(6), 1504-1517
Yongming Shi, Qun Zhu, and You Gao (2006): Geology and Prospecting 42(5), 23-27
Fanglin Yang, Qun Zhu, Zhitong Li, and Zhenwen Wu (2000): Journal of Precious Metallic Geology 9(1)
      • Tahe County
Bingxin Zhao, Lunxian Xu, Weiguo Gong, Ming Yu, and Zhizhong Ma (2010): Gold Science and Technology 18(2), 6-10
Chunhui Zhang, Qinglu Li, Jibo Yang, Bingjian Song, Zhizhong Ma, and Hengzhi Zhang (2010): Gold Science and Technology 18(2), 40-44
Guangjiang Zhao, Yushu Hou, and Jiquan Yang (2006): Northwestern Geology 39(4), 33-39
Xiangwen Li, Yanchen Yang, Songqing Ye, Zhijie Liu, Changlai Shao, and Haifeng Wai (2014): Geology and Exploration 50(1), 77-87
      • Xinlin District
Lu, S., Deng, C., Wang, K., Feng, Y., Li, C., Chen, J., & Liu, Y. (2022). Crustal contribution for the formation of the Walali Au deposit and implications on the Early Cretaceous Au mineralization in the northern Great Xing’an Range. Ore Geology Reviews, 147, 105000.
Sun, Y. G., Ding, Q. F., Meng, F. B., Chen, X. S., Qian, Y., Wang, L., ... & Xu, Q. L. (2022). Timing and ore formation of the Xiaokele porphyry Cu (–Mo) deposit in the northern Great Xing’an Range, NE China: Constraints from geochronology, fluid inclusions, and H–O–S–Pb isotopes. Ore Geology Reviews, 104806.
Feng, Y., Chi, G., Deng, C., & Xiao, B. (2022). Ore-forming fluid evolution of a porphyry Cu-Mo deposit coexisting with porphyry Mo systems in a post-collisional setting, Xiaokelehe, NE China. Ore Geology Reviews, 105061.
Feng, Y., Chu, G., Xiao, B., Li, R., Deng, C., Li, G., & Shi, H. (2021). Chlorite mineralogy, geochemistry and exploration implications: A case study of the Xiaokelehe porphyry Cu-Mo deposit in NE China. Ore Geology Reviews, 104568.
Sun, Y., Li, B., Sun, F., Ding, Q., Wang, B., Li, Y., & Wang, K. (2020). Mineralization events in the Xiaokele porphyry Cu (–Mo) deposit, NE China: Evidence from zircon U–Pb and K‐feldspar Ar–Ar geochronology and petrochemistry. Resource Geology, 70(3), 254-272.
    • Harbin
      • Acheng District
        • Yicuomao ore field
Zhengze Lin, Fengji Zhuo, Wei Liu, and Yanmei Zhang (2009): Gold Science and Technology 17(2), 42-45
Kamitani, M., Okumura, K., Teraoka, Y., Miyano, S., Watanabe, Y. (2007) Mineral Resources Map of East Asia, Geological Survey of Japan.
Baogui Yu and Zhanwu Liu (1991): Heilongjiang Geology 2(4), 41-49
Baogui Yu and Zhanwu Liu (1991): Heilongjiang Geology 2(4), 41-49
Baogui Yu and Zhanwu Liu (1991): Heilongjiang Geology 2(4), 41-49
Baogui Yu and Zhanwu Liu (1991): Heilongjiang Geology 2(4), 41-49
      • Bin County
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
      • Yanshou County
Xueyi Chen (1978): Geology and Prospecting 14(8), 61
    • Heihe
      • Aihui District
Kuicheng Guo, Jun Lü, Huajuan Gu, Hua Song, and Derong Li (2010): Geology and Exploration 46(4), 616-621
Xinlu Hu, Shuzhen Yao, Mouchun He, Zhenju Ding, Ming Liu, Yubao Cui, and Jun Shen (2014): Mineral Deposits 33(4), 776-784
Wu, F. Y., Sun, D. Y., Li, H., Jahn, B. M., & Wilde, S. (2002). A-type granites in northeastern China: age and geochemical constraints on their petrogenesis. Chemical Geology, 187(1-2), 143-173.
Gao, S., Xu, H., Quan, S., Zang, Y., & Wang, T. (2018). Geology, hydrothermal fluids, HOS-Pb isotopes, and Rb-Sr geochronology of the Daxintun orogenic gold deposit in Heilongjiang province, NE China. Ore Geology Reviews, 92, 569-587.
Hang Su and Guipeng Wang (2011): Gold Science and Technology 19(6), 27-30
Shiwei Liu, Cunyan Zhu, Kai Li, Jie Zhao, and Yonghong Hao (1998): Heilongjiang Geology 9(2), 34-40
Wang, Zhenzhen, Zhao, Zhidan, Wang, Sushan, Li, Xuping, Meng, Yuanku, Liu, Dong, Mo, Xuanxue, Cong, Fuyun (2023) Early cretaceous volcanic rocks in Sandaowanzi area constrain the geodynamics and magma fertility. Ore Geology Reviews, 158. 105473 doi:10.1016/j.oregeorev.2023.105473
Gao, S., Hofstra, A. H., Qin, K., & Xu, H. (2022). A case of Te-rich low-sulfidation epithermal Au-Ag deposits in a calc-alkaline magmatic arc, NE China. Ore Geology Reviews, 105158.
Zhai, D., Williams-Jones, A. E., Liu, J., Tombros, S. F., & Cook, N. J. (2018) Mineralogical, fluid inclusion, and multiple isotope (HOS-Pb) constraints on the genesis of the Sandaowanzi epithermal Au-Ag-Te deposit, NE China. Economic Geology, 113(6), 1359-1382.
Zhai, D., Liu, J., Ripley, E. M., & Wang, J. (2015). Geochronological and He–Ar–S isotopic constraints on the origin of the Sandaowanzi gold-telluride deposit, northeastern China. Lithos, 212, 338-352.
Zhai, D., & Liu, J. (2014). Gold-telluride-sulfide association in the Sandaowanzi epithermal Au-Ag-Te deposit, NE China: implications for phase equilibrium and physicochemical conditions. Mineralogy and Petrology, 108(6), 853-871.
Xuxing Yu, Hong Xu, Xiangke Wu, Lijun Yang, Zhu Tian, Shen Gao, and Qiushu Wang (2012): Acta Petrologica Sinica 28(1), 345-356
Siyu Han, Degao Zhai, Jiajun Liu, Jun Lü, Shenghua Wu, and Longbo Yang (2011): Mineral Deposits 30(5), 855-866
Jun Lü, Zhidan Zhao, Yaping Cao, Zhenzhe Han, Aikui Zhang, and Junchuan Yu (2009): Geology in China 36(4), 853-860
Jun Lü, Zhidan Zhao, Yaping Cao, Zhenzhe Han, Aikui Zhang, and Junchuan Yu (2009): Geology in China 57(4), 853-860
Ziyu Wu, Hongbo Wang, Donghai Xu, and Yongchang Zhou (2005): Geological Review 51(3), 264-267
      • Nenjiang County
Jianxing Feng (2008): Geology and Prospecting 44(1), 46-49
Fengjun Nie, Sihong Jiang, Yi Zhang, Yan Liu, and Peng Hu (2004): Mineral Deposits 23(6), 176-189
Qi Du and Mingxiu Chen (1983): Mineral Deposits 2(2), 42-48
Porphyry Copper Research Group of the Ministry of Metallurgical Industry, Institute of Geology and Geochemical Exploration (1979): Geology and Prospecting 15(1), 72-79
Kesheng Li (1979): Geology and Prospecting 15(3), 22-23
Yuan, Mao-Wen, Lin Li, Cheng-Lu Li, Sheng-Rong Li, M. Santosh, Masroor Alam, and Zeng-Qian Hou. (2021) "The genesis of bitumen and its relationship with mineralization in the Erdaokan Ag-Pb-Zn deposit from the Great Xing’an Range, northeastern China." Ore Geology Reviews: 104464.
Yuan, Maowen & Li, Lin & Li, Sheng-Rong & Li, Cheng-Lu & Santosh, M. & Alam, Masroor & Bao, Xi-Bo. (2019). Mineralogy, fluid inclusions and S-Pb-H-O isotopes of the Erdaokan Ag-Pb-Zn deposit, Duobaoshan metallogenic belt, NE China: Implications for ore genesis. Ore Geology Reviews. 113. 103074. 10.1016/j.oregeorev.2019.103074.
Mao, C., Lü, X., & Chen, C. (2019). Geochemical Characteristics of A-Type Granite near the Hongyan Cu-Polymetallic Deposit in the Eastern Hegenshan-Heihe Suture Zone, NE China: Implications for Petrogenesis, Mineralization and Tectonic Setting. Minerals, 9(5), 309.
Pengrui Lü, Derong Li, Yiwei Peng, and Mingyang Zhang (2012): Geology in China 39(3), 717-728
Pengrui Lü, Xuexiang Gu, Derong Li, Taotao Peng, and Mingyang Zhang (2011): Geological Bulletin of China 30(10), 1563-1574
Jun Liu, Guang Wu, Wei Zhong, and Mingtian Zhu (2009): Acta Petrologica Sinica 25(10), 2631-2641
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
Wu, F. Y., Sun, D. Y., Li, H., Jahn, B. M., & Wilde, S. (2002). A-type granites in northeastern China: age and geochemical constraints on their petrogenesis. Chemical Geology, 187(1-2), 143-173.
Fujun Zai, Guishan Wang, and Mingjin Tan (1998): Heilongjiang Geology 9(3), 46-55
Gao, S., Hofstra, A. H., Qin, K., & Xu, H. (2022). A case of Te-rich low-sulfidation epithermal Au-Ag deposits in a calc-alkaline magmatic arc, NE China. Ore Geology Reviews, 105158.
Wang, L., Qin, K., Song, G., Pang, X., Li, G., & Zou, X. (2020). Geology and genesis of the Early Paleozoic Zhengguang intermediate-sulfidation epithermal Au-Zn deposit, northeast China. Ore Geology Reviews, 124, 103602.
Song, G., Cook, N. J., Wang, L., Qin, K., Ciobanu, C. L., & Li, G. (2019). Gold behavior in intermediate sulfidation epithermal systems: A case study from the Zhengguang gold deposit, Heilongjiang Province, NE-China. Ore Geology Reviews, 106, 446-462.
Yanli Fu and Yanchen Yang (2010): Gold 31(6), 13-18
      • Xunke County
Ruofeng Gao, Longhua Jing, and Lianxi Wei (2008): Gold Science and Technology 16(2), 46-47, 59
Meiyan Du, Chao Li, Naifeng Yang, Zhenjun Sun, Chunguang Wang, and Henan Yu (2011): Global Geology 30(4), 538-543
Gao, S., Hofstra, A. H., Qin, K., & Xu, H. (2022). A case of Te-rich low-sulfidation epithermal Au-Ag deposits in a calc-alkaline magmatic arc, NE China. Ore Geology Reviews, 105158.
Guihu Chen, Fuzhou Wang, Yanzhong Wang, Jiguang Xue, Cangjiang Zhang, Yajun Li, and Xiaojun Duan (2012): Gold Science and Technology 20(2), 14-19
Zhaochong Zhang, Jingwen Mao, Yanbin Wang, Pirajno, F., Junlai Liu, and Zhidan Zhao (2010): Ore Geology Reviews 37, 158-174
Hui Qu and Ruimin Shi (2007): Gold Science and Technology 15(1), 23-25
Renkui Su, Jianbo Yu, Yaojun Chu, and Changbao Song (2006): Gold Science and Technology 14(1), 10-13
Liu, Y., Sun, J., Han, J., Ren, L., Gu, A., Zhao, K., & Wang, C. (2019) Origin and evolution of ore-forming fluid for the Gaosongshan gold deposit, Lesser Xing'an Range: Evidence from fluid inclusions, HOS-Pb isotopes. Geoscience Frontiers.
Guihu Chen, Fuzhou Wang, Yanzhong Wang, Jiguang Xue, Cangjiang Zhang, Yajun Li, and Xiaojun Duan (2012): Gold Science and Technology 20(2), 14-19
Zhong Tang, Songqing Ye, and Yanchen Yang (2010): Global Geology 29(3), 400-407
Qian Li, Haipeng Liu, Hanquan Kong, Yongsheng Li, and Shijun Jiang (2006): Gold 27(3), 14-17
    • Jiamusi
      • Huanan Co.
Haipeng Zhao and Fei Cheng (2006): Jilin Geology 25(1), 20-24
Haipeng Zhao and Zhangbao Song (2006): Gold Science and Technology 14(1), 14-17
Fanlong Zeng, Enguang Zang, Cunchang Yi, and Chunxiao Zhang (2008): Gold Science and Technology 16(2), 37-42
      • Tangyuan Co.
Wei Juying and Zeng Qiang (1996): Geology & Geography 32(4), 472-480.
    • Jixi
      • Hulin City
Jianguo Yang, Mingliang Xu, and Xiaobin Chi (2006): Gold Science and Technology 14(1), 6-9
Han, Shi-Jiong, Yang, Yan-Chen, Bo, Jun-Wei, Han, Zi-Heng, Huang, Yong-wei, Yang, Yun-bao (2023) New insights into the genesis of the Sipingshan gold deposit in eastern Heilongjiang, north-eastern China: Evidence from geology, U-Pb and Rb-Sr geochronology, geochemistry, and H O S-Pb isotopes. Ore Geology Reviews, 154. 105325 doi:10.1016/j.oregeorev.2023.105325
Yongwei Huang, Guanghui Li, and Dachao Lu (2010): Global Geology 29(2), 226-233
Jianguo Yang, Chuanshun Quan, and Xiuli Liu (2005): Gold Science and Technology 13(5), 26-29
      • Jidong County
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
Xue Chen, Jianxin Wang, Zunzhong Zhang, and Rongfang Liu (2010): Global Geology 29(1), 51-55
Jianxin Wang, Tianhao Wang, Taotao Peng, Ligang Zhao, and Xue Chen (2009): Global Geology 28(3), 305-309
Ding, J., Deng, C., Feng, Y., Yang, Y., & Zhao, R. (2022). Contrasting tectonic regimes between Late Jurassic and Early Cretaceous porphyry-epithermal Cu-Mo-Au mineralization in NE China: A perspective from the petrogenesis of the adakitic rocks in the Sishanlinchang porphyry Cu-Mo deposit. Ore Geology Reviews, 105035.
Yongwei Huang, Guanghui Li, Linshan Li, and Runtang Wu (2008): Global Geology 27(1), 14-18
[var. Bravoite] jxzs.gov.cn (n.d.) http://jxzs.gov.cn/zs02/xm01/zsxme-06.htm
      • Lishu District
Khanchuk, A. I., Sun, F., Molchanov, V. P., Grebennikova, A. A., & Grebennikov, A. V. (2017, March). Noble metals in graphite-bearing rocks of the Liumao deposit (China). In Doklady Earth Sciences (Vol. 473, No. 1, pp. 300-302). Pleiades Publishing.
      • Mashan District
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
      • Mishan City
Zhenyuan Liu (1990): Northeastern Geological Science and Technology Information 11(2), 17-22
    • Mudanjiang
      • Dongning County
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. 105524 doi:10.1016/j.oregeorev.2023.105524
Zhao, Y., Liu, H., & Qin, K. (2019) Discussion on Au transportation mechanism in melt-magma-fluid in porphyry Cu deposit–A case study from Jinchang porphyry Au (Cu) deposit, Heilongjiang province, China. Ore Geology Reviews, 111, 102968.
Li, Shunda, Zhang, Xuebing, Gao, Lingling (2019) Ore Genesis at the Jinchang Gold–Copper Deposit in Heilongjiang Province, Northeastern China: Evidence from Geology, Fluid Inclusions, and H–O–S Isotopes. Minerals, 9 (2) 99 doi:10.3390/min9020099
Li, Shun-Da, Zhi-Gao Wang, Ke-Yong Wang, Wen-Yan Cai, Da-Wei Peng, Li Xiao, and Jie Li. (2018) "Re–Os Pyrite Geochronological Evidence of Three Mineralization Styles within the Jinchang Gold Deposit, Yanji–Dongning Metallogenic Belt, Northeast China" Minerals 8, no. 10: 448. https://doi.org/10.3390/min8100448
赵玉锁, 杨立强, 卿敏, 闫家盼, 郭晓东, 朝银银, ... & 王景瑞. (2014). 硫镍钴矿———一种新发现的载金矿物. 地质学报, 88(8), 1485-1493.
Yanzhong Wang, Shenrong Li, Ouyang Fei, and Lan Yao (2013): Geology and Exploration 49(3), 469-474
Yusuo Zhao, Jiapan Yan, Guifeng Zhang, Liqiang Yang, Li He, Yuxia Yang, and Fanggen Huang (2013): Geology and Exploration 49(1), 75-88
Li Xiao, Yusuo Zhao, Min Qing, Yuanyuan Kong, Jiapan Yan, and Yuanyuan Tang (2010): Geology and Exploration 46(suppl.), 1178-1185
Zhenzhen Li, Shengrong Li, and Huafeng Zhang (2009): Mineral Deposits 28(1), 83-92
Lanjing Men, Jinggui Sun, Junkang Zhao, Lei Chen, Shuneng Liang, Wei Pang, and Dong Chen (2008): Mineral Deposits 27(1), 71-80
Chuantong Dong (2012): Gold Science and Technology 20(1), 42-55
Cong, D., Pang, H., Wang, S., Tian, Y., Ying, H., & Huang, G. (2019). Zircon LA-ICP-MS U-Pb Ages and the Hf Isotopic Composition of the Ore-Bearing Porphyry from the Yanghuidongzi Copper Deposit, Heilongjiang, China, and Its Geological Significance. Minerals, 9(11), 676.
Zengwu Yang, Chuantong Dong, Tongyuan Xia, and You Yu (2005): Geology and Prospecting 41(2), 27-29
      • Hailin County
Yanchen Yang, Jia Guo, Lanling Zhang, and Keyong Wang (2010): Global Geology 29(2), 240-247
      • Linkou County
Gao, Yu, Yujie Hao, and Siyu Lu. (2021) "Genesis of the Weizigou Au Deposit, Heilongjiang Province, NE China: Constraints from LA-ICP-MS Trace Element Analysis of Magnetite, Pyrite and Pyrrhotite, Pyrite Re-Os Dating and S-Pb Isotopes" Minerals 11, no. 12: 1380. https://doi.org/10.3390/min11121380
      • Muling City
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
Li Liu, Yanchen Yang, Zhaowu Yang, and Shijiong Han (2010): Global Geology 29(3), 413-418
Zhibin Wang and Liangyi Wang (1998): Gold Geology 4(3), 30-34
      • Ning'an City
Yu Wang, Fusheng Ma, Jianan Jing, and Jianhua Cui (2007): Journal of East China Institute of Technology 30(2), 113-118
    • Qiqihaer
      • Longjiang County
Wanrong Li (2004): Express Information of Mining Industry 9(9), 27-28
    • Qitaihe
      • Boli Co.
Enguang Zang, Chunxiao Zhang, and Cunchang Yi (2009): Gold Science and Technology 17(1), 24-28, 41
    • Shuangyashan
      • Baoqing County
Meng, Lin, Fei Huang, Wenyuan Gao, Rongzhen Gao, Fude Zhao, Yiran Zhou, and Yongli Li. (2022) "Multi-Step Gold Refinement and Collection Using Bi-Minerals in the Laozuoshan Gold Deposit, NE China" Minerals 12, no. 9: 1137.
Yanmei Zhang and Xiyou Liu (2011): Gold Science and Technology 19(2), 61-66
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
Hongjun Zhang, Yicheng Ye, and Xia Zhang (2005): Resources & Industries 7(1), 56-58
Haipeng Zhao, Baolin He, and Mingcan Wang (2005): Mineral Resources and Geology 19(4), 440-448
Zhixia Pei, Baolin He, Zhongliang Han, and Guiwu Ao (2004): Gold Geology 10(2), 28-32
Yumin Liu, Lianxi Wei, and Shujuan Chen (2001): Heilongjiang Geology 12(1), 8-15
Weishi Li (1986): Geology and Prospecting 22(3), 2-10
Mingliang Xu, Jianguo Yang, and Yuanchang Li (2006): Gold Science and Technology 14(4), 19-23
      • Lingdong District
wrgis.wr.usgs.gov (2004) http://wrgis.wr.usgs.gov/open-file/of03-220/DATABASE/lode_deposits.txt
    • Yichun
      • Hongxing District
Changdou Jin (1984): Geology and Prospecting 20(3), 9-11
      • Jiayin County
        • Wulaga Mine
Gao, S., Hofstra, A. H., Qin, K., & Xu, H. (2022). A case of Te-rich low-sulfidation epithermal Au-Ag deposits in a calc-alkaline magmatic arc, NE China. Ore Geology Reviews, 105158.
Guihu Chen, Fuzhou Wang, Yanzhong Wang, Jiguang Xue, Cangjiang Zhang, Yajun Li, and Xiaojun Duan (2012): Gold Science and Technology 20(2), 14-19
Keyong Wang, Yunsheng Ren, Xinmin Cheng, and Junzhi Dai (2004): Geotectonica et Metallogenia 28(2), 171-178
Xianwei Meng (1994): Geology and Prospecting 30(3), 63-66
Shangquan Wu (1984): Geology and Prospecting 20(2), 28-31
Changchun School of Metallurgy and Geology (1976): Geology and Prospecting 12(2), 18-29
      • Tieli City
Zhao, Chuntao, Sun, Fanting, Sun, Jinggui, Wang, Jianping, Han, Jilong, Chu, Xiaolei, Bai, Chenglin, Yu, Dongmei, Xu, Zhikai, Yi, Lei, Hua, Shan (2024) Genesis and Prospecting Potential of the Da’anhe Skarn Au Deposit in the Central of the Lesser Xing’an Range, NE China: Evidence from Skarn Mineralogy, Fluid Inclusions and H-O Isotopes. Minerals, 14 (3) doi:10.3390/min14030214
Chen Tang, Peng Chai, Jinggui Sun, Qinghai Wang, Xingshi Chen, Yixin Li, Fan Yang, and Yongsheng Liu (2011): Global Geology 30(2), 173-179
Mingxuan Xue, Ming Liu, and Bao Shuang (2001): World Geology 20(1), 34-39
Liu, Gaozhi, Zhao, Chongbin (2023) Numerical Modeling of the Hydrothermal Metallogenic Mechanism Associated with the Ergu Pb-Zn Deposit, Heilongjiang, China: An Example of Pore-Fluid Convection Controlled Mineralization. Minerals, 13 (11) doi:10.3390/min13111428
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      • Xilin District
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