2024
17. Wang, L.*, Cao, M.J., Gao, S., Chiaradia, M., Hollings, P., Qin, K.Z.*, Zou, X.Y., Song, G.X., Pang, X.Y., Li, G.M., 2024. The magmatic origin of propylitic alteration of the Zhengguang epithermal Au-Zn deposit, Heilongjiang, China: evidence from mineral compositions and H-O-Sr isotopes. Mineralium Deposita, DOI: 10.1007/s00126-023-01243-2
2023
16. Wang, L., Gao, S., Qin, K.*, Song, G., Han, R., Su, S., Guo, J., Pang, X., Li, G., 2023. Unveil the Redox Evolution of Ore‐forming Fluids using Sulfur Isotope: A Case Study of the Zhengguang Intermediate Sulfidation Epithermal Au‐Zn Deposit, NE China. Acta Geologica Sinica‐English Edition, 97(5):1462-1474.
15. Kan, J., Qin, K.Z.*, Wang, L., Hui, K.X., Han, R., Evans, N.J., Meng, Z.J., 2023. Paleozoic and Mesozoic magmatism in the Gaodi porphyry Mo-Cu deposit: Implications for the evolution of the Mongol-Okhotsk Ocean in the northern Great Xing'an Range, NE China. Gondwana Research, 124:77-99.
14. Kan, J., Qin, K.*, Wang, L., Hui, K., Han, R., 2023. The influence of fluid-exsolving depth on mineralization quality: Evidence from biotite and zircon mineralogy and fluid inclusions from the 460 Gaodi porphyry Mo-Cu deposit, NE China. Minerals, 13: 699.
13. Li, Y., Qin, K.Z.*, Song, G.X., Fan, Y., Wang, F.Y., Wang, L., 2023. The genetic link between iron-oxide–apatite and porphyry Cu–Au mineralization: Insight from the biotite–pyroxene–zircon study of the Nihe Fe deposit and the Shaxi Cu–Au deposit in the Lower Yangtze Valley, SE China. Minerals, 13: 451.
2021
12. Wang, L.*, Percival, J.B., Hedenquist, J.W., Hattori, K., Qin, K.Z., 2021. Alteration mineralogy of the Zhengguang epithermal Au-Zn Deposit, Northeast China: Interpretation of shortwave infrared analyses during mineral exploration and assessment. Economic Geology, 116(2): 389-406.
11. 回凯旋, 秦克章*, 韩日, 赵俊兴, 王乐, 高燊, 张夏楠, 2021. 岩浆热液型银矿床、银矿省及形成的控制因素. 岩石学报, 37(08): 2502-2520.
2020
10. Wang, L., Qin, K.Z.*, Cao, M.J., Dani?ík, M., Evans, N.J., Li, G.M., Song, G.X., Pang, X.Y., 2020. Thermal history of an Early Paleozoic epithermal deposit: Constraints from 40Ar/39Ar and (U–Th)/He thermochronology at Zhengguang, eastern Central Asian Orogenic Belt. Ore Geology Reviews, 126: 103791.
9. Wang, L., Qin, K.Z.*, Song, G.X., Pang, X.Y., Li, G.M., Zou, X.Y., 2020. Geology and genesis of the Early Paleozoic Zhengguang intermediate-sulfidation epithermal Au-Zn deposit, northeast China. Ore Geology Reviews, 124: 103602.
2019
8. Wang, L., Qin, K.Z.*, Song, G.X., Li, G.M., 2019. A review of intermediate sulfidation epithermal deposits and subclassification. Ore Geology Reviews, 107: 434–456.
7. Song, G.X.*, Cook, N.J., Wang, L., Qin, K.Z., Ciobanu, C.L. Li, G.M., 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.
2018
6. Wang, L., Qin, K.Z.*, Song, G.X., Pang, X.Y., Li, Z.Z., Zhao, C., Jin, L.Y., Zou, X.Y., Li, G.M., 2018. Volcanic-subvolcanic rocks and tectonic setting of Zhengguang intermediate sulfidation epithermal Au-Zn deposit, eastern CAOB. Journal of Asian Earth Sciences. 165: 328-351.
5. Zhao, C., Qin, K.Z.*, Song, G.X. Li, G.M., Li, Z.Z., Pang, X.Y., Wang, L., 2018. Petrogenesis and tectonic setting of ore-related porphyry in the Duobaoshan Cu deposit within the eastern Central Asian Orogenic Belt, Heilongjiang Province, NE China. Journal of Asian Earth Sciences, 165: 352-370.
4. 宋国学*, 秦克章, 李光明, 王乐, 2018. 中硫型浅成低温热液金多金属矿床基本特征、研究进展与展望. 岩石学报, 34(3): 748-762.
2017
3. 王乐, 秦克章*, 庞绪勇, 宋国学, 金露英, 李光明, 赵超, 2017. 多宝山矿田铜山斑岩铜矿床地质特征与蚀变分带:对热液-矿化中心及深部勘查的启示. 矿床地质. 36(5): 1143-1168.
2. 庞绪勇, 秦克章*, 王乐, 宋国学, 李光明, 苏仕强, 赵超, 2017. 黑龙江铜山断裂的变形特征及铜山铜矿床蚀变带-矿体重建. 岩石学报, 33(2): 398-414.
2015
1. 宋国学*, 秦克章, 王乐, 郭继海, 李真真, 佟匡胤, 邹心宇, 李光明, 2015. 黑龙江多宝山矿田争光金矿床类型、U-Pb年代学及古火山机构. 岩石学报, 31(08): 2402-2416.