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1.Li, Y., Zhang, C., Chi, G., Duo, J., Li, Z., and Song, H., 2019, Black and red alterations associated with the Baimadong uranium deposit (Guizhou, China): Geological and geochemical characteristics and genetic relationship with uranium mineralization: Ore Geology Reviews, v. 111, doi: 10.1016/j.oregeorev.2019.102981
2.Yuan, L., Chi, G., Wang, M., Li, Z., Xu, D., Deng, T., Geng, J., Hu, M., and Zhang, L., 2019, Characteristics of REEs and trace elements in scheelite from the Zhuxi W deposit, South China: Implications for the ore-forming conditions and processes: Ore Geology Reviews, v. 109, p. 585-597.Doi: 10.1016/j.oregeorev.2019.05.003
3.Li, Z., Chi, G., Bethune, K.M., Eldursi, K., David, Q., and Ledru, P., 2018. Numerical simulation of strain localization related to formation of the Sue unconformity-related uranium deposits in the Athabasca Basin, Canada. Ore Geology Reviews, 101: 17-31. doi:10.1016/j.oregeorev.2018.07.004.
4.Li, Z., Chi, G., Bethune, K.M., Eldursi, K., Thomas, D., David, Q., and Ledru, P., 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.
5.Chi, G., Li, Z., Chu, H., Bethune, K.M., David, Q., Ledru, P., A , Normand, C., Card, C., Bosman, S., Davis, W.J., and Potter, E.G., 2018. A shallow-burial mineralization model for the unconformity-related uranium deposits in the Athabasca Basin. Economic Geology, 113, 1209-1217.
6.Wang, K., Chi, G., Bethune, K.M., Li, Z., Blamey, N., Card, C., Liu, Y., and Gamelin, C., 2018. Fluid P-T-X characteristics and evidence for boiling in the formation of the Phoenix uranium deposit (Athabasca Basin, Canada): implications for environments and processes of unconformity-related uranium mineralization. Ore Geology Reviews, 101, 122-142.
7.Deng, T., Xu, D., Chi, G., Wang, Z., Chen, G., Li, Z., Zhang, J., Ye, T. and Yu., D, 2018. Revisiting the ca. 845 - 820 Ma S-type granitic magmatism in the Jiangnan Orogen: New insights on the Neoproterozoic tectono-magmatic evolution of South China. International Geology Review, 1-21. doi: 10.1080/00206814.2018.1426054.
8.Li, Z., Chi, G., Bethune, K.M., Thomas, D., and Zaluski, G., 2017. Structural controls on fluid flow during compressional reactivation of basement faults: insights from numerical modelling 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.
9.Zhao, X., Xue, C., Chi, G., Chu, H, Li, Z., Pak, N., Wang, X., Zhang, G. and Zu, B., 2017. Multi-stage gold mineralization in the Taldybulak Levoberezhny deposit, Tien Shan, Kyrgyzstan: Reply to comment by Boris Trifonov on “Re–Os pyrite and U–Pb zircon geochronology from the Taldybulak Levoberezhny gold deposit: Insight for Cambrian metallogeny of the Kyrgyz northern Tien Shan”. Ore Geology Reviews, 82:217–231. doi: 10.1016/j.oregeorev.2016.10.042.
10.Li, Z., Chi, G., and Bethune, K.M., 2016. The effects of basement faults on thermal convection and implications for the formation of unconformity-related uranium deposits in the Athabasca Basin, Canada. Geofluids, 16(4):729–751. doi: 10.1111/gfl.12180.
11.Li, Z., Bethune, K.M., Chi, G., Bosman, S.A., and Card, C.D., 2015. Topographic features of the sub-Athabasca Group unconformity surface in the southeastern Athabasca Basin and their relationship to uranium ore deposits. Canadian Journal of Earth Sciences, 52(10): 903–920. doi: 10.1139/cjes-2015-0048.
12.Chi, G., Li, Z., and Bethune, K.M., 2014. Numerical modelling of hydrocarbon generation in the Douglas Formation of the Athabasca basin (Canada) and implications for unconformity-related uranium mineralization. Journal of Geochemical Exploration, 144 (Part A): 37–48. doi: 10.1016/j.gexplo.2013.10.015.
13.李增华,成秋明,谢淑云,徐德义,夏庆霖,张生元,2009. 云南个旧期北山七段玄武岩中磁黄铁矿结构变化分形特征. 地球科学(中国地质大学学报), 34(2):275–280.
14.谢淑云,成秋明,李增华,邢细涛,陈守余,2009. 矿物微观结构的多重分形, 地球科学(中国地质大学学报), 34(2):263–269.