1. Duan XX, Chen B, Sun KK et al. 2019. Accessory mineral chemistry as a monitor of petrogenetic and metallogenetic processes: A comparative study of zircon and apatite from Wushan Cu- and Zhuxiling W(Mo)-mineralization-related granitoids. Ore Geology Reviews, 111,102940 2. 张振,段晓侠*,陈斌,王志强,孙克克,严翔.2019.黑云母地球化学特征对武山铜矿和竹溪岭钨矿成矿岩浆体系差异的指示.岩石矿物学杂志,38(5):1-20. 3. 徐慢,段晓侠,陈斌,王志强,陈彦交,黎训飞.岩浆分异过程的证据:锆石微量元素-以湖南三叠纪王仙岭花岗岩体研究为例,地质论评,2020,66(3):666-685. 4 Duan XX, Zeng QD, Wang YB, et al. 2017. Genesis of the Pb−Zn deposits of the Qingchengzi ore field, eastern Liaoning, China: Constraints from carbonate LA−ICPMS trace element analysis and C–O–S–Pb isotopes. Ore Geology Reviews,89:752-771. 5 Duan XX &Regelous M. 2014. Rapid determination of 26 elements in iron meteorites using matrix removal and membrane desolvating quadrupole ICP-MS. Journal of Analytical Atomic Spectrometry,29:2379-2387. 6 Duan XX, Zeng QD, Yang JH, et al. 2014. Geochronology, geochemistry and Hf isotope of Late Triassic magmatic rocks of Qingchengzi district in Liaodong peninsula, Northeast China. Journal of Asian Earth Sciences91,107-124. 7 Duan XX, Zeng QD, Yang YH et al. 2014. Triassic magmatism and Mo mineralization in NE China: Geochronological and isotopic constraints from the Laojiagou porphyry Mo deposit. International Geology Review,57(1): 55-75. 8段晓侠,刘建明,王永彬等. 2012. 辽宁青城子铅锌多金属矿田晚三叠世岩浆岩年代学、地球化学及地质意义. 岩石学报,28(2):595 - 606. 9 Duan XX, Zeng QD, Wang YB, et al.2014. Sources of QingchengziPb-Zn orefield—implications from Pb isotope.Actageologicasinica (English Edition)V. 88, Supp. 2.【会议摘要】 10 Duan XX&Regelous M. 2013. Trace Element Analysis of Iron Meteorites by ICP-MS. Mineralogical Magazine77(5), 1012.【会议摘要】 11 Zeng QD, Sun Y, Duan XX, et al. 2013. U–Pb and Re–Os geochronology of the Haolibao porphyry Mo–Cu deposit, NE China: Implications for a Late Permian tectonic setting. Geological Magazine, 150(6): 975-985. 12 Lingli Zhou, Qingdong Zeng, Xiaoxia Duan, Zuolun Zhang, 2018. What triggers fertile porphyritic Mo magmas in subduction setting: A case study from the supergiant Daheishan Mo deposit, NE China. Lithos 316-317: 212-231 https://doi.org/10.1016/j.lithos.2018.07.017 |