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[11]Wang, Z.Q., Chen, B.* and Ma, X.H., 2014. Petrogenesis of the Late Mesozoic Guposhan composite plutons from the Nanling range, South China: Implications for W-SN mineralization. American Journal of Science, 314(1): 235-277.
[12]王志强, 陈斌*, 马星华, 2014. 南岭芙蓉锡矿田锡石原位 LA-ICP-MS U-Pb年代学及地球化学研究: 对成矿流体来源和演化的意义. 科学通报, 59: 2505-2519.
[13]王炯辉, 王志强*, 陈斌, 2014. 广西三叉冲钨矿有关岩体岩石成因:锆石U-Pb年代学、元素地球化学及Nd同位素制约. 地球化学, 43: 549-573.
[14]合作论文:
[15]Cao Rui, Bagas Leon, Chen Bin, Wang Zhiqiang, Gao Yongbao, 2021. Geochronology and petrogenesis of the composite Zuluhong Granite, North Xinjiang Province of China: Implications for the crust-mantle interaction and continental crustal growth in Western Tianshan Orogen. Lithos, 380-381: 105837.
[16]Yan Xiang, Chen Bin, Duan Xiaoxia, Wang Zhiqiang, 2021. Geochronology and Ore Genesis of the Niujuan-Yingfang Pb-Zn-Ag Deposit in Fengning, Northern North China Craton: Constraints from Fluid Inclusions, H-O-S Isotopes and Fluorite Sr-Nd Isotopes. Journal of Earth Science, 32: 81-102.
[17]Chen B.*, Ma X.H., Wang Z.Q., 2014. Origin of the fluorine-rich highly differentiated granites from the Qianlishan composite plutons (South China) and implications for polymetallic mineralization. Journal of Asian Earth Sciences, 2014, 93:301-314.
[18]Chen C.J., Chen B.*, Li Z., Wang Z.Q., 2016. Important role of magma mixing in generating the Mesozoic monzodioritic–granodioritic intrusions related to Cu mineralization, Tongling, East China: Evidence from petrological and in situ Sr-Hf isotopic data. Lithos, 2016, 248: 80-93.
[19]严翔, 陈斌, 王志强, 段晓侠, 2019. 华北克拉通北缘牛圈银矿区两期A型花岗岩的成因及其构造意义. 岩石学报, 35: 558-588.
[20]陈斌*, 牛晓露, 王志强, 高林, 王超, 2013. 华北克拉通北缘姚家庄过钾质超镁镁铁岩-正长岩杂岩体的锆石U-Pb年代学、岩石学和地球化学特征. 中国科学: 地球科学, 43: 1073-1087.
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