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Zhou, T., Ge, R.F.*, Zhu, W.B., Wu, H.L, 2021. Is there a Grenvillian orogen in the southwestern Tarim Craton? Precambrian Res. 354, 106053.
Ge, R.F*, Wilde, S. A., Kemp, A. I. S., Jeon, H., Martin, L. A. J., Zhu, W.B., Wu, H.L., 2020, Generation of Eoarchean continental crust from altered mafic rocks derived from a chondritic mantle: The ∼3.72 Ga Aktash gneisses, Tarim Craton (NW China), Earth and Planetary Science Letters, 538: 116225.
Ge, R.F.*, Wilde, S. A., Nemchin, A. A., Whitehouse, M. J., Bellucci, J. J., Erickson, T. M. 2019. Mechanisms and consequences of intra-crystalline enrichment of ancient radiogenic Pb in detrital Hadean zircons from the Jack Hills, Western Australia, Earth and Planetary Science Letters, 517, 38 - 49.
Wu, H.L., Zhu, W.B.*, Ge, R.F.* . 2019. Late Paleoproterozoic granulite-facies metamorphism in the North Altyn Tagh area, southeastern Tarim craton: Pressure-temperature paths, zircon U-Pb ages, and tectonic implications, Geological Society of America Bulletin, 131(9-10): 1591 - 1606.
Ge, R.F.*., W.B. Zhu*, S.A. Wilde, and H.L. Wu. 2018. Remnants of Eoarchean continental crust derived from a subducted proto-arc, Science Advances, aao3159
Ge, R.F*., S.A. Wilde*, A.A. Nemchin, M.J. Whitehouse, J.J. Bellucci, T.M. Erickson, A. Frew, and E.R. Thern. 2018. A 4463 Ma apparent zircon age from the Jack Hills (Western Australia) resulting from ancient Pb mobilization, Geology, 46, 303-306.
Ge, R.F.*, Zhu, W.B.*, Wilde, S.A.*. 2016. Mid‐Neoproterozoic (ca. 830–800 Ma) metamorphic P‐T paths link Tarim to the circum‐Rodinia subduction–accretion system. Tectonics, 6, 1465-1488.
Ge, R. F.,Zhu W B*, Wilde S A,He J W, Cui X. 2015. Synchronous crustal growth and reworking recorded in late Paleoproterozoic granitoids in the northern Tarim craton: In situ zircon U-Pb-Hf-O isotopic and geochemical constraints and tectonic implications. Geological Society of America Bulletin, 127(5-6): 781-803.
Ge, R.F., Zhu, W.B*., Wilde, S.A., He, J.W., Cui, X., Wang, X., Zheng, B., 2014a. Neoproterozoic to Paleozoic long-lived accretionary orogeny in the northern Tarim Craton. Tectonics, 33(3): 302-329.
Ge, R. F., Zhu W B*, Wilde S A, Wu H L, He J W, Zheng B H. 2014b. Archean magmatism and crustal evolution in the northern Tarim Craton: insights from zircon U-Pb-Hf-O isotopes and geochemistry of ~2.7 Ga orthogneiss and amphibolite in the Korla Complex. Precambrian Research, 252(0): 145-165..
Ge, R. F., Zhu W B*, Wilde S A, et al. 2014c. Zircon U–Pb–Lu–Hf–O isotopic evidence for ≥3.5 Ga crustal growth, reworking and differentiation in the northern Tarim Craton. Precambrian Research, 249(0): 115-128.
Ge, R.F., Zhu, W.B.*, Wu, H.L., He, J.W., Zheng, B.H., 2013a. Zircon U–Pb ages and Lu–Hf isotopes of Paleoproterozoic metasedimentary rocks in the Korla Complex, NW China: Implications for metamorphic zircon formation and geological evolution of the Tarim Craton. Precambrian Research, 231, 1-18.
Ge, R.F., Zhu, W.B.*, Wu, H.L., Zheng, B.H., He, J.W., 2013b. Timing and mechanisms of multiple episodes of migmatization in the Korla Complex, northern Tarim Craton, NW China: Constraints from zircon U–Pb–Lu–Hf isotopes and implications for crustal growth. Precambrian Research, 231, 136-156, doi: 10.1016/j.precamres.2013.03.005.
Ge, R.F., Zhu, W.B.*, Zheng, B.H., Wu, H.L., Zhu, X.Q., He, J.W., 2012. Early Pan-African Magmatism in the Tarim Craton: Insights from Zircon U-Pb-Lu-Hf isotope and Geochemistry of Granitoids in the Korla Area, NW China. Precambrian Research, 212-213: 117-138..
Ge, R.F., Zhu, W.B.*, Wu, H.L., Zheng, B.H., Zhu, X.Q., He, J.W., 2012. The Paleozoic northern margin of the Tarim Craton: Passive or active? Lithos, 142-143: 1-15.
Ge, R.F., Zhang, Q.L.*, Wang, L.S., Chen, J., Xie, G.A., Wang, X.Y., 2011. Late Mesozoic rift evolution and crustal extension in the central Songliao Basin, northeastern China: constraints from cross-section restoration and implications for lithospheric thinning. International Geology Review,54, 183-207.
葛荣峰, 张庆龙*, 王良书, 解国爱, 徐士银, 陈娟, 王锡勇. 2010. 松辽盆地构造演化与中国东部构造体制转换. 地质论评56, 180-195.
葛荣峰,张庆龙*, 解国爱, 徐士银, 王锡勇, 陈娟. 2009. 郯庐断裂带北段及邻区现代地震活动性与应力状态. 地震地质, 141-154.
葛荣峰, 张庆龙*, 徐士银, 王良书, 解国爱, 陈娟, 王锡勇. 2009. 松辽盆地长岭断陷构造演化及其动力学背景. 地质学刊, 346-358.
葛荣峰, 张庆龙*, 朱国荣, 郭志伟, 林昱. 2007. 贝加尔湖滨奥里洪地区新构造特征及其成因模式初探. 江苏地质 31, 90-95.
2、合作论文:
Lu, Y., Zhu, W., Jourdan, F., Ge, R.F. , Cui, X., Wen, B., 2018, 40Ar/39Ar ages and geological significance of Neoproterozoic–Cambrian mafic rocks in the Aksu–Wushi area, NW Tarim Craton. Geological Journal, in press
Lu, Y., Zhu, W., Ge, R.F. , Zheng, B., He, J., Diao, Z., 2017, Neoproterozoic active continental margin in the northwestern Tarim Craton: Clues from Neoproterozoic (meta)sedimentary rocks in the Wushi area, northwest China, Precambrian Research, 298: 88-106.
Cui, X., Zhu, W., Fitzsimons, I., He, J., Lu, Y., Wang, X., Ge, R.F., Zheng, B., Wu, X., 2015. U–Pb age and Hf isotope composition of detrital zircons from Neoproterozoic sedimentary units in southern Anhui Province, South China: Implications for the provenance, tectonic evolution and glacial history of the eastern Jiangnan Orogen. Precambrian Research 271, 65-82.
Cui, X., Zhu, W., Ge, R.F., 2014. Provenance and Crustal Evolution of the Northern Yangtze Block Revealed by Detrital Zircons from Neoproterozoic-Early Paleozoic Sedimentary Rocks in the Yangtze Gorges Area, South China. The Journal of Geology 122, 217-235.
He, J., Zhu, W., Ge, R.F., Zheng, B., Wu, H., 2014. Detrital zircon U-Pb ages and Hf isotopes of Neoproterozoic strata in the Aksu area, northwestern Tarim Craton: Implications for supercontinent reconstruction and crustal evolution. Precambrian Research 254, 194-209.
He, J., Zhu, W., Ge, R.,F. 2014. New age constraints on Neoproterozoic diamicites in Kuruktag, NW China and Precambrian crustal evolution of the Tarim Craton. Precambrian Research 241, 44-60.
Su, J., Zhu, W., Chen, J., Ge, R.F., Zheng, B., Min, B., 2014. Cenozoic inversion of the East China Sea Shelf Basin: implications for reconstructing Cenozoic tectonics of eastern China. International Geology Review 56, 1541-1555.
Wang, X., Zhu, W., Ge, R. F., Luo, M., Zhu, X., Zhang, Q., Wang, L., Ren, X., 2014. Two episodes of Paleoproterozoic metamorphosed mafic dykes in the Lvliang Complex: Implications for the evolution of the Trans-North China Orogen. Precambrian Research 243, 133-148.
Zhu, X., Zhu, W., Ge, R.F., Wang, X., 2014. Late Paleozoic provenance shift in the south-central North China Craton: Implications for tectonic evolution and crustal growth. Gondwana Research 25, 383-400.
何景文, 朱文斌, 郑碧海, 吴海林, 葛荣峰, 罗梦, 2015. 塔里木西北缘阿克苏地区震旦系苏盖特布拉克组沉积物源分析: 碎屑锆石年代学证据. 地质学报 89, 149-162.
王莹, 张庆龙, 朱文斌, 王良书, 解国爱 , 葛荣峰, 刘超, 邹旭, 2014. 沁水盆地南缘中-新生代构造变形与构造应力场. 高校地质学报20, 249-259.
刘超, 张庆龙, 葛荣峰, 王莹, 朱文斌, 王良书, 2011. 山西沁水盆地东缘太行大断裂构造变形特征及其成因探讨. 地质学刊35, 113-122.
王锡勇, 张庆龙, 王良书, 葛荣峰, 陈娟, 2010. 鄂尔多斯盆地东缘中—新生代构造特征及构造应力场分析. 地质通报29, 1168-1176.
张庆龙, 葛荣峰, 赵立文. 杜彦彦, 慕德良, 2010. 辽河盆地中部构造演化与古潜山油气成藏模式. 石油实验地质32, 211-217.
张庆龙, 林奕源, 徐士银, 陈金水, 杜菊民, 葛荣峰, 2008. 福建省地体构造划分及构造演化. 资源调查与环境 29, 168-176.
陈娟, 张庆龙, 王良书 , 解国爱, 徐士银, 毕素萍, 葛荣峰, 2008. 松辽盆地长岭断陷盆地断陷期构造转换及油气地质意义.地质学报82, 1027-1035.