第一作者及通讯作者:
1. Huang X.X., Shi Rendeng, Gong X.H., et al., 2020. Oceanization of the subcontinental lithospheric mantle recorded in the Yunzhug ophiolite, Central Tibetan Plateau. Lithos, 370-371. doi.org/10.1016/j.lithos.2020.105612
2. Gong X.H., Shi Rendeng, Xu J.F., et al., 2020. “Garnet” lherzolites in the Purang ophiolite, Tibet: Evidence for exhumation of deep oceanic lithospheric mantle. Geophy. Res. Letters. DOI: 10.1029/2019GL086101.
3. Zhang X.R., Shi Rendeng, Huang Q.S., et al., 2014. Early Jurassic high-pressure metamorphism of the Amdo terrane, Tibet: Constraints from zircon U–Pb geochronology of mafic granulites. Gondwana Research 26: 975-985.
4. Shi Rendeng, Griffin W.L., O'Reilly S.Y., et al., 2012a. Melt/mantle mixing produces podiform chromite deposits in ophiolites: Implications of Re-Os systematics in the Dongqiao Neo-tethyan ophiolite, northern Tibet. Gondwana Research 21: 194-206.
5. Shi Rendeng, Griffin W.L., O’Reilly S.Y., et al., 2012b. Archean mantle contributes to the genesis of chromitite in the Palaeozoic Sartohay ophiolite, Asiatic Orogenic Belt, northwestern China. Precambrian Research 216–219: 87-94.
6. Shi Rendeng, Griffin W.L., O’Reilly S.Y., et al., 2010. Evolution of the Lüliangshan garnet peridotites in the North Qaidam UHP belt, Northern Tibetan Plateau: Constraints from Re-Os isotopes. Lithos 117: 307-321.
7. Zhang X.R., Shi Rendeng, Huang Q.S., et al., 2010. New high-pressure mafic granulites in Amdo basement, central Tibet. Chinese Science Bulletin 55(32): 3694-3702.
8. Shi Rendeng, Yang J.S., Xu Z.Q., et al., 2008. The Bangong Lake ophiolite (NW Tibet) and its bearing on the tectonic evolution of the Bangong–Nujiang suture zone, Journal of Asian Earth Sciences 32(5-6): 438-457.
9. Shi Rendeng, Alard O., Zhi X.C., et al., 2007a. Multiple events in the Neo-Tethyan Oceanic upper mantle: Evidence from Ru-Os-Ir alloys in the Luobusa and Dongqiao ophiolitic podiform chromitites, Tibet. Earth and Planetary Science Letters 261: 33-48.
10. Shi Rendeng. 2007b. SHRIMP dating of the Bangong Lake SSZ-type ophiolite: Constrains the closure time of Ocean in the Bangong Lake-Nujiang River, northwestern Tibet. Chinese Science Bulletin 52(7): 936-941.
11. Shi Rendeng, Yang J.S., Wu C.L., et al., 2006. Island Arc Volcanic Rocks in the North Qaidam UHP Belt, Northern Tibet Plateau: Evidence for Ocean-Continent Subduction Followed by Continent-Continent Subduction. The Journal of Asian Earth Sciences 28: 151-159.
12. Shi Rendeng, Yang J.S., Xu Z.Q., et al., 2004. Discovery of the boninite series volcanic rocks in the Bangong Lake ophiolite mélange, western Tibet, and its tectonic implications. Chinese Science Bulletin 49(12): 1272-1278.
13. 潘政, 史仁灯, 黄启帅, 等. 2020. 青藏高原凯蒙蛇绿混杂岩中碱性火山岩的发现及意义. 岩石矿物学杂志 39(1): 18-34.
14. 赵斌, 龚小晗, 黄启帅, 史仁灯. 2020. 西藏雅鲁藏布江缝合带普兰地幔橄榄岩铬尖晶石成因研究, 岩石学报 36(2): 455-468.
15. 史仁灯, 黄启帅, 刘德亮, 等, 2012. 古老大陆岩石圈地幔再循环与蛇绿岩中铬铁矿床成因. 地质论评 58, 643-652.
16. 史仁灯, 郝艳丽, 黄启帅. 2008. Re-Os同位素对峨眉山大火成岩省成因制约的探讨. 岩石学报 24(11): 2515-2523.
17. 史仁灯, 支霞臣, 陈雷, 等. 2006. Re-Os同位素体系在蛇绿岩应用研究中的进展, 岩石学报 22(6): 1685-1695.
18. 史仁灯, 杨经绥, 许志琴, 等. 2005. 西藏班公湖存在MOR型和SSZ 型蛇绿岩—来自两种不同地幔橄榄岩的证据. 岩石矿物学杂志 24(5): 397-408.
19. 史仁灯. 2005. 蛇绿岩研究进展、存在问题及思考. 地质论评 51(6): 681-693.
20. 史仁灯, 杨经绥, 许志琴, 等. 2004. 西藏班公湖蛇绿混杂岩中玻安岩系火山岩的发现及构造意义. 科学通报 49(12): 1179-1184.
21. 史仁灯, 杨经绥, 吴才来, 等. 2004. 北祁连玉石沟蛇绿岩形成于晚震旦世的SHRIMP年龄证据. 地质学报 78(5): 649-657.
22. 史仁灯, 杨经绥, 吴才来, 等. 2004. 柴北缘超高压变质带中的岛弧火山岩. 地质学报 78(1): 52-64.
23. 史仁灯, 杨经绥, 吴才来, 等. 2003. 柴北缘早古生代岛弧火山岩中埃达克质英安岩的发现及其地质意义. 岩石矿物学杂志 22(3):229-236.
24. 丁炳华, 史仁灯, 支霞臣, 等. 2008. 江南造山带存在新元古代(~850 Ma)俯冲作用—来自皖南SSZ型蛇绿岩锆石SHRIMP U-Pb年龄证据. 岩石矿物学杂志 27(5): 375-388.
25. 樊帅权, 史仁灯, 黄启帅, 等. 2010. 西藏改则蛇绿岩中斜长花岗岩地球化学特征、锆石U-Pb年龄及构造意义. 岩石矿物学杂志 29(5): 467-478.
26. 张晓冉, 史仁灯, 黄启帅, 等. 2010. 青藏高原安多高压基性麻粒岩的发现及地质意义. 科学通报 55(27-28): 2702-2711.
其它
27. Liu D.L., Shi Rendeng, Ding L., et al., 2017. Zircon U-Pb age and Hf isotopic composition of Mesozoic granitoids in southern Qiangtang, Tibet: Implications fro the subduction of the Banong-Nujiang Tethyan Ocean. Gondwana Research 41: 157-172.
28. Chen, S.S., Fan, W.M., Shi Rendeng, et al., 2017a. Removal of deep lithosphere in ancient continental collisional orogens: A case study from central Tibet, China. Geochemistry, Geophysics, Geosystems 18, 1225-1243.
29. Chen, S.S., Shi Rendeng, Fan, W.M., Gong, X.H., Wu, K., 2017b. Early Permian mafic dikes in the Nagqu area, central Tibet, China, associated with embryonic oceanic crust of the Meso-Tethys Ocean. Journal of Geophysical Research: Solid Earth 122, 4172-4190.
30. Gong X.H., Shi Rendeng, Griffin W.L., et al., 2016. Recycling of ancient subduction-modified mantle domains in the Purang ophiolite (southwestern Tibet). Lithos 262, 11-26.
31. Chen, S.S., Shi Rendeng, Fan, W.M., Zou, H.B., Liu, D.L., Huang, Q.S., Gong, X.H., Yi, G.D., Wu, K., 2016a. Middle Triassic ultrapotassic rhyolites from the Tanggula Pass, southern Qiangtang, China: A previously unrecognized stage of silicic magmatism. Lithos 264, 258-276.
32. Chen, S.S., Shi Rendeng, Gong, X.H., Liu, D.L., Huang, Q.S., Yi, G.D., Wu, K., Zou, H.B., 2017c. A syn-collisional model for Early Cretaceous magmatism in the northern and central Lhasa subterranes. Gondwana Research 41, 93-109.
33. Chen, S.S., Shi Rendeng, Yi, G.D., Zou, H.B., 2016b. Middle Triassic volcanic rocks in the Northern Qiangtang (Central Tibet): Geochronology, petrogenesis, and tectonic implications. Tectonophysics 666, 90-102.
34. Chen, S.S., Shi Rendeng, Zou, H.B., et al., 2015. Late Triassic island-arc–back-arc basin development along the Bangong–Nujiang suture zone (central Tibet): Geological, geochemical and chronological evidence from volcanic rocks. Lithos 230, 30-45.
35. Huang, Q.S., Shi Rendeng, Liu, D.L., et al., 2013. Os isotopic evidence for a carbonaceous chondritic mantle source for the Nagqu ophiolite from Tibet and its implications. Chinese science bulletin 58, 92-98.
36. Huang, Q.S., Shi Rendeng, O’Reilly, S.Y., et al., 2015. Re-Os isotopic constraints on the evolution of the Bangong-Nujiang Tethyan oceanic mantle, Central Tibet. Lithos 224–225, 32-45.
37. Shi Rendeng, Ding B.H., Huang Q.S., et al., 2009. Archean chromitite in the Palaeozoic Sartohay ophiolite from the Asiatic Orogenic Belt, northwestern China. Geochimica et Cosmochimica Acta, 73, (13, Supplement 1), A1210.
38. Shi Rendeng, Zhi X.C., Ding B.H., et al., 2007.The Os isotope heterogeneities in the mantle sequence of the Bangong Lake ophiolite, northwestern Tibet. Geochimica et Cosmochimica Acta, 71, (15, Supplement 1), A927.
39. Shi Rendeng, Zhi X.C., O'Reilly S.Y., et al., 2006. Multiple events in oceanic upper mantle: Ru-Os-Ir alloys in Tibetan ophiolites. Geochimica et Cosmochimica Acta, 70, (18, Supplement 1), A583.