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7. 王相力, 卫炜*, 2020. 铬稳定同位素地球化学. 地学前缘, 27, 78-103.
6. Wei, W.*, Klaebe, R., Ling, H.F.*, Huang, F., Frei, R., 2020. Biogeochemical cycle of chromium isotopes at the modern Earth's surface and its applications as a paleo-environment proxy. Chemical Geology 541, 119570.
5. Wei, W., Frei, R., Gilleaudeau, G.J., Li, D., Wei, G.Y., Huang, F., Ling, H.F.*, 2020. Variations of redox conditions in the atmosphere and Yangtze Platform during the Ediacaran-Cambrian transition: Constraints from Cr isotopes and Ce anomalies. Palaeogeography, Palaeoclimatology, Palaeoecology 543, 109598.
4. Wei, W., Frei, R., Klaebe, R., Li, D., Wei, G., Ling, H.*, 2018. Redox condition in the Nanhua Basin during the waning of the Sturtian glaciation: a chromium-isotope perspective. Precambrian Research 319,198-210.
3. Wei, W., Frei, R., Chen, T., Klaebe, R., Wei, G., Li, D., Ling, H.*, 2018. Marine ferromanganese oxide: a potentially important sink of light chromium isotopes? Chemical Geology 495, 90-103.
2. Wei, W., Frei, R., Gilleaudeau, G., Li, D., Wei, G., Chen, X., Ling, H.*, 2018. Oxygenation variations in the atmosphere and shallow seawaters of the Yangtze Platform during the Ediacaran Period: clues from Cr-isotope and Ce-anomaly in carbonates. Precambrian Research 313, 78-90.
1. Wei, W., Wang, D.*, Li, D.*, Ling, H., Chen, X., Wei, G., Zhang, F., Zhu, X., Yan, B., 2016. The marine redox change and nitrogen cycle in the Early Cryogenian interglacial time: Evidence from nitrogen isotopes and Mo contents of the basal Datangpo Formation, northeastern Guizhou, South China. Journal of Earth Science 27, 233-241.
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9. Tian, L.L, Gong, Y.Z., Wei, W., Kang, J.T., Yu, H.M., Huang, F., 2020. Rapid determination of Ba isotope compositions for barites using a H2O-extraction method and MC-ICP-MS. Journal of Analytical Atomic Spectrometry 35, 1566-1573.
8. Wei, G.Y., Planavsky, N.J., Tarhan, L.G., He, T., Wang, D., Shields, G.A., Wei, W., Ling, H.F., 2020. Highly dynamic marine redox state through the Cambrian explosion highlighted by authigenic δ238U records. Earth and Planetary Science Letters 544, 116361.
7. Wei, G., Wei, W., Wang, D., Li, T., Yang, X., Shields, G.A., Zhang, F., Li, G., Chen, T., Yang, T., 2020. Enhanced chemical weathering triggered an expansion of euxinic seawater in the aftermath of the Sturtian glaciation. Earth and Planetary Science Letters 539, 116244.
6. Hohl, S.V., Jiang, S.Y., Viehmann, S., Wei, W., Liu, Q., Wei, H.Z., Galer, S.J., 2020. Trace Metal and Cd Isotope Systematics of the Basal Datangpo Formation, Yangtze Platform (South China) Indicate Restrained (Bio) Geochemical Metal Cycling in Cryogenian Seawater. Geosciences 10, 36.
5. Wei, G.Y., Hood, A.v.S., Chen, X., Li, D., Wei, W., Wen, B., Gong, Z., Yang, T., Zhang, Z.F., Ling, H.F., 2019. Ca and Sr isotope constraints on the formation of the Marinoan cap dolostones. Earth and Planetary Science Letters 511, 202-212.
4. Wei, G.Y., Planavsky, N.J., Tarhan, L.G., Chen, X., Wei, W., Li, D., Ling, H.F., 2018. Marine redox fluctuation as a potential trigger for the Cambrian explosion. Geology 46, 587-590.
3. 薛玮玮, 凌洪飞, 李达, 卫炜, 魏广祎, 高梦奇, 2018. 修水地区下寒武统富铀地层特征及其铀富集机制研究. 高校地质学报, 24, 210-221.
2. Wei, G., Ling, H., Li, D., Wei, W., Wang, D., Chen, X., Zhu, X., Zhang, F., Yan, B., 2017. Marine redox evolution in the early Cambrian Yangtze shelf margin area: evidence from trace elements, nitrogen and sulphur isotopes. Geological Magazine 154, 1344-1359.
1. 王丹, 凌洪飞, 姚素平, 李达, 卫炜, 魏广祎, 2016. 湖南会同寒武纪早期有机碳同位素地层学研究. 高校地质学报, 22, 274-288.