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[41]Lin, M.*, Zhang, X., Li, M., Xu, Y., Zhang, Z., Tao, J., Su, B., Liu, L., Shen, Y.*, Thiemens, M.H.*, 2018. Five-S-isotope evidence of two distinct mass-independent sulfur isotope effects and implications for the modern and Archean atmospheres. Proceedings of the National Academy of Sciences of the United States of America 115, 8541-8546.
[42]Gao, Y., Zhang, X., Zhang, G., Chen, K., Shen, Y.*, 2018. Ediacaran negative C-isotopic excursions associated with phosphogenic events: Evidence from South China. Precambrian Research 307, 218-228.
[43]Hu, D., Zhang, X.*, Zhou, L., Finney, S.C., Liu, Y., Shen, D., Shen, M., Huang, W., Shen, Y., 2017. 87Sr/86Sr evidence from the epeiric Martin Ridge Basin for enhanced carbonate weathering during the Hirnantian. Scientific Reports 7, 11348.
[44]Li, D., Zhang, X.*, Chen, K., Zhang, G., Chen, X., Huang, W., Peng, S., Shen, Y., 2017. High-resolution C-isotope chemostratigraphy of the uppermost Cambrian stage (Stage 10) in South China: implications for defining the base of Stage 10 and palaeoenvironmental change. Geological Magazine 154, 1232-1243.
[45]Zhang, G., Zhang, X., Hu, D., Li, D., Algeo, T.J., Farquhar, J., Hendersond, C.M., Qin, L., Shen, M., Shen, D., Schoepfer, S.D., Chen, K., Shen, Y.*, 2017. Redox chemistry changes in the Panthalassic Ocean linked to the end-Permian mass extinction and delayed Early Triassic biotic recovery. Proceedings of the National Academy of Sciences of the United States of America 114, 1806-1810.
[46]Zhang X.*, Chen, K., Hu, D., Sha, J., 2016. Mid-Cretaceous carbon cycle perturbations and Oceanic Anoxic Events recorded in southern Tibet. Scientific Reports 6, 39643.
[47]Zhang X.*, Zhang, G., Sha, J., 2016. Lacustrine sedimentary record of early Aptian carbon cycle perturbation in western Liaoning, China. Cretaceous Research 62, 122-129.
[48]Sha, J.*, Wang, Y., Pan, Y., Yao, X., Rao, X., Cai, H., Zhang, X., 2016. Temporal and spatial distribution patterns of the marine–brackish-water bivalve Waagenoperna in China and its implications for climate and palaeogeography through the Triassic–Jurassic transition. Palaeogeography, Palaeoclimatology, Palaeoecology 464, 43-50.
[49]Wang, Y., Olsen, P.E., Sha, J.*, Yao, X., Liao, H., Pan, Y., Kinney, S., Zhang, X., Rao, X., 2016. Stratigraphy, correlation, depositional environments, and cyclicity of the Early Cretaceous Yixian and ?Jurassic-Cretaceous Tuchengzi formations in the Sihetun area (NE China) based on three continuous cores. Palaeogeography, Palaeoclimatology, Palaeoecology 464, 110-133.
[50]Zhang, G., Zhang, X., Li, D., Farquhar, J., Shen, S., Chen, X., Shen, Y.*, 2015. Widespread shoaling of sulfidic waters linked to the end-Guadalupian (Permian) mass extinction. Geology 43, 1091-1094.
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