Publications

  • Han, Z., Hu, X., He, T., Newton, R.J., Jenkyns, H.C., Jamieson, R.A., Franceschi, M., 2021. Early Jurassic long-term oceanic sulfur-cycle perturbations in the Tibetan Himalaya. Earth and Planetary Science Letters. Accepted.

  • Yao H., Chen, X., Yin, R., et al., 2021. Mercury Evidence of Intense Volcanism Preceded Oceanic Anoxic Event 1d. Geophysical Research Letters 48, e2020GL091508. (PDF)

  • Chen, X., Sageman, B., Yao, H., et al., 2021. Zinc isotope evidence for paleoenvironmental changes during Cretaceous Oceanic Anoxic Event 2. Geology 49,  412–416. (PDF)

  • Jin, X., Baranyi, V., Caggiati, M., Franceschi, M., Wall, C. J., Liu, G., & Preto, N. (2021). Middle Triassic lake deepening in the Ordos Basin of North China linked with global sea-level rise. Global and Planetary Change, 103670. (PDF)

  • Chen, W., Kemp, D.B., He, T., Huang, C., Jin, S., Xiong, Y., Newton, R.J., 2021. First record of the early Toarcian Oceanic Anoxic Event in the Hebrides Basin (UK) and implications for redox and weathering changes. Global and Planetary Change 207, 103685.

  • Yao, H., Chen, X., Brunner, B., et al., 2021. Hydrocarbon seepage in the mid-Cretaceous greenhouse world: A new perspective from southern Tibet. Global and Planetary Change 208, 103683.

  • Li, J., Hu, X.M., Garzanti, E., BouDagher-Fadel, M., 2021. Climate-driven hydrological change and carbonate platform demise induced by the Paleocene–Eocene Thermal Maximum (southern Pyrenees). Palaeogeography,Palaeoclimatology, Palaeoecology 567,110250  (PDF)

  • Jiang, J.X., Hu, X.M., Li, J., BouDagher-Fadel,M., Garzanti,E.,2021.Discovery of the Paleocene-Eocene Thermal Maximum in shallow-marine sediments of the Xigaze forearc basin, Tibet: A record of enhanced extreme precipitation and siliciclastic sediment flux. Palaeogeography, Palaeoclimatology, Palaeoecology 562,110095. (PDF)

  • Liu X., Chen, X., Tostevin, R., et al., 2021. Post-depositional modification of carbonate ooids by sulfate-reducing bacteria: Evidence from the Lower–Middle Jurassic, Tethyan Himalayas of southern Tibet. Sedimentary Geology 426, 106027.

  • Xu, Y.W., Hu, X.M., Garzanti, E., BouDagher-Fadel, M., Sun, G.Y., Lai, W., 2021. Mid-Cretaceous thick carbonate accumulation in Northern Lhasa (Tibet): eustatic vs. tectonic control? GSA Bulletin, doi/10.1130/B35930.1. (PDF)

  • Han, Z., Hu, X., BouDagher-Fadel, M., Jenkyns, H.C., Franceschi, M., 2021. Early Jurassic carbon-isotope perturbations in a shallow water succession from the Tethys Himalaya, southern hemisphere. Newsletters on Stratigraphy 54, 461–481. (PDF)

  • Guo, H., Chen, X., Yao, H et al., 2021. Lower Cretaceous clastic dykes in southern Tibet: Characteristics and palaeogeographic significance. Geological Journal 56, 1726-1739.

  • 陈曦, 郭会芳, 姚翰威等, 2021. 白垩纪大洋缺氧事件OAE2期间碳循环扰动的过程与机制. 科学通报 66, 1-12.

  • 李伟, 胡修棉, Melinte-Dobrinescu M,.BouDagher-Fadel M., 2021. 塔里木海齐姆根剖面早古近纪极热事件及其环境效应.科学通报, 66, 1067-1082. (PDF)