簡 介:
理學(xué)博士,高級工程師。主要從事新生代孢粉植物群演化和地震湖沼學(xué)研究工作,概括起來有以下兩方面:
1)在岷江上游流域開展孢粉記錄的地震事件研究,識別出1933年M7.5疊溪地震對應(yīng)整體孢粉濃度最低、孢粉類型最單調(diào)、草本花粉與蕨類孢子含量較高的層位,震后植被恢復(fù)以胡頹子科迅速發(fā)育為特征;2)對柴達木盆地紅溝新生代河湖相沉積剖面開展詳細的孢粉、碳含量、粒度等環(huán)境指標分析,認為紅溝剖面主要為新近紀以來的沉積,與磁性地層和哺乳動物化石吻合,松科花粉在~10 Ma含量增加,響應(yīng)了全球變冷和青藏高原東北緣的構(gòu)造隆升。已取得的部分成果發(fā)表在Environmental Research Letters、Quaternary International、Quaternary Science Reviews、Journal of Geophysical Research等國際地學(xué)主流期刊上。
本人負責(zé)孢粉學(xué)實驗室,可以測試孢粉、粒度、碳含量、色度、磁化率等環(huán)境指標。
教育背景:
2011-2018年 中國地震局地質(zhì)研究所,構(gòu)造地質(zhì)學(xué)專業(yè),博士
2006-2009年 中國科學(xué)院植物研究所,植物學(xué)專業(yè),碩士
2002-2006年 魯東大學(xué),生物科學(xué)專業(yè),本科
工作經(jīng)歷:
2018.1-至今 中國地震局地質(zhì)研究所,高級工程師
2009.7-2017.12 中國地震局地質(zhì)研究所,助理工程師、工程師
研究方向:
新生代孢粉植物群演化,古地震
國際合作與交流:
2018.11-2019.11:Louisiana State University,訪問學(xué)者,地震湖沼學(xué),合作導(dǎo)師:Kam-biu Liu教授
承擔(dān)科研項目:
祁連山南北緣晚新生代孢粉記錄對比及其對構(gòu)造-氣候變化的響應(yīng),國家自然科學(xué)基金項目(編號: 41602358),2017.01-2019.12,項目負責(zé)人
地震堰塞湖沉積的孢粉植物群對地震事件的響應(yīng),所長基金 (編號: IGCEA1508),2015.08-2018.12,項目負責(zé)人
孢粉濃縮物測年方法的研究——以岷江上游晚更新世湖相沉積為例,所長基金 (編號: IGCEA1012) ,2010.01-2012.12,項目負責(zé)人
新疆艾比湖地區(qū)全新世地震事件研究,所長基金重點項目(編號: IGCEA1906),2019.01-2022.12,項目骨干
代表論著(*表示通訊作者):
Xu, H.Y.*, Jiang, H.C., Liu, K., Zhong, N., 2020. Potential pollen evidence for the 1933 M 7.5 Diexi earthquake and implications for post-seismic landscape recovery. Environmental Research Letters 15: 094043.
Xu, H.Y., Jiang, H.C.*, Yu, S., Yang, H.L., Chen, J., 2015. OSL and pollen concentrate 14C dating of dammed lake sediments at Maoxian, east Tibet, and implications for two historical earthquakes in AD 638 and 952. Quaternary International 371, 290–299.
Xu, H.Y., Jiang, H.C.*, Mai, X.S., Ma, X.L., 2013. A new processing method for the pollen samples from Palaeogene red beds in the Liguanqiao Basin, Hubei Province, and Pleistocene loess from the Chinese Loess Plateau. Quaternary International 286, 45–55.
Xu, H.Y., Chang, F.M., Luo, Y.L.*, Sun, X.J., 2009. Palaeoenvironmental changes from pollen record in deep sea core PC-1 from northern Okinawa Trough, East China Sea during the past 24 ka. Chinese Science Bulletin 54, 3739–3748.
Fan, J.W., Wei, X.T., Shi, W., Guo, Q.Q., Zhang, S.Q., Xu, H.Y., Song, H.M., Xu, C.X., An, W.L., Jiang, H.C., 2020. Response of tree rings to earthquakes during the past 350 years at Jiuzhaigou in the eastern Tibet. Science of the total Environment 731: 138714.
Zhong, N., Jiang, H.C., Li, H.B., Xu, H.Y., Shi, W., Zhang, S.Q., and Wei, X.T., 2019. Last deglacial soft-sediment deformation at Shawan on the eastern Tibetan Plateau and implications for deformation processes and seismic magnitudes. Acta Geologica Sinica (English Edition) 93(2), 430–450.
Jiang, H.C., Zhong, N., Li, Y.H., Ma, X.L., Xu, H.Y., Shi, W., Zhang, S.Q., Nie, G.Z., 2017. A continuous 13.3-ka record of seismogenic dust events in lacustrine sediments in the eastern Tibetan Plateau. Scientific Reports 7:15686.
Zhong, N., Song, X.S., Xu, H.Y., Jiang, H.C., 2017. Influence of a tectonically active mountain belt on its foreland basin: Evidence from detrital zircon dating of bedrocks and sediments from the eastern Tibetan Plateau and Sichuan Basin, SW China. Journal of Asian Earth Sciences 146 251–264.
Jiang, H.C., Zhong, N., Li, Y.H., Xu, H.Y., Yang, H.L., Peng, X.P., 2016. Soft sediment deformation structures in the Lixian lacustrine sediments, eastern Tibetan Plateau and implications for postglacial seismic activity. Sedimentary Geology 344, 123–134.
Jiang, H., Guo, G.X., Cai, X.M., Thompson, J., Xu, H.Y., Zhong, N., 2016. Geochemical evidence of windblown origin of the Late Cenozoic lacustrine sediments in Beijing and implications for weathering and climate change. Palaeogeography, Palaeoclimatology, Palaeoecology 446, 32–43.
Jiang, H., Shevenell, A., Yu, S., Xu, H., Mao, X., 2015. Decadal- to centennial-scale East Asian summer monsoon variability during the Medieval Climate Anomaly reconstructed from an eastern Tibet lacustrine sequence. Journal of Paleolimnology 54(2/3) 205–222.
Jiang, H., Mao, X., Xu, H., Yang, H., Ma, X., Zhong, N., Li, Y., 2014. Provenance and earthquake signature of the last deglacial Xinmocun lacustrine sediments at Diexi, East Tibet. Geomorphology 204 518–531.
Jiang, H., Zhong, N., Li, Y., Xu, H.Y., Ma, X., Meng, Y., Mao, X., 2014. Magnetostratigraphy and grain size record of the Xijiadian fluviolacustrine sediments in East China and its implied stepwise enhancement of the westerly circulation during the Eocene period. Journal of Geophysical Research: Solid Earth 119 7442–7457.
Jiang, H., Guo, G.X., Cai, X.M., Xu, H.Y., Ma, X.L., Zhong, N., Li, Y.H., 2013. A pollen record of the Mid-Pleistocene Transition from Beijing, North China. Journal of Quaternary Science 28(7) 720–728.
Ma, X.L., Jiang, H.C., Cheng, J., Xu, H.Y., 2012. Spatiotemporal evolution of Paleogene palynoflora in China and its implication for development of the extensional basins in East China. Review of Palaeobotany and Palynology 184 24–35.
研究生培養(yǎng)情況:
合作培養(yǎng)博士生一名:時偉(2020年畢業(yè))