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姓名: 唐自华 性别: 男
职称: 副研究员 学位: 博士
电话: 010-82998340 传真: 010-62010846
Email: tangzihua@mail.iggcas.ac.cn 邮编: 100029
地址: 北京朝阳区北土城西路19号,中国科学院地质与地球物理研究所新生代地质与环境研究室
更多信息:
 
简历:

教育背景
2006.09-2010.06  中国科学院地质与地球物理研究所 博士
2003.09-2006.07 中国科学院新疆生态与地理研究所 硕士
1997.09-2000.07 石河子大学 地理系
工作经历
2023.10-2026.4 剑桥李约瑟研究所 访问学者
2014.01-2014.12 利兹大学 访问学者
2013.01-  中国科学院地质与地球物理研究所 副研究员
2010.07-2012.12 中国科学院地质与地球物理研究所  博士后
2000.07-2003.07 新疆石河子市第16中学   地理教师

 
学科类别:
第四纪地质学
 
研究方向:
  1. 干旱区演化
  2. 环境考古
 
职务:
 
社会任职:
 
承担科研项目情况:
  1. 国家自然科学基金青年基金:副特提斯洋退出塔里木盆地的时间,2012-2014,负责
  2. 国家自然科学基金面上项目:副特提斯海对塔里木环境演化的影响,2015-2018,负责 
  3. 国家自然科学基金面上项目:古近纪天山-帕米尔之间海道宽度与海退时间,2017-2020,负责 
  4. 国家自然科学基金面上项目:游牧起源,2021-2024,负责 
  5. 国家自然科学基金面上项目:三星堆祭祀坑亚洲象臼齿的同位素溯源研究,2024-2027,负责
  6. 国家重点研发计划课题:人类陈旧骨骼遗骸同位素地理溯源关键技术研究,2025-2028,负责
 
获奖及荣誉:
 
代表论著:

科技考古

  1. Cheng, W., Xu, W., Yang, J., Wangdue, S., Tong, Y., Jia, N., Tang, Z., Yang, X., 2026. How large was the daily hunting range of prehistoric high-altitude populations in hypoxic environments?—evidence from 87Sr/86Sr, δ13C, and δ18O analyses of archaeological animal teeth. Journal of Archaeological Science 195, 106707.
  2. Sun, Q., Tang, Z., Xing, S., 2026. Strontium isotope microanalysis reveals juvenile-subadult habitat use and movement patterns of Pongo weidenreichi. Prehistoric Archaeology 3, 351-370.
  3. Tang, Z., Chen, X., Dong, N., Cheng, W., Ren, Y., Zhao, D., 2026. High-resolution enamel strontium isotope analysis and early spatial management of pigs at the Mopanshan site. Chinese Science Bulletin 71, 3026-3034.
  4. Yan, M., Liu, J., Qin, C., He, X., Li, X., Yu, J., Mao, R., Han, H., Sun, Z., Wang, C., Xie, Z., Ran, H., Tang, F., Kenoyer, J.M., Tang, Z.*, 2026. Sourcing the origins of carnelian in early Chinese civilizations. Proceedings of the National Academy of Sciences 123, e2524563123. DOI: 10.1073/pnas.2524563123.
  5. Cao, Y., Zhang, M., Cui, L., Wu, C., Huang, K., Li, Y., Wang, X., Liu, L., Tang, Z. *, 2026. A Pilot Study of Isotopic Analysis for the Geographic Provenance of Aged Human Skeletal Remains 同位素在人类陈旧骨骼遗骸地理溯源中的分析初探. Chinese Journal of Forensic Sciences 中国司法鉴定, 85-90.
  6. Cheng, W., Li, Y., Jin, Y., Tang, Z. *, 2025. Determination of strontium isotope ratios in plant samples by wet ashing digestion. Results in Earth Sciences, 100130.
  7. Tang, Z. *, Luo, Y., Zhang, M., Zhang, R., Wang, X., Zhou, M., Zhang, Q., Zhao, J., Chen, X., 2025a. Tracing Individual Migration Patterns: Isotopic Analysis of Human Teeth from the Zhengjiahu Cemetery in Yunmeng. 江汉考古, 92-98.
  8. Wang, X., Cao, D., Gu, W., Wei, Q., Chen, X., Zhang, R., Ding, L., Tang, Z., Teng, X., Wang, T., 2025a. Multi-isotope analysis reveals human millet-based diets and limited mobility in the Central Plains of China ca. 5000 years ago. International Journal of Osteoarchaeology 35, e3407.
  9. Wang, X., Tang, Z. *, Li, Y. *, Zhang, G., Lu, L., Wang, B., Wang, W., Lü, H., Roberts, P., 2025b. Illuminating interaction networks along the Silk Roads: A multi-isotopic analysis of the Zaghunluq Cemetery, southern Xinjiang, China. Antiquity 99, 762-779.
  10. Reheman, K., Yan, M., Qin, C., Li, X., Simayi, M., Tang, Z. *, 2024. A fluorite bead from Bronze Age Tianshanbeilu cemetery, Xinjiang, Northwest China. Heritage Science 12, 256.
  11. Tang, Z. *, Wang, X., Cheng, W., Yang, M., Yang, T., Xi, L., He, W., Luobu, Z., Sharger, W., Hu, S.*, 2024. Enamel strontium isotopes of mammals unearthed from the sites on the northern slope of the Himalayas. Quaternary Sciences 第四纪研究 44, 1522-1531.
  12. Wang, X., Li, K., Wei, D., Zhang, G., Hu, X., Feng, J., Jiao, Y., Xu, B., Qin, X., Oelze, V.M., Tang, Z., 2024. Diet along the eastern Silk Roads: an isotopic case study of ancient humans and livestock from the Han-Jin Dynasties in the Lop Nur region, northwest China. Archaeological and Anthropological Sciences 16, 163. DOI: 10.1007/s12520-024-02068-4.
  13. Li, X., Xue, H., Wu, X., Qin, D., Chen, D., Yuan, J., Tang, Z.*, 2023. Artificial coloration of ancient agate beads: a mineralogical study. Heritage Science 11, 195.
  14. Tang, Z.*, Wang, X., 2023. A score of bioavailable strontium isotope archaeology in China: Retrospective and prospective. Frontiers in Earth Science 10, 1094424.
  15. Kumar, V., Wang, W., Zhang, J., Wang, Y., Ruan, Q., Yu, J., Wu, X., Hu, X., Wu, X., Guo, W., Wang, B., Niyazi, A., Lv, E., Tang, Z., Cao, P., Liu, F., Dai, Q., Yang, R., Feng, X., Ping, W., Zhang, L., Zhang, M., Hou, W., Liu, Y., Bennett, E.A., Fu, Q., 2022. Bronze and Iron Age population movements underlie Xinjiang population history. Science 376, 62-69. DOI: 10.1126/science.abk1534.
  16. Tang, Z.*, Wang, X., Xiao, J., Chen, X., Hu, S., Yang, M., Tian, Y., Yuan, J., 2022. Livestock supply to an imperial sacrificial site of the early Chinese empires evidenced by strontium isotope ratios. Frontiers in Earth Science 10, 971004.
  17. Wang, W., Ding, M., Gardner, J.D., Wang, Y., Miao, B., Guo, W., Wu, X., Ruan, Q., Yu, J., Hu, X., Wang, B., Wu, X., Tang, Z., Niyazi, A., Zhang, J., Chang, X., Tang, Y., Ren, M., Cao, P., Liu, F., Dai, Q., Feng, X., Yang, R., Zhang, M., Wang, T., Ping, W., Hou, W., Li, W., Ma, J., Kumar, V., Fu, Q., 2021a. Ancient Xinjiang mitogenomes reveal intense admixture with high genetic diversity. Science Advances 7, eabd6690. DOI: 10.1126/sciadv.abd6690.
  18. Wang, X., Roberts, P., Tang, Z., Yang, S., Storozum, M., Gross, M., Fernandes, R., 2021b. The circulation of ancient animal resources across the Yellow River Basin: A preliminary Bayesian re-evaluation of Sr isotope data from the early neolithic to the Western Zhou Dynasty. Frontiers in Ecology and Evolution 9, 583301.
  19. Wang, X., Shen, H., Wei, D., Hu, X., Xu, B., Qin, X., Tang, Z.*, 2020. Human mobility in the Lop Nur region during the Han-Jin Dynasties: A multi-approach study. Archaeological and Anthropological Sciences 12, 20.
  20. Wang, X.*, Tang, Z.*, 2020. The first large-scale bioavailable Sr isotope map of China and its implication for provenance studies. Earth-Science Reviews 210, 103353.
  21. Li, K., Qin, X.-G., Zhang, L., Wang, S.-Z., Xu, B., Mu, G., Wu, Y., Tian, X., Wei, D., Gu, Z., Wang, C.-X., Zhang, J.-P., Xu, D.-K., Tang, Z., Lin, Y.-C., Li, W., Liu, J., Jiao, Y., 2019. Oasis landscape of the ancient Loulan on the west bank of Lake Lop Nur, Northwest China, inferred from vegetation utilization for architecture. The Holocene 29, 1030-1044.
  22. Ren, M., Tang, Z., Wu, X., Spengler, R., Jiang, H., Yang, Y., Boivin, N., 2019. The origins of cannabis smoking: Chemical residue evidence from the first millennium BCE in the Pamirs. Science Advances 5, eaaw1391.
  23. Wang, X., Tang, Z.*, 2019. High spatial resolution isotope analysis of enamel based on incremental features. Quaternary Sciences 第四纪研究 39, 228-239.
  24. Wang, X., Tang, Z.*, Dong, X., 2018. Distribution of strontium isotopes in river waters across the Tarim Basin: a map for migration studies. Journal of the Geological Society 175, 967-973.
  25. Shen, H., Li, X., Zhou, X., Wu, X., Tang, Z., Sun, N., 2017. Wood types and environment of the Tashkurgan region, Xinjiang, at 2500 cal yr BP, based on a record from the Ji’erzankale Necropolis. Review of Palaeobotany and Palynology 238, 7-14.
  26. Tang, Z., Du, S., Liu, F., 2017. Late Pleistocene changes in vegetation and the associated human activity at Beiyao Site, Central China. Review of Palaeobotany and Palynology 244, 107-112.
  27. Wang, X., Tang, Z.*, Wu, J., Wu, X., Wu, Y., Zhou, X., 2016. Strontium isotope evidence for a highly mobile population on the Pamir Plateau 2500 years ago. Scientific Reports 6.
  28. Shen, H., Wu, X., Tang, Z., Zhou, X., Sun, N., Li, X., 2015. Wood usage and fire veneration in the Pamir, Xinjiang, 2500 yr BP. PLoS One 10, e0134847.
  29. Wu, X., Tang, Z., 2015. Jirzankal Cemetery covered with rows of black-and-white stones: key excavations and primary research. Eurasian Studies 4, 5-82.
  30. Tang, Z.*, Chen, D., Wu, X., Mu, G., 2013. Redistribution of prehistoric Tarim people in response to climate change. Quaternary International 308, 36-41.

全球变化

  1. Guo, L., Zhang, Q., Yang, S., Xiong, S., Tang, Z., Liu, Z., Cui, J., Cui, L., 2026. Eastward radiation of C4 crops from the Hongshan culture core region initiated around 6 ka. Palaeogeography, Palaeoclimatology, Palaeoecology, 114113.
  2. Yang, S., Chen, L., Ji, W., Su, T., Jiang, S., Chen, Z., Huang, X., Guo, L., Wang, Y., Jiang, H., Xi, D., Tang, Z., Zhang, S., Sun, M., Wu, F., 2026. Hothouse Earth during the Cretaceous‒Paleogene period: an overview 白垩纪-古近纪热室地球. Chinese Science Bulletin 71, 607-621.
  3. Chen, Z., Li, C., Yang, S., Lü, P., Tang, Z., Sun, J., Ni, X., Fang, L., Ding, Z., 2025a. Two sites in East Asia add to spatiotemporal heterogeneity of wildfire activity across the Paleocene–Eocene Thermal Maximum. Geophysical Research Letters 52, e2024GL113829.
  4. Chen, Z., Lü, P., Tang, Z., Yang, S., Wang, X., Cui, L., Fang, L., Ding, Z., 2025b. Wetland methane feedback during the early Eocene hyperthermals. Geology 53, 404-408.
  5. Guo, L., Zhang, Q., Xue, H., Xiong, S., Yang, S., Tang, Z., Cui, L., Cui, J., Wang, Y., Zhang, S., 2025. Globally synchronous acceleration of soil formation approximately 12,000 years ago. Global and Planetary Change, 105264.
  6. Lü, P., Chen, Z., Lu, Y., Yang, S., Tang, Z., Ding, Z., 2025. Vegetation dynamics and carbon isotope responses to the early Eocene hyperthermals. Palaeogeography, Palaeoclimatology, Palaeoecology, 113238.
  7. Xia, J., Li, K., Liao, M., Tang, Z., Yang, D., Ni, J., 2025. Dramatic biome changes in China through the Cenozoic Era: Modeling the combined effects of climate, CO2 concentration, and topography on long-term vegetation dynamics. Palaeogeography, Palaeoclimatology, Palaeoecology, 113297.
  8. Jia, L., Deng, M., Yang, Y., Su, T., Liu, J., Huang, J., Tang, Z., Li, S., Zhou, Z., 2024. Plant diversity in response to global warming during the Paleocene-Eocene Thermal Maximum (PETM): Evidence from fossils and modeling. Quaternary Sciences 第四纪研究 44, 1235-1249.
  9. Liu, Y., Liu, S., Piedrahita, V.A., Liu, P., He, S., Pan, H., Dong, Y., Roberts, A.P., Feng, L., Tang, Z., 2024. Insights into a correlation between magnetotactic bacteria and polymetallic nodule distribution in the eastern central Pacific Ocean. Journal of Geophysical Research: Solid Earth 129, e2024JB029062.
  10. Xue, H., Song, S., Qiu, M., Huang, X., Yang, S., Tang, Z.*, 2024. Identification of climatic tipping points and transitions in Chinese loess grain-size records utilizing nonlinear time series analysis. Quaternary International 702, 24-33.
  11. Yang, S., Chen, Z., Huang, X., Tang, Z., Zhang, S., Jiang, W., Ding, Z., 2024a. The impact of global warming on hydrological cycle: Retrospect and prospect. Quaternary Sciences 第四纪研究 44, 1079-1092.
  12. Yang, S., Wang, Y., Huang, X., Sun, M., Han, J., Wang, X., Chen, Z., Zhang, S., Jiang, W., Tang, Z., 2024b. Pliocene CO2 rise due to sea-level fall as a mechanism for the delayed ice age. Global and Planetary Change 236, 104431.
  13. Song, S., Tang, Z.*, Xi, D.*, Yang, S., 2023. Palynology-based reconstructions for climatic patterns in the Eocene–Oligocene of eastern Asia: Implications of the monsoonal circulation history. Journal of Asian Earth Sciences 257, 105836.
  14. Wang, H., Yang, S., Wang, Y., Gu, Z., Xiong, S., Huang, X., Sun, M., Zhang, S., Guo, L., Cui, J., Tang, Z., Ding, Z., 2022a. Rates and causes of black soil erosion in Northeast China. CATENA 214, 106250. DOI: 10.1016/j.catena.2022.106250.
  15. Wang, X., Xi, D., Watkins, D.K., Self-Trail, J.M., Tang, Z., Cao, W., Jiang, T., Kamran, M., Wan, X., 2022b. Regression of the Tethys Sea (central Asia) during middle to late Eocene: Evidence from calcareous nannofossils of western Tarim Basin, NW China. Marine Micropaleontology 171, 102085.
  16. Huang, X., Yang, S., Haywood, A., Jiang, D., Wang, Y., Sun, M., Tang, Z., Ding, Z., 2021. Warming-induced northwestward migration of the Asian summer monsoon in the geological past: Evidence from climate simulations and geological reconstructions. Journal of Geophysical Research: Atmospheres 126, e2021JD035190.
  17. Chen, Z., Dong, X., Wang, X., Tang, Z., Yang, S., Zhu, M., Ding, Z., 2020. Spatial change of precipitation in response to the Paleocene-Eocene Thermal Maximum warming in China. Global and Planetary Change 194, 103313.
  18. Xi, D., Tang, Z., Wang, X., Qin, Z., Cao, W., Jiang, T., Wu, B., Li, Y., Zhang, Y., Jiang, W., 2020. The Cretaceous-Paleogene marine stratigraphic framework that records significant geological events in the western Tarim Basin. Earth Science Frontiers 27, 165.
  19. Zoura, D., Haywood, A., Hill, D., Dolan, A., Tang, Z., 2020. The role of Central Asian uplift in East Asian Monsoon circulation and its palaeoclimate implication. Global and Planetary Change 184, 103073.
  20. Huang, X., Jiang, D., Dong, X., Yang, S., Su, B., Li, X., Tang, Z., Wang, Y., 2019. Northwestward migration of the northern edge of the East Asian summer monsoon during the mid-Pliocene warm period: Simulations and reconstructions. Journal of Geophysical Research: Atmospheres 124, 1392-1404.
  21. Wu, J., Guo, L., Xiong, S., Wang, S., Tang, Z., Jin, C., Yang, X., Gu, N., Li, C., Cui, J., 2019. New magnetic constraints on early-middle Miocene uplift of the Liupan Shan, northeastern margin of the Tibetan Plateau. Geochemistry, Geophysics, Geosystems 20, 1340-1357.
  22. Zoura, D., Hill, D., Dolan, A., Hunter, S., Tang, Z., Haywood, A., 2019a. Atmospheric carbon dioxide, ice sheet and topographic constraints on palaeo moisture availability in Asia. Earth and Planetary Science Letters 519, 12-27.
  23. Lin, Y., Mu, G., Qin, X., Tang, Z., Li, W., Xu, L., 2018. Influence of Surface Weathering on Yardang Landform Development in the Loulan Area. 干旱区地理 41, 1278-1284.
  24. Ai, K., Ji, J., Wang, G., Zhang, K., Tang, Z., 2017. Late Cenozoic magnetostratigraphy and anisotropy of magnetic susceptibility of the Baiyanghe section from the Hoxtolgay Basin: Implications for the uplift of the West Junggar Mt Range, NW China. Journal of Asian Earth Sciences 138, 246-257.
  25. Chen, Z., Ding, Z., Tang, Z., Yang, S., Wang, X., Cui, L., 2017. Paleoweathering and paleoenvironmental change recorded in lacustrine sediments of the early to middle Eocene in Fushun Basin, Northeast China. Geochemistry, Geophysics, Geosystems 18, 41-51.
  26. Tang, Z.*, Yang, S., Qiao, Q., Yin, F., Huang, B., Ding, Z., 2016. A high-resolution geochemical record from the Kuche depression: constraints on early Miocene uplift of South Tian Shan. Palaeogeography, Palaeoclimatology, Palaeoecology 446, 1-10.
  27. Tang, Z.*, Dong, X., Wang, X., Ding, Z., 2015. Oligocene-Miocene magnetostratigraphy and magnetic anisotropy of the Baxbulak section from the Pamir-Tian Shan convergence zone. Geochemistry, Geophysics, Geosystems 16, 3575-3592.
  28. Chen, Z., Ding, Z., Tang, Z., Wang, X., Yang, S., 2014a. Early Eocene carbon isotope excursions: Evidence from the terrestrial coal seam in the Fushun Basin, Northeast China. Geophysical Research Letters 41, 3559-3564.
  29. Chen, Z., Wang, X., Hu, J., Yang, S., Zhu, M., Dong, X., Tang, Z., Peng, P.a., Ding, Z., 2014b. Structure of the carbon isotope excursion in a high-resolution lacustrine Paleocene–Eocene Thermal Maximum record from central China. Earth and Planetary Science Letters 408, 331-340.
  30. Tang, Z.-H.*, Ding, Z.-L., 2013. A palynological insight into the Miocene aridification in the Eurasian interior. Palaeoworld 22, 77-85.
  31. Tang, Z.*, Huang, B., Dong, X., Ji, J., Ding, Z., 2012. Anisotropy of magnetic susceptibility of the Jingou River section: Implications for late Cenozoic uplift of the Tian Shan. Geochemistry, Geophysics, Geosystems 13.
  32. Yang, S., Ding, Z., Wang, X., Tang, Z., Gu, Z., 2012. Negative δ18O-δ13C relationship of pedogenic carbonate from northern China indicates a strong response of C3/C4 biomass to the seasonality of Asian monsoon precipitation. Palaeogeography, Palaeoclimatology, Palaeoecology 317, 32-40.
  33. Tang, Z.*, Ding, Z., White, P.D., Dong, X., Ji, J., Jiang, H., Luo, P., Wang, X., 2011. Late Cenozoic central Asian drying inferred from a palynological record from the northern Tian Shan. Earth and Planetary Science Letters 302, 439-447.
  34. Feng, S., Tang, Z., Wang, X., Yang, S., 2010. Origin and age of “red clay” sediment at Jungar Banner, Inner Mongolia, and its palaeoclimatic implications. Quaternary Sciences 第四纪研究 30, 911-918.
  35. Zhu, M., Ding, Z., Wang, X., Chen, Z., Jiang, H., Dong, X., Ji, J., Tang, Z., Luo, P., 2010. High-resolution carbon isotope record for the Paleocene-Eocene thermal maximum from the Nanyang Basin, Central China. Chinese Science Bulletin 55, 3606-3611.
  36. Tang, Z.*, Mu, G., Chen, D., 2009a. Palaeoenvironment of mid- to late Holocene loess deposit of the southern margin of the Tarim Basin, NW China. Environmental Geology 58, 1703-1711.
  37. Jiang, H., Ji, J., Gao, L., Tang, Z., Ding, Z., 2008. Cooling-driven climate change at 12–11 Ma: Multiproxy records from a long fluviolacustrine sequence at Guyuan, Ningxia, China. Palaeogeography, Palaeoclimatology, Palaeoecology 265, 148-158.
  38. Tang, Z., Mu, G., Chen, D., Wu, X., Ali, A., 2007. Eolian deposits in northern slope of Kunlun Mts and their palaeoenvironmental implications during the past 5000 years. Quaternary Sciences 第四纪研究 27, 598-606.
  39. Qian, Y., Zhang, L., Tang, Z., Jiang, J., Tang, L., 2006. North-south heterogeneity of soil physical-chemical properties for Gurbantunggut Desert. Arid Land Geography干旱区地理 29, 784-789.
  40. Tang, Z., Mu, G., 2006. Possible provenances and their change of aeolian deposits in north China in late Cenozoic. Arid Land Geography干旱区地理 29, 101-108.
 

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