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姓名 杨石岭 性别:
职称 研究员 学位 博士
电话 010-82998526 传真: 010-62010846
Email: yangsl@mail.iggcas.ac.cn 邮编: 100029
地址 北京朝阳区北土城西路19号,中科院地质与地球物理研究所
更多信息:
 
简历:

  杨石岭,研究员,博士生导师,国家杰出青年科学基金获得者。1974年出生于陕西子长。1995年毕业于西北大学地质学系,1998年于中国科学院地质研究所获硕士学位,2001年于中国科学院地质与地球物理研究所获博士学位。
  长期从事风尘沉积与古环境研究。重建了典型冷暖时期古沙漠边界,并估算了夏季风雨带的进退幅度;构建了成壤碳酸盐形成的概念模型,发现黄土高原 C3/C4 植被变化的关键影响因素是季风降水的季节配置而非降雨量;通过比较典型冷暖时期 C3/C4 植被的空间分布,提出全球变暖将导致季风雨带向北推进,从而逆转目前的北方干旱化趋势;通过沉积学研究,揭示了东北黑土的风成成因,并进一步发现黑土区西部以风力侵蚀为主,东部则以水力侵蚀为主。
  在PNAS、GCA、EPSL、《中国科学》、《科学通报》等国内外学术刊物发表论文130余篇,SCI收录100篇。曾主持多项国家自然科学基金和中科院项目。2009–2014年任国务院学位委员会第六届学科评议组(地球物理学、地质学组)秘书,2019–2023年任国际第四纪联合会(INQUA)黄土和土壤地层工作组主席,现任中国第四纪科学研究会第十一届理事会副理事长兼秘书长、国际过去全球变化计划(PAGES)联合主席、《第四纪研究》副主编、《Climate of the Past》编委。2011年获第二届刘东生青年地球科学家奖。

教育及工作经历:

  • 1995年7月毕业于西北大学地质学系,获学士学位。
  • 1998年7月毕业于中国科学院地质研究所,获硕士学位。
  • 2001年7月毕业于中国科学院地质与地球物理研究所,获博士学位。
  • 2001.08-2004.12 中国科学院地质与地球物理研究所助理研究员。
  • 2004.12-2010.12 中国科学院地质与地球物理研究所副研究员。
  • 2010.12至今 中国科学院地质与地球物理研究所研究员。
  • 2005.04-2006.04 美国亚利桑那大学地球科学系博士后访问学者。
 
学科类别:
地貌学与第四纪地质学
 
研究方向:

风尘沉积与古气候、中生代-新生代环境演化、深时极热事件与碳循环

 
职务:
 
社会任职:
 
承担科研项目情况:

主持科研项目:

  1. 国家自然科学基金“中亚黄土记录的第四纪古气候演化及其与中国黄土的对比”
  2. 国家自然科学基金“黄土中成壤碳酸盐的元素地球化学组成与干旱程度的关系”
  3. 国家自然科学基金“黄土高原上新世红粘土记录的东亚夏季风空间格局”
  4. 国家杰出青年科学基金“风尘沉积与古环境”
  5. 中科院知识创新工程重要方向项目“增温过程和高温期黄土高原生态环境格局的历史相似型研究”
  6. 中科院战略先导专项(B 类)项目“环境演变与生物事件的关联机制”
  7. 国家重点研发计划项目“白垩纪-古近纪深部碳循环与热室地球演变”
 
获奖及荣誉:

2011年获第二届刘东生青年地球科学家奖

 
代表论著:
  1. Disheng Zhou, Yu-Yan Sara Zhao, Yuhong Yang, Chao Qi, Erwin Dehouck, Junfeng Chen, Huapei Wang, Junxiang Miao, Honglei Lin, Junhu Wang, Yanxue Wu, Shiling Yang, Xiongyao Li, Jianzhong Liu, 2026. Fe-rich olivine weathering under a CO2 atmosphere: Implications for iron oxidation and phyllosilicate formation on early Mars. Geoscience Frontiers, 17, 102394.https://doi.org/10.1016/j.gsf.2026.102394
  2. Xiaofang Huang, Shiling Yang*, Alan Haywood, Julia Tindall, Minmin Sun, Xiaoxiao Yang, Hongmei Li, Wenying Jiang, 2026. Weakened El Niño/La Niña influence on the East Asian summer monsoon under Pliocene warmth: Insights from model sensitivity experiments. Journal of Geophysical Research: Atmospheres, 131, e2026JD046302.https://doi.org/10.1029/2026JD046302
  3. Wenying Jiang, Xiaoxiao Yang, Xiaofang Huang, Lingyu Tang, Enlou Zhang, Shiling Yang, 2026. Large-scale vegetation deterioration in response to mid-Holocene cooling across China's Hengduan Mountains. Global and Planetary Change, 262, 105440.https://doi.org/10.1016/j.gloplacha.2026.105440
  4. 陈林,姜禾禾,王佳敏,张少华,王建刚,纪伟强,周超,邱启佳,司润港,王子铭,杨石岭, 2026.低纬度沉积物俯冲与深部碳循环.科学通报, 71, 622–636.
  5. 杨石岭*,陈林,纪伟强,苏涛,姜仕军,陈祚伶,黄晓芳,郭利成,王永达,姜禾禾,席党鹏,唐自华,张师豪,孙敏敏,吴福元, 2026.白垩纪-古近纪热室地球.科学通报, 71, 607–621.
  6. Licheng Guo, Qiaowen Zhang, Haozhong Xue, Shangfa Xiong, Shiling Yang, Zihua Tang, Linlin Cui, Jingyi Cui, Yongda Wang, Shihao Zhang, 2026. Globally synchronous acceleration of soil formation approximately 12,000 years ago. Global and Planetary Change, 257, 105264.https://doi.org/10.1029/2025GL118302
  7. Yuqi Wang, Yong Wei, Feng Shi, Xichen Li, Zhonghua Yao, Limei Yan, Yaochen Yue, Shiling Yang, Wei Lin, Yongxin Pan, Zhengtang Guo, 2025. Cascading impacts of the Maunder Minimum on rainfall and society in the Joseon dynasty. National Science Review, 12, nwaf283.https://doi.org/10.1093/nsr/nwaf283
  8. Jiabin Wu, Licheng Guo, Shangfa Xiong, Shiling Yang, Xiaoxiao Yang, Yu Zhang, Man Zhang, Qiaowen Zhang, Jingyi Cui, Wenying Jiang,Bin Zhang,2025.Enhancedcontinentalweatheringcontributed to thetermination of the Middle Mioceneclimaticoptimum. Geophysical Research Letters, 52,e2025GL118302.https://doi.org/10.1029/2025GL118302
  9. Yuqi Wang, Yong Wei, Feng Shi, Zhonghua Yao, Shiling Yang, Wei Lin, Limei Yan, Fei He, Dabang Jiang, Xinan Yue, Kai Fan, Si Chen, Yaochen Yue,2025. Assessinghistoricalsnowfallpatterns in Seoul from 1625 to 1907 CE inrelation to the Grand Solar Minima. Earth and Planetary Physics,9(4),904–914.https://doi.org/10.26464/epp2025022
  10. 张少华,纪伟强,姜禾禾,陈厚彬,杨石岭, 2025.新特提斯造山带大陆弧岩浆活动对白垩纪-古近纪热室地球的驱动效应.岩石学报, 41(10): 3517–3530.
  11. 黎红梅,杨石岭*, 2025.白垩纪-古近纪热室气候与火事件.岩石学报, 41(10): 3562–3577.
  12. Peizong Lü, Zuoling Chen, Yongli Lu, Shiling Yang, Zihua Tang, Zhongli Ding, 2025. Vegetation dynamics and carbon isotope responses to the Early Eocene hyperthermals. Palaeogeography, Palaeoclimatology, Palaeoecology, 678, 113238.https://doi.org/10.1016/j.palaeo.2025.113238
  13. Xuewu Fu*, Hui Zhang, Jen-How Huang, Kaihui Tang, Longyu Jia, Shiling Yang*, Jeroen E. Sonke*, Xinbin Feng, 2025. Coupled precipitation-vegetation changes affect Hg accumulation and isotope composition in loess records. Environmental Science and Technology, 59, 18190–18202.https://doi.org/10.1021/acs.est.5c05528
  14. Zuoling Chen, Peizong Lü, Shiling Yang, Jimin Sun, Xijun Ni, Chenyan Li, Licheng Guo, Zhongli Ding, 2025. Extreme warming intensified lacustrine deoxygenation and methane cycling during the Paleocene-Eocene Thermal Maximum. Communications Earth & Environment, 6, 592.https://doi.org/10.1038/s43247-025-02597-3
  15. Shijun Jiang, Ying Cui, Yasu Wang, Maurizia De Palma, B. David A. Naafs, Jingxin Jiang, Xiumian Hu, Huaichun Wu, Runjian Chu, Yangguang Gu, Jiuyuan Wang, Yizhou Huang, Miquela Ingalls, Timothy J. Bralower, Shiling Yang, James C. Zachos, Andy Ridgwell, 2025. Millennial-timescale thermogenic CO2 release preceding the Paleocene-Eocene Thermal Maximum. Nature Communications, 16, 5375, https://doi.org/10.1038/s41467-025-60939-3
  16. Junjie Xu, Jahandar Ramezani, Huaichun Wu, Qiang Fang, Jinghui Guo, Shiling Yang, Shihong Zhang, Tianshui Yang, Zhuyin Chu, 2025. High-precision U-Pb geochronology of the Guttenberg Carbon Isotope Excursion (GICE) recorded in the Tarim Basin, NW China. Palaeogeography, Palaeoclimatology, Palaeoecology, 675, 113083.https://doi.org/10.1016/j.palaeo.2025.113083
  17. Minmin Sun, Wenying Jiang*, Jie Lin, Xiaofang Huang, Xiaoxiao Yang, Shiling Yang*, 2025. Interhemispheric temperature gradient was the primary driver of Indian monsoon intensity since the Last Glacial Maximum. Journal of Geophysical Research: Atmospheres, 130, e2024JD043119. https://doi.org/10.1029/2024JD043119
  18. Zuoling Chen, Peizong Lü, Zihua Tang, Shiling Yang, Xu Wang, Linlin Cui, Linhao Fang, Zhongli Ding, 2025. Wetland methane feedback during the early Eocene hyperthermals. Geology, 53, 404–408.https://doi.org/10.1130/G52899.1
  19. Zuoling Chen, Chenyan Li, Shiling Yang, Peizong Lü, Zihua Tang, Jimin Sun, Xijun Ni, Linhao Fang, Zhongli Ding, 2025. Two sites in East Asia add to spatiotemporal heterogeneity of wildfire activity across the Paleocene–Eocene Thermal Maximum. Geophysical Research Letters, 52, e2024GL113829.https://doi.org/10.1029/2024GL113829
  20. 郭利成,杨石岭*,熊尚发,王永达,黄晓芳,陈祚伶, 2024.热室地球陆地生态系统磷风化及其对碳循环的影响.中国基础科学, 26(6), 12–18.
  21. 杨石岭*,陈祚伶,黄晓芳,唐自华,张师豪,姜文英,丁仲礼, 2024.全球变暖对水循环的影响:回顾与展望.第四纪研究, 44(5): 1079–1092.
  22. 潘高超,张师豪,杨石岭*, 2024.三原黄土中支链甘油单烷基甘油四醚类化合物的检出及其环境指示意义.第四纪研究, 44(5): 1308–1321.
  23. Shiling Yang*, R. J. Schaetzl, T. Stevens, 2024. Introduction to special issue: loess environments: generation, transport, and deposition. Quaternary Research, 120, 1–2.https://doi.org/10.1017/qua.2024.28
  24. Licheng Guo, Shangfa Xiong, Benjamin J. W. Mills, Terry Isson, Shiling Yang, Jingyi Cui, Yongda Wang, Lei Jiang, Zhifang Xu, Chunfang Cai, Yinan Deng, Guangyi Wei, Mingyu Zhao, 2024. Acceleration of phosphorus weathering under warm climates. Science Advances, 10, eadm7773,https://doi.org/10.1126/sciadv.adm7773
  25. Haozhong Xue, Song Song, Mengfan Qiu, Xiaofang Huang, Shiling Yang, Zihua Tang, 2024. Identification of climatic tipping points and transitions in Chinese loess grain-size records utilizing nonlinear time series analysis. Quaternary International, 702, 24–33,https://doi.org/10.1016/j.quaint.2024.06.011
  26. Shiling Yang*, Yongda Wang, Xiaofang Huang, Minmin Sun, Jingtai Han, Xu Wang, Zuoling Chen, Shihao Zhang, Wenying Jiang, Zihua Tang, Zhaoyan Gu, Shangfa Xiong, Zhongli Ding, 2024. Pliocene CO2 rise due to sea-level fall as a mechanism for the delayed ice age. Global and Planetary Change, 236, 104431.https://doi.org/10.1016/j.gloplacha.2024.104431
  27. Shihao Zhang, Shiling Yang*, Shangfa Xiong, Licheng Guo, Yongda Wang, Xiaofang Huang, Minmin Sun, Zhongli Ding, 2024. Origin and depositional background of the Holocene black soil in Northeast China: Evidence from grain-size analysis and optically stimulated luminescence dating. Catena, 239, 107963.https://doi.org/10.1016/j.catena.2024.107963
  28. Jingyi Cui, Licheng Guo, Shangfa Xiong, Shiling Yang, Yongda Wang, Shihao Zhang, Hui Sun, 2024. Soil organic carbon induces a decrease in erodibility of black soil with loess parent materials in northeast China. Quaternary Research, 120, 83–92. https://doi.org/10.1017/qua.2023.58
  29. 王永达,杨石岭*,沈冰,朱茂炎,陈祚伶,纪伟强,黄晓芳,孙敏敏,张师豪, 2024.地球深部过程与极热和极冷事件.科学通报, 69, 215–229.
  30. 沈树忠,张飞飞,王文倩,王向东,樊隽轩,陈吉涛,王博,曹剑,杨石岭,张华,李高军,邓涛,李献华,陈骏, 2024.深时重大生物和气候事件与全球变化:进展与挑战.科学通报, 69, 268–285.
  31. Wubiao Li, Wenying Jiang, Shiling Yang, Jie Lin, Yujie Wang, 2024. Holocene hydroclimate and dust activity, as reconstructed from the sediments of Lake Bayanchagan, on the northern margin of the East Asian summer monsoon. Quaternary Research, 120, 62–70.https://doi.org/10.1017/qua.2023.57
  32. Xiaofang Huang, Shiling Yang*, Wenying Jiang, Minghu Ding, Yongda Wang, Minmin Sun, Shihao Zhang, 2023. Enhanced east–west climatic contrast in northern China under past global warming: Evidence from paleovegetation records and numerical simulations. Quaternary Science Reviews, 320, 108353.https://doi.org/10.1016/j.quascirev.2023.108353
  33. Song Song, Zihua Tang, Dangpeng Xi, Shiling Yang, 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.https://doi.org/10.1016/j.jseaes.2023.105836
  34. Shihao Zhang, Shiling Yang*, Wenying Jiang, Xiaofang Huang, Yongda Wang, Minmin Sun, Licheng Guo, Xiaoxiao Yang, Zhongli Ding, 2023. BrGDGTs-based temperature and hydrological reconstruction from loess-paleosol deposits in the Eastern European Plain since 200 ka. Quaternary Science Reviews, 316, 108275.https://doi.org/10.1016/j.quascirev.2023.108275
  35. Xiaofang Huang, Shiling Yang*, Alan Haywood, Julia Tindall, Dabang Jiang, Yongda Wang, Minmin Sun, Shihao Zhang, 2023. Response of East Asian summer monsoon to precession change during the mid-Pliocene warm period. Quaternary International, 667, 61–67.https://doi.org/10.1016/j.quaint.2023.07.004
  36. Zuoling Chen, Zhongli Ding, Jimin Sun, Shiling Yang, Xijun Ni, Xu Wang, Yongli Wang, Jiangyong Zhang, Wei He, 2023. Freshwater ecosystem collapse and mass mortalities at the Paleocene-Eocene thermal maximum. Global and Planetary Change, 227, 104175.https://doi.org/10.1016/j.gloplacha.2023.104175
  37. Zuoling Chen, Zhongli Ding, Shiling Yang, Jimin Sun, Min Zhu, Yilin Xiao, Fengtai Tong, Yao Liang, 2023. Strong coupling between carbon cycle, climate, and weathering during the Paleocene-Eocene Thermal Maximum. Geophysical Research Letters, 50, e2023GL102897.https://doi.org/10.1029/2023GL102897
  38. Xiaofang Huang*, Shiling Yang*, Alan Haywood, Julia Tindall, Dabang Jiang, Yongda Wang, Minmin Sun, Shihao Zhang, 2023. How changing the height of the Antarctic ice sheet affects global climate: a mid-Pliocene case study. Climate of the Past, 19, 731–745.
  39. Licheng Guo, Shangfa Xiong, Yulu Chen, Jingyi Cui, Shiling Yang, Heng Wang, Yongda Wang, Zhongli Ding, 2023. Total organic carbon content as an early warning indicator of soil degradation. Science Bulletin, 68, 150–153.https://doi.org/10.1016/j.scib.2023.01.012
  40. Xiaofang Huang*, Shiling Yang*, Alan Haywood, Julia Tindall, Dabang Jiang, Yongda Wang, Minmin Sun, Shihao Zhang, Zhongli Ding, 2023. Simulations reveal causes of inter-regional differences in Pliocene climatic periodicity. Science Bulletin, 68, 146-149.https://doi.org/10.1016/j.scib.2022.12.031
  41. Xiao-Wen Yu, Yu-Yan Sara Zhao, Yanxue Wu, Chao Qi, Dongdong Li, Honglei Lin, Shiling Yang, Jianzhong Liu, Xiongyao Li, 2023. Cryogenic sulfuric weathering and challenges for preserving iron-rich olivine on cold and icy Mars. Journal of Geophysical Research: Planets, 128, e2022JE007593.https://doi.org/10.1029/2022JE007593
  42. Jie Lin, Wenying Jiang, Luo Wang, Enlou Zhang, Lingyu Tang, Xiaoxiao Yang, Guoqiang Chu, Shiling Yang, Jule Xiao, 2022. Spatially diverse hydroclimatic response to the 4.2 ka event in the Asian monsoon region. Quaternary Science Reviews, 296, 107809.https://doi.org/10.1016/j.quascirev.2022.107809
  43. Qun Sui, Yi Lin, Stephen McLoughlin, Shi-Ling Yang, Zhuo Feng, 2022. A new lycophyte megaspore,Paxillitriletes permicus, from the upper Permian of Southwest China. Review of Palaeobotany and Palynology, 304, 104722.https://doi.org/10.1016/j.revpalbo.2022.104722
  44. Heng Wang, Shiling Yang*, Yongda Wang, Zhaoyan Gu, Shangfa Xiong, Xiaofang Huang, Minmin Sun, Shihao Zhang, Licheng Guo, Jingyi Cui, Zihua Tang, Zhongli Ding, 2022. Rates and causes of black soil erosion in Northeast China. Catena, 214, 106250.https://doi.org/10.1016/j.catena.2022.106250
  45. Yongda Wang, Shiling Yang*, Shihao Zhang, Xiaofang Huang, Minmin Sun, Zhongli Ding, 2022. Early–middle Permian drying in the North China Block induced by large igneous provinces. Palaeogeography, Palaeoclimatology, Palaeoecology, 592, 110922.https://doi.org/10.1016/j.palaeo.2022.110922
  46. Jiyuan Yang, Haibo Wei, Xudong Gou, Shi-Ling Yang, Zhuo Feng, 2022. Leaf anatomy ofNingxiaites specialisfrom the Lopingian of Northwest China. Review of Palaeobotany and Palynology, 300, 104632. https://doi.org/10.1016/j.revpalbo.2022.104632
  47. Minmin Sun, Shiling Yang*, Jule Xiao, Yongda Wang, Xiaofang Huang, Shihao Zhang, Xiaoxiao Yang, Wenying Jiang, Zhongli Ding, 2022. BrGDGTs-based temperature and hydrological reconstruction from fluvio-lacustrine sediments in the monsoonal North China Plain since 31 kyr BP. Quaternary Science Reviews, 277, 107268. https://doi.org/10.1016/j.quascirev.2021.107268
  48. Xiaofang Huang, Shiling Yang*, Alan Haywood, Dabang Jiang, Yongda Wang, Minmin Sun, Zihua Tang, Zhongli Ding, 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.https://doi.org/10.1029/2021JD035190
  49. Yu Zhou, Yun Guo, Josef Pšenička, Jiří Bek, Shi-Ling Yang, Zhuo Feng, 2021. A new marattialean fern,Pectinangium xuanweiensesp. nov., from the Lopingian of Southwest China. Review of Palaeobotany and Palynology, 295, 104500. https://doi.org/10.1016/j.revpalbo.2021.104500
  50. Yun Guo, Yu Zhou, Jiří Bek, Shi-Ling Yang, Zhuo Feng, 2021. Qasimia yunnanicasp. nov., a marattialean fern with bivalvate synangia from the Lopingian of Southwest China. Review of Palaeobotany and Palynology, 293, 104497. https://doi.org/10.1016/j.revpalbo.2021.104497
  51. Xu-Dong Gou, Zhuo Feng, Hai-Bo Wei, Yong Lv, Shi-Ling Yang, 2021. A new Protophyllocladoxylon stem from the Xishanyao Formation(Middle Jurassic) in the Santanghu Basin, Xinjiang, Northwest China. Review of Palaeobotany and Palynology, 292, 104474. https://doi.org/10.1016/j.revpalbo.2021.104474
  52. Xu-Dong Gou, Hai-Bo Wei, Yun Guo, Shi-Ling Yang, Zhuo Feng, 2021. Leaf phenology, paleoclimatic and paleoenvironmental insights derived from an Agathoxylon stem from the Middle Jurassic of Xinjiang, Northwest China. Review of Palaeobotany and Palynology, 289, 104416. https://doi.org/10.1016/j.revpalbo.2021.104416
  53. Yaguo Zou, Yunfa Miao, Shiling Yang, Yongtao Zhao, Zisha Wang, Guoqian Tang, Shengli Yang, 2021. A new automatic statistical microcharcoal analysis method based on image processing, demonstrated in the Weiyuan Section, Northwest China. Frontiers in Earth Science, 9, 609916. https://doi.org/10.3389/feart.2021.609916
  54. Xueye Wang, P. Roberts, Zihua Tang, Shiling Yang, M. Storozum, M. Groß, R. Fernandes, 2021. 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. https://doi.org/10.3389/fevo.2021.583301
  55. Yongda Wang, Shiling Yang*, Zhongli Ding, 2021. Provenance and paleoclimatic implications of loess deposits in Shandong Province, eastern China. Quaternary Research, 103, 88–98.
  56. Xu-Dong Gou, Sui Wan, Fu-Guang Zhao, Xin-Shi Cheng, Hai-Bo Wei, Yun Guo, Shi-Ling Yang, Zhuo Feng, 2021. A new conifer stem, Ductoagathoxylon wangii from the Middle Jurassic of the Santanghu Basin, Xinjiang, Northwest China. Review of Palaeobotany and Palynology, 285, 104357. https://doi.org/10.1016/j.revpalbo.2020.104357
  57. 崔静怡,郭利成,陈雨露,王恒,杨石岭,熊尚发, 2021.松嫩平原全新世黑土14C年龄-深度关系空间格局.第四纪研究, 41(5), 13321341.
  58. Hang-Yu Liu, Hai-Bo Wei, Jian-Bo Chen, Yun Guo, Yu Zhou, Xu-Dong Gou, Shi-Ling Yang, Conrad Labandeira, Zhuo Feng, 2020. A latitudinal gradient of plant–insect interactions during the late Permian in terrestrial ecosystems? New evidence from Southwest China. Global and Planetary Change, 192, 103248. https://doi.org/10.1016/j.gloplacha.2020.103248
  59. Zhuo Feng, Hai-Bo Wei, Rong-Hui Ye, Qun Sui, Xu-Dong Gou, Yun Guo, Lu-Jun Liu, Shi-Ling Yang, 2020. Latest Permian peltasperm plant from Southwest China and its paleoenvironmental implications. Frontiers in Earth Science, 8, 559430.https://doi.org/10.3389/feart.2020.559430
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  66. Shundong Bi, Xiaoting Zheng, Xiaoli Wang, N. E. Cignetti, Shiling Yang, J. R. Wible, 2018. An Early Cretaceous eutherian and the placental–marsupial dichotomy. Nature, 558, 390–395.
  67. Randall J. Schaetzl, E. Arthur Bettis III, Onn Crouvi, Kathryn E. Fitzsimmons, David A. Grimley, Ulrich Hambach, Frank Lehmkuhl, Slobodan B. Marković, Joseph A. Mason, Piotr Owczarek, Helen M. Roberts, Denis-Didier Rousseau, Thomas Stevens, Jef Vandenberghe, Marcelo Zárate, Daniel Veres, Shiling Yang, Michael Zech, Jessica L. Conroy, Aditi K. Dave, Dominik Faust, Qingzhen Hao, Igor Obreht, Charlotte Prud’homme, Ian Smalley, Alfonsina Tripaldi, Christian Zeeden, Roland Zech, 2018. Approaches and challenges to the study of loess—Introduction to the LoessFest Special Issue. Quaternary Research, 89, 563–618.
  68. S. B. Marković, Shiling Yang, J. Mason, 2018. Editorial: Eurasian loess records. Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 1–3.
  69. S. B. Marković, T. Stevens, J. Mason, J. Vandenberghe, Shiling Yang, D. Veres, G. Újvári, A. Timar Gabor, C. Zeeden, Z. Guo, Q. Hao, I. Obreht, U. Hambach, H. Wu, M. B. Gavrilov, C. Rolf, N. Tomić, F. Lehmkuhl, 2018. Loess correlations–Between myth and reality. Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 4–23.
  70. Shiling Yang*, Gábor Újvári, SlobodanB. Marković, 2018. Editorial: Aeolian deposition and Earth surface systems. Quaternary International, 469, 1–3.
  71. Shiling Yang*, Zhongli Ding, Shaohua Feng, Wenying Jiang, Xiaofang Huang, Licheng Guo, 2018. A strengthened East Asian Summer Monsoon during Pliocene warmth: Evidence from ‘red clay’ sediments at Pianguan, northern China. Journal of Asian Earth Sciences, 155, 124–133.
  72. Yangyang Li, Shiling Yang, Jule Xiao, Wenying Jiang,Xiaoxiao Yang, 2018. Hydrogen isotope ratios of leaf wax n-alkanes in loess and floodplain deposits in northern China since the Last Glacial Maximum and their paleoclimatic significance. Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 91–97.
  73. Xu Wang, Linlin Cui, Shiling Yang, Jixuan Zhai, Zhongli Ding, 2018. Stable carbon isotope records of black carbon on Chinese Loess Plateau since last glacial maximum: An evaluation on their usefulness for paleorainfall and paleovegetation reconstruction. Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 98–104.
  74. Xiaoxiao Yang, Wenying Jiang, Shiling Yang, Zhaochen Kong, Yunli Luo, 2018. Changes in plant richness and evenness since Marine Isotope Stage 2 on the Chinese Loess Plateau. Palaeogeography, Palaeoclimatology, Palaeoecology, 509, 137–143.
  75. 杨石岭*,丁仲礼, 2017.黄土高原黄土粒度的空间变化及其古环境意义.第四纪研究, 37(5), 934–944.
  76. Zuoling Chen, Zhongli Ding, Zihua Tang, Shiling Yang, Xu Wang, Linlin Cui, 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,https://doi.org/10.1002/2016GC006573
  77. Xinying Zhou, Xiaoqiang Li, Shiling Yang, Hao Long, Qing Yang, Keliang Zhao, Jianxin Cui, 2016. Past changes in the vegetation density of the Chinese Loess Plateau revealed by variations in the size of Artemisia pollen grains. Review of Palaeobotany and Palynology, 235, 71–80.
  78. Zuoling Chen, Zhongli Ding, Shiling Yang, Chunxia Zhang, Xu Wang, 2016. Increased precipitation and weathering across the Paleocene-Eocene Thermal Maximum in central China. Geochemistry, Geophysics, Geosystems, 17, 2286–2297,https://doi.org/10.1002/2016GC006333
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  80. 李超,杨石岭*,李阳阳,黄晓芳,姜文英, 2016.河南卢氏盆地张家村组粒度特征与沉积环境研究.第四纪研究, 36(6), 1428–1435.
  81. 董欣欣,杨石岭,唐自华,丁仲礼, 2016.基于黄土粒度估算粉尘源区-沉积区距离的新方法.中国科学:地球科学, 46(10), 1406–1412.
  82. Shiling Yang*, Zhongli Ding, Yangyang Li, Xu Wang, Wenying Jiang, Xiaofang Huang, 2016. Reply to Yu et al.: Global temperature change as the ultimate driver of the shift in the summer monsoon rain belt in East Asia. Proceedings of the National Academy of Sciences of the United States of America, 113(16), E2211–E2212.
  83. Yangyang Li, Shiling Yang*, Xu Wang, Jianfang Hu, Linlin Cui, Xiaofang Huang, Wenying Jiang, 2016. Leaf wax n-alkane distributions in Chinese loess since the Last Glacial Maximum and implications for paleoclimate. Quaternary International, 399, 190–197.
  84. Wenying Jiang, Shiling Yang, Xiaoxiao Yang, Ning Gu, 2016. Negative impacts of afforestation and economic forestry on the Chinese Loess Plateau and proposed solutions. Quaternary International, 399, 165–173.
  85. Zihua Tang, Shiling Yang, Qingqing Qiao, Feng Yin, Baochun Huang, Zhongli Ding, 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.
  86. Shiling Yang*, Zhongli Ding, Yangyang Li, Xu Wang, Wenying Jiang, Xiaofang Huang, 2015. Warming-induced northwestward migration of the East Asian monsoon rain belt from the Last Glacial Maximum to the mid-Holocene. Proceedings of the National Academy of Sciences of the United States of America, 112(43), 13178–13183.https://doi.org/10.1073/pnas.1504688112
  87. Ning Gu, Wenying Jiang, Luo Wang, Enlou Zhang, Shiling Yang, Shangfa Xiong, 2015. Rainfall thresholds for the precipitation of carbonate and evaporite minerals in modern lakes in northern China. Geophysical Research Letters, 42, 5895–5901.https://doi.org/10.1002/2015GL064340
  88. Xiaoxiao Yang, Wenying Jiang, Shiling Yang, Zhaochen Kong, Yunli Luo, 2015. Vegetation and climate changes in the western Chinese Loess Plateau since the Last Glacial Maximum. Quaternary International, 372, 58–65.
  89. S. B. Markovič, Shiling Yang, N. Catto, T. Stevens, 2014. Loess in China and Europe: A tribute to Edward Derbyshire. Quaternary International, 334–335, 1–3.
  90. Zuoling Chen, Xu Wang, Jianfang Hu, Shiling Yang, Min Zhu, Xinxin Dong, Zihua Tang, Ping’an Peng, Zhongli Ding, 2014. 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.https://doi.org/10.1016/j.epsl.2014.10.027
  91. Zuoling Chen, Zhongli Ding, Zihua Tang, Xu Wang,Shiling Yang, 2014. Early Eocene carbon isotope excursions: Evidence from the terrestrial coal seam in the Fushun Basin, Northeast China. Geophysical Research Letters, 41(10), 3559–3564.
  92. Xinying Zhou, Xiaoqiang Li, John Dodson, Shiling Yang, Hao Long, Keliang Zhao, Nan Sun, Qing Yang, Hanbing Liu, Chao Zhao, 2014. Zonal vegetation change in the Chinese Loess Plateau since MIS 3. Palaeogeography, Palaeoclimatology, Palaeoecology, 404, 89–96.
  93. Shiling Yang*, Zhongli Ding, 2014. A 249 kyr stack of eight loess grain size records from northern China documenting millennial-scale climate variability. Geochemistry, Geophysics, Geosystems, 15, 798–814.https://doi.org/10.1002/2013GC005113
  94. Shiling Yang*, Zhongli Ding,Zhaoyan Gu, 2014. Acetic acid-leachable elements in pedogenic carbonate nodules and links to the East-Asian summer monsoon. Catena, 117, 73–80.
  95. Xinxin Dong, Zhongli Ding, Shiling Yang, Pan Luo, Xu Wang,Junliang Ji, 2013. Synchronous drying and cooling in central Asia during late Oligocene. Chinese Science Bulletin, 58(25), 3119–3124./董欣欣,丁仲礼,杨石岭,王旭,罗攀,季军良, 2013.晚渐新世中亚降温与干旱化.科学通报, 58(17), 1680.
  96. Wenying Jiang, Yufen Cheng, Xiaoxiao Yang,Shiling Yang, 2013. Chinese Loess Plateau vegetation since the Last Glacial Maximum and its implications for vegetation restoration. Journal of Applied Ecology, 50, 440–448.
  97. Shiling Yang*, Zhongli Ding, Xu Wang, Zihua Tang,Zhaoyan Gu, 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, 317/318, 32–40.
  98. Jing Xie, Shiling Yang,Zhongli Ding, 2012. Methods and application of using detrital zircons to trace the provenance of loess. Science China Earth Sciences, 55(11): 1837–1846./谢静,杨石岭,丁仲礼, 2012.黄土物源碎屑锆石示踪方法与应用.中国科学:地球科学,42(6), 923–933.
  99. 李阳阳,王琴,崔琳琳,杨石岭, 2012.不同分析方法对黄土有机碳同位素分析的影响.地球环境学报, 3(4), 936–941.
  100. 杨肖肖,孔昭宸,姜文英,杨石岭, 2012.末次盛冰期以来渭源黄土剖面的孢粉记录.地球环境学报, 3(2), 819–825.
  101. 许晨曦,郝青振,杨石岭,赵淑君,周鑫,葛俊逸,肖国桥, 2011.黄土高原东南部黄土记录的全新世东亚季风变化.地质力学学报, 17(2), 175–184.
  102. Shiling Yang*, Zhongli Ding, 2010. Drastic climatic shift at ~2.8 Ma as recorded in eolian deposits of China and its implications for redefining the Pliocene-Pleistocene boundary. Quaternary International, 219, 37–44.https://doi.org/10.1016/j.quaint.2009.10.029
  103. 冯少华,唐自华,王旭,杨石岭, 2010.内蒙古准格尔旗红粘土序列的成因、年代及其古气候意义.第四纪研究, 30(5), 911–918.
  104. Shiling Yang*, Zhongli Ding, 2008. Advance-retreat history of the East-Asian summer monsoon rainfall belt over northern China during the last two glacial-interglacial cycles. Earth and Planetary Science Letters, 274, 499–510.
  105. Shiling Yang*, Feng Ding,Zhongli Ding, 2006. Pleistocene chemical weathering history of Asian arid and semi-arid regions recorded in loess deposits of China and Tajikistan. Geochimica et Cosmochimica Acta, 70, 1695–1709.
  106. Shiling Yang*, Zhongli Ding, 2006. Winter-Spring precipitation as the principal control on predominance of C3 plants in Central Asia over the past 1.77 Myr: Evidence from δ13C of loess organic matter in Tajikistan. Palaeogeography, Palaeoclimatology, Palaeoecology, 235, 330–339.
  107. Zhongli Ding, Edward Derbyshire, Shiling Yang, Jimin Sun,Tungsheng Liu, 2005. Stepwise expansion of desert environment across northern China in the past 3.5 Ma and implications for monsoon evolution. Earth and Planetary Science Letters, 237, 45–55.
  108. Shiling Yang*,Zhongli Ding,2004. Comparison of particle size characteristics of the Tertiary “red clay” and Pleistocene loess in the Chinese Loess Plateau: implications for origin and sources of the “red clay”. Sedimentology, 51, 77–93.
  109. Shiling Yang*,Zhongli Ding,2003. Color reflectance of Chinese loess and its implications for climate gradient changes during the last two glacial-interglacial cycles. Geophysical Research Letters, 30(20), 2058.https://doi.org/10.1029/2003GL018346
  110. Zhaoyan Gu, Qiang Liu, Bing Xu, Jiamao Han, Shiling Yang, Zhongli Ding,Tungsheng Liu, 2003. Climate as the dominant control on C3 and C4 plant abundance in the Loess Plateau: Organic carbon isotope evidence from the last glacial-interglacial loess-soil sequences. Chinese Science Bulletin, 48(12), 1271–1276./顾兆炎,刘强,许冰,韩家懋,杨石岭,丁仲礼,刘东生, 2003.气候变化对黄土高原末次盛冰期以来的C3/C4植物相对丰度的控制.科学通报, 48(13), 1458–1464.
  111. Shengshan Hou, Shiling Yang, Jimin Sun,Zhongli Ding, 2003. Oxygen isotope compositions of quartz grains (4-16 μm) from Chinese eolian deposits and their implications for provenance. Science in China (Series D), 46(10), 1003–1011./侯圣山,杨石岭,孙继敏,丁仲礼, 2003.风成沉积物4~16mm石英氧同位素记录及其物质来源意义.中国科学(D辑), 33(6), 535–542.
  112. Shangfa Xiong, Zhongli Ding, Wenying Jiang, Shiling Yang, Tungsheng Liu, 2003. Initial intensification of East Asian winter monsoon at about 2.75 Ma as seen in the Chinese eolian loess-red clay deposit. Geophysical Research Letters, 30(10), 1524.https://doi.org/10.1029/2003GL017059
  113. Shangfa Xiong, Zhongli Ding, Wenying Jiang, Shiling Yang, Tungsheng Liu, 2003. Damped fluctuations in Chinese loess grain size. Geophysical Research Letters, 30(19), 2007.https://doi.org/10.1029/2003GL018187
  114. Zhongli Ding, Vladimir Ranov, Shiling Yang, Alexander Finaev, Jiamao Han,Guoan Wang, 2002. The loess record in southern Tajikistan and correlation with Chinese loess. Earth and Planetary Science Letters, 200, 387–400.
  115. Zhongli Ding, Edward Derbyshire, Shiling Yang, Zhongwei Yu, Shangfa Xiong,Tungsheng Liu, 2002. Stacked 2.6-Ma grain size record from the Chinese loess based on five sections and correlation with the deep-sea δ¹⁸O record. Paleoceanography, 17(3),https://doi.org/10.1029/2001PA000725
  116. Shangfa Xiong, Wenying Jiang, Shiling Yang, Zhongli Ding,Tungsheng Liu, 2002. Northwestward decline of magnetic susceptibility for the red clay deposit in the Chinese Loess Plateau. Geophysical Research Letters, 29(24), 2162,https://doi.org/10.1029/2002GL015808
  117. Shiling Yang, Zhongli Ding, 2001. Seven million-year iron geochemistry record from a thick eolian red clay-loess sequence in Chinese Loess Plateau and the implications for paleomonsoon evolution. Chinese Science Bulletin, 46(4), 337–341./杨石岭,丁仲礼, 2000. 7.0 Ma以来中国北方风尘沉积的游离铁/全铁值变化及其古季风指示意义.科学通报, 45(22), 2453–2456.
  118. Zhongli Ding, Shiling Yang, Jimin Sun,Tungsheng Liu, 2001. Iron geochemistry of loess and red clay deposits in the Chinese Loess Plateau and implications for long-term Asian monsoon evolution in the last 7.0 Ma. Earth and Planetary Science Letters, 185, 99–109.
  119. Zhongli Ding, Shiling Yang, Shengshan Hou, Xu Wang, Zheng Chen,Tungsheng Liu, 2001. Magnetostratigraphy and sedimentology of the Jingchuan red clay section and correlation of the Tertiary eolian red clay sediments of the Chinese Loess Plateau. Journal of Geophysical Research, 106(B4), 6399–6407.
  120. Zhongli Ding, Jimin Sun, Shiling Yang, Tungsheng Liu, 2001. Geochemistry of the Pliocene red clay formation in the Chinese Loess Plateau and implications for its origin, source provenance and paleoclimate change. Geochimica et Cosmochimica Acta, 65(6), 901–913.
  121. Zhongli Ding, Zhenwei Yu, Shiling Yang, Jimin Sun, Shangfa Xiong,Tungsheng Liu, 2001. Coeval changes in grain size and sedimentation rate of eolian loess, the Chinese Loess Plateau. Geophysical Research Letters, 28, 2097–2100.
  122. Shangfa Xiong, Zhongli Ding, Shiling Yang, 2001. Abrupt shifts in the late Cenozoic environment of north-western China recorded in loess-palaeosol-red clay sequences. Terra Nova, 13(5), 376–381.
  123. Zhongli Ding, Shiling Yang, 2000. C3/C4 vegetation evolution over the last 7.0 Myr in the Chinese Loess Plateau: evidence from pedogenic carbonate δ13C. Palaeogeography, Palaeoclimatology, Palaeoecology, 160, 291–299.
  124. Zhongli Ding, N. W. Rutter, Jimin Sun, Shiling Yang,Tungsheng Liu, 2000. Re-arrangement of atmospheric circulation at about 2.6 Ma over northern China: evidence from grain size records of loess-paleosol and red clay sequences. Quaternary Science Reviews, 19, 547–558.
  125. 杨石岭,侯圣山,王旭,陈卓,熊尚发,丁仲礼, 2000.泾川晚第三纪红粘土的磁性地层及其与灵台剖面的对比.第四纪研究, 20(5), 423–434.
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  127. Shiling Yang, Zhongli Ding, Zhaoyan Gu, Jimin Sun,Shangfa Xiong, 1999. Pedogenic carbonate isotope record of vegetational evolution since the late Miocene in the Chinese Loess Plateau. Chinese Science Bulletin, 44, 1034–1038./杨石岭,丁仲礼,顾兆炎,孙继敏,熊尚发, 1998.灵台红粘土-黄土剖面晚中新世以来钙质结核的碳同位素记录及其古植被指示意义.科学通报, 43, 2323–2326.
  128. Zhongli Ding, Jianzhang Ren, Shiling Yang,Tungsheng Liu, 1999. Climate instability during the penultimate glaciation: Evidence from two high-resolution loess records, China. Journal of Geophysical Research, 104(B9), 20123–20132.
  129. Zhongli Ding, Shangfa Xiong, Jimin Sun, Shiling Yang, Zhaoyan Gu, Tungsheng Liu, 1999. Pedostratigraphy and paleomagnetism of a ~7.0 Ma eolian loess-red clay sequence at Lingtai, Loess Plateau, north-central China and the implications for paleomonsoon evolution. Palaeogeography, Palaeoclimatology, Palaeoecology, 152, 49–66.
  130. 杨石岭,丁仲礼,秦小光,顾兆炎, 1999.黄土沉积中红光/反射光亮度值变化及古气候意义.第四纪研究, 19(4), 380.
  131. 丁仲礼,杨石岭,孙继敏,刘东生, 1999. 2.6 Ma前后大气环流重构的黄土-红粘土沉积证据.第四纪研究, 19(3), 277–281.
  132. 丁仲礼,任剑璋,杨石岭,刘东生, 1999.最后两个冰期旋回季风-沙漠系统不稳定性的高分辨率黄土记录.第四纪研究, 19(1), 49–58.
  133. Zhongli Ding, Jimin Sun, Shiling Yang, Tungsheng Liu, 1998. Preliminary magnetostratigraphy of a thick eolian red clay-Loess sequence at Lingtai, the Chinese Loess Plateau. Geophysical Research Letters, 25, 1225–1228.
  134. Zhongli Ding, Jimin Sun, Tungsheng Liu, Rixiang Zhu, Shiling Yang, Bin Guo, 1998. Wind-blown origin of the Pliocene red clay formation in central Loess Plateau, China. Earth and Planetary Science Letters, 161, 135–143.
  135. 丁仲礼,孙继敏,杨石岭,熊尚发,顾兆炎,刘东生,朱日祥,郭斌,岳乐平, 1998.灵台黄土-红粘土序列的磁性地层及粒度记录.第四纪研究, 18(1), 86–94.
 

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