Zhang Qiang, Zhang Ran, Hao Qingzhen, Clift Peter D, Roberts Andrew P, Florindo Fabio, Li Qian, Liu Jianxing, Liu Ze, Gui Ke, Che Huizheng, Liu Shuangchi, Qiao Qingqing, Ju Lixia, Jin Chunsheng, Liu Chuanzhou, Liu Qingsong, Xiao Wenjiao, Guo Zhengtang
State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China.
Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing, China.
Sci Adv. 2024 Jun 21;10(25):eadm8270. doi: 10.1126/sciadv.adm8270. Epub 2024 Jun 19.
East Asian winter monsoon (EAWM) activity has had profound effects on environmental change throughout East Asia and the western Pacific. Much attention has been paid to Quaternary EAWM evolution, while long-term EAWM fluctuation characteristics and drivers remain unclear, particularly during the late Miocene when marked global climate and Asian paleogeographic changes occurred. To clarify understanding of late Miocene EAWM evolution, we developed a high-precision 9-million-year-long stacked EAWM record from Northwest Pacific Ocean abyssal sediments based on environmental magnetism, sedimentology, and geochemistry, which reveals a strengthened late Miocene EAWM. Our paleoclimate simulations also indicate that atmospheric CO decline played a vital role in this EAWM intensification over the Northwest Pacific Ocean compared to other factors, including central Asian orogenic belt and northeastern Tibetan Plateau uplift and Antarctic ice-sheet expansion. Our results expand understanding of EAWM evolution from inland areas to the open ocean and indicate the importance of atmospheric CO fluctuations on past EAWM variability over large spatial scales.
东亚冬季风(EAWM)活动对整个东亚和西太平洋的环境变化产生了深远影响。人们对第四纪东亚冬季风演化给予了诸多关注,然而长期的东亚冬季风波动特征及其驱动因素仍不明确,特别是在晚中新世期间,当时发生了显著的全球气候和亚洲古地理变化。为了厘清对晚中新世东亚冬季风演化的认识,我们基于环境磁学、沉积学和地球化学,从西北太平洋深海沉积物中建立了一个长达900万年的高精度东亚冬季风叠加记录,该记录揭示了晚中新世东亚冬季风增强的现象。我们的古气候模拟还表明,与其他因素(包括中亚造山带、藏北高原隆升和南极冰盖扩张)相比,大气CO₂下降在西北太平洋地区的东亚冬季风增强过程中起着至关重要的作用。我们的研究结果拓展了对东亚冬季风从内陆地区到开阔海洋演化的认识,并表明大气CO₂波动对过去大空间尺度上东亚冬季风变率的重要性。