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Xi Xiaoxia, Mu Defen, Fang Xiaomin, Li Jijun. Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin[J]. Acta Sedimentologica Sinica, 1998, 16(2): 155-160.
Citation: Xi Xiaoxia, Mu Defen, Fang Xiaomin, Li Jijun. Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin[J]. Acta Sedimentologica Sinica, 1998, 16(2): 155-160.

Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin

  • Received Date: 1996-06-15
  • Rev Recd Date: 1997-06-15
  • Publish Date: 1998-06-10
  • Anion Chlorine in inland lakes is a commonindicator highly sensitive to climatic change. The variation of the content of anion chlorime in the Late Cenozoic stratigraphy in the Linxia Basim, Gansu Province, China, demonstrates that climate changes clearly in phase (step) and periodicity. The climate was shited rapidly at about 6.3 Ma from relatively humid to very dry environments, and reached an extreme dry environment between 5.3 Ma and 4.5 Ma, with drought degree 33 times the early Quaternary. In low frequency, climate presents ca. 400 ka periodicity of dry-humid fluctuation, matching global hot-cold (cool) fluctuation in similar periodicity in the Late Miocene-Early Pliocene; w hile matching global cold-warm fluctuation in the early Quaternary. The change of moistureheat regime from the Late Pliocene to the early Quaternary may suggest that the Asian monsoon system began to form gradually since the Late Pliocene and was completely established in the esrly Quaternary. The strong whole uplift of the Tibetan plateau at ca. 3.4 Ma may be responsible for such change.
  • [1] .中国科学院南京土壤研究所. 土壤理化分析. 上海: 上海科学技术出版社, 1983. 211~222
    [2] .刘英俊, 曹励明, 李兆麟等. 元素地球化学, 北京: 科学出版社, 1984. 481~489
    [3] .李吉均, 方小敏, 朱俊杰等. 临夏盆地新生代地层古地磁年代与模式序列. 青藏高原形成演化、环境变迁与生态系统研究. 北京: 科学出版社, 1995. 41~54
    [4] .李吉均, 方小敏, 马海州等. 晚新生代黄河上游地貌演化与环境变迁. 中国科学(D) , 1996, 26(4): 316~322
    [5] .张彭熹. 青藏高原盐湖几个有关地质问题的讨论. 见: 中国科学院盐湖研究所编青海柴达木盆地晚新生代地质环境演化. 北京: 科学出版社1986. 50~58
    [6] .陈怀录, 方小敏, 李吉均等. 临夏盆地石膏裂变径迹年龄的测定及形成时代探讨. 见: 青藏项目专家委员会编. 青藏高原形成演化、环境变迁与生态系统研究. 北京: 科学出版社, 1995. 73~76
    [7] .奚晓霞, 穆德芬, 方小敏, 李吉均. 早更新世东山古湖氯离子含量变化与季风演化, 冰川冻土, 1996, 18(2): 125~130
    [8] .Cerling T E, Wang Yang, Quade J. Expansion of C4 ecosys tems as an indicator of global ecological change in late Miocene. Nature, 1993, 361: 344~345
    [9] .Crowley T J. Modeling Pliocene warmth. Quaternary Science Reviews, 1991, 10: 275~282
    [10] .Hakanson L, Jansson M. Principles of lake sedimentology, Berlin: Springer-Verlag, 1983. 60~95
    [11] .Hodell D A , Elmstrom K M, Kennett J P. Latest Miocene benthic & 18O changes global ice volume, sea level and the "Messinian salinity crisis". Nature, 1986, 320: 411~414
    [12] .Hsu K J, Montadert L, Bernouilli D. History of the Mediterranean salinity crisis. Nature, 1977, 267: 399~403
    [13] .Krishnamurthy R V, Bhattacharya S K, Kusumgar S, Palaeoclimatic changesd educed from 13C/12C and C/N ratios of Karew a lakes ediments, India. Nature, 1986, 323: 150~152
    [14] .Loutit T S, Keigwin Jr L D. Stable isotopic evidence for latest Miocene sea-level fall in the Mediterranean region. Nature, 1982, 300: 163~166
    [15] .Morgan M E, Kingaton J D, Marino B D. Carbon isotopic evidence for the emergence of C4 plants in the Neogene from Pakistan and Kenya. Nature, 1944, 367: 162~165
    [16] .Quade J, Cerling T E, Bowman J R. Development of Asian monsoon revealed by marked ecological shift during the latest Miocenen in northern Pakistan. Nature, 1989, 342: 163~166
    [17] .Shackleton N J, Kennett J P. Late Cenozoic oxygen and carbon isotopic changes at DSDP Site 284: Implications for glacial history of the northern hemishere and Antarctica. Init. Rep. DSDP, 1975, 284(29): 801~807
    [18] .Vincent E, Killingley J J, Berger W H, The magnetic Epoch 6 carbonate shift, a change in the ocean's 13C/12C ratio: 6.2 million years ago. Mar. Micropaleontol., 1980, 5: 185~203
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  • Received:  1996-06-15
  • Revised:  1997-06-15
  • Published:  1998-06-10

Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin

Abstract: Anion Chlorine in inland lakes is a commonindicator highly sensitive to climatic change. The variation of the content of anion chlorime in the Late Cenozoic stratigraphy in the Linxia Basim, Gansu Province, China, demonstrates that climate changes clearly in phase (step) and periodicity. The climate was shited rapidly at about 6.3 Ma from relatively humid to very dry environments, and reached an extreme dry environment between 5.3 Ma and 4.5 Ma, with drought degree 33 times the early Quaternary. In low frequency, climate presents ca. 400 ka periodicity of dry-humid fluctuation, matching global hot-cold (cool) fluctuation in similar periodicity in the Late Miocene-Early Pliocene; w hile matching global cold-warm fluctuation in the early Quaternary. The change of moistureheat regime from the Late Pliocene to the early Quaternary may suggest that the Asian monsoon system began to form gradually since the Late Pliocene and was completely established in the esrly Quaternary. The strong whole uplift of the Tibetan plateau at ca. 3.4 Ma may be responsible for such change.

Xi Xiaoxia, Mu Defen, Fang Xiaomin, Li Jijun. Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin[J]. Acta Sedimentologica Sinica, 1998, 16(2): 155-160.
Citation: Xi Xiaoxia, Mu Defen, Fang Xiaomin, Li Jijun. Climatic Change Since the Late Miocene in West China: Evidence from Anion Chlorine in the Linxia Red Basin[J]. Acta Sedimentologica Sinica, 1998, 16(2): 155-160.
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