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Benthic foraminiferal fauna turnover at 2.1 Ma in the northern South China Sea
引用本文:HUANG BaoQi JIAN ZhiMin WANG PinXian. Benthic foraminiferal fauna turnover at 2.1 Ma in the northern South China Sea[J]. 科学通报(英文版), 2007, 52(6): 839-843. DOI: 10.1007/s11434-007-0114-3
作者姓名:HUANG BaoQi JIAN ZhiMin WANG PinXian
作者单位:[1]School of Earth and Space Sciences, Peking University, Beijing 100871, China [2]Laboratory of Marine Geology, Tongji University, Shanghai 200092, China
基金项目:Supported by the National Nature Science Foundation of China (Grant No. 40306007)
摘    要:Quantitative analysis of benthic foraminifera from ODP Site 1146 in the northern South China Sea (SCS) shows that abundance of Bulimina alazanensis, sometimes up to about 90%, decreased gradually since 3.2 Ma, especially at 2.1 Ma. Abundance of other benthic foraminiferal species, Globobulimina sub-globosa and Cibicidoides wuellerstorfi, increased after 2.1 Ma. Comparison with changes in oxygen and carbon isotopes of planktonic and benthic foraminifera shows that high abundance values of B. alazanensis corresponded with lower values of oxygen isotope, but for carbon isotope, high values of the species were consistent with heavier carbon isotope of benthic foraminifera and lighter carbon isotope of planktonic foraminifera, respectively, and vice versa. Considering factors such as uplift of Bashi Strait, expansion of the North Hemisphere Glaciation, strengthening of East Asian winter mon-soon and variations in oxygen and carbon isotope of foraminifera, changes of B. alazanensis in ODP Site 1146 suggest that the source of deep water masses of the northern South China Sea changed from the warm Pacific deep water with high oxygen content to Pacific Intermediate water with low oxygen content at 2.1 Ma. In addition, the strengthened East Asian winter monsoon resulted in increased pri-mary productivity, high nutrient and suboxic bottom water. Variations in species of B. alazanensis seemed to be unable to tolerate environmental stress induced by deep water masses and productivity changes.

关 键 词:南海北部 深海海底 有孔虫区系 晚上新世 古海洋学
收稿时间:2006-04-07
修稿时间:2006-04-072006-12-19

Benthic foraminiferal fauna turnover at 2.1 Ma in the northern South China Sea
BaoQi Huang,ZhiMin Jian,PinXian Wang. Benthic foraminiferal fauna turnover at 2.1 Ma in the northern South China Sea[J]. Chinese science bulletin, 2007, 52(6): 839-843. DOI: 10.1007/s11434-007-0114-3
Authors:BaoQi Huang  ZhiMin Jian  PinXian Wang
Affiliation:(1) School of Earth and Space Sciences, Peking University, Beijing, 100871, China;(2) Laboratory of Marine Geology, Tongji University, Shanghai, 200092, China
Abstract:Quantitative analysis of benthic foraminifera from ODP Site 1146 in the northern South China Sea (SCS) shows that abundance of Bulimina alazanensis, sometimes up to about 90%, decreased gradually since 3.2 Ma, especially at 2.1 Ma. Abundance of other benthic foraminiferal species, Globobulimina sub- globosa and Cibicidoides wuellerstorfi, increased after 2.1 Ma. Comparison with changes in oxygen and carbon isotopes of planktonic and benthic foraminifera shows that high abundance values of B. alazanensis corresponded with lower values of oxygen isotope, but for carbon isotope, high values of the species were consistent with heavier carbon isotope of benthic foraminifera and lighter carbon isotope of planktonic foraminifera, respectively, and vice versa. Considering factors such as uplift of Bashi Strait, expansion of the North Hemisphere Glaciation, strengthening of East Asian winter mon- soon and variations in oxygen and carbon isotope of foraminifera, changes of B. alazanensis in ODP Site 1146 suggest that the source of deep water masses of the northern South China Sea changed from the warm Pacific deep water with high oxygen content to Pacific Intermediate water with low oxygen content at 2.1 Ma. In addition, the strengthened East Asian winter monsoon resulted in increased pri- mary productivity, high nutrient and suboxic bottom water. Variations in species of B. alazanensis seemed to be unable to tolerate environmental stress induced by deep water masses and productivity changes.
Keywords:paleoceanography   benthic foraminifer Bulimina alazanensis   Late Pliocene   northern South China Sea
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