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Organic Carbon Isotope Records of Paleoclimatic Evolution since the Last Glacial Period in the Tangjia Region,Tibet

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【作者】 陈陵康赖旭龙赵银兵陈海霞倪忠云

【Author】 Lingkang Chen* Faculty of Earth Sciences,China University of Geosciences,Wuhan 430074,China;Faculty of Resource and Environmental Engineering,Jiangxi University of Science and Tecchnology,Ganzhou 341000,China Xulong Lai Faculty of Earth Sciences,China University of Geosciences,Wuhan 430074,China Yinbing Zhao College of Tourism and Urban-Rural Planning,Chengdu University of Technology,Chengdu 610059,China Haixia Chen Faculty of Resource and Environmental Engineering,Jiangxi University of Science and Tecchnology,Ganzhou 341000,China Zhongyun Ni College of Tourism and Urban-Rural Planning,Chengdu University of Technology,Chengdu 610059,China

【机构】 Faculty of Earth Sciences,China University of GeosciencesFaculty of Resource and Environmental Engineering,Jiangxi University of Science and TecchnologyCollege of Tourism and Urban-Rural Planning,Chengdu University of Technology

【摘要】 We firstly present the description of the river terrace at Tangjia(唐家) Village in Lhasa,Tibet,collect soil samples,and select the climate indicators including δ13C,total organic carbon(TOC),and the Rb/Sr ratios to study its paleoclimate in this area.Ancient climate changes have been recon-structed since the last glacier period.The results show that the δ13C,TOC,and the Rb/Sr ratio are good indicators of ancient climate fluctuations.Paleoclimatic evolution in the Lhasa Tangjia region could be divided into seven stages.In stages II(11.7-10.2 kaB.P.) and IV(8.1-6.1 kaB.P.),δ13C was positive and TOC was high,indicating that the climates in these two stages were relatively warm and humid.In stages III(10.2-8.1 kaB.P.) and V(6.1-4.9 kaB.P.),δ13C showed cyclical fluctuations,but TOC exhibited less change,suggesting that the climates displayed variation on the millennial scale.Moreover,the cli-matic variations were on a century-long scale during the later Middle Holocene.Compared with δ13C from Sumxi Co(松木希错) and δ18O from the Guliya(古里雅) ice core,the study confirmed that four cold events occurred during the Holocene(9.4,8.2,5.4,and 4.2 kaB.P.).The climate indicators were limited to the river terrace based on the geological characteristics of the Lhasa region.Unexpectedly,δ13C was a sensitive indicator of climate change.

【Abstract】 We firstly present the description of the river terrace at Tangjia(唐家) Village in Lhasa,Tibet,collect soil samples,and select the climate indicators including δ13C,total organic carbon(TOC),and the Rb/Sr ratios to study its paleoclimate in this area.Ancient climate changes have been recon-structed since the last glacier period.The results show that the δ13C,TOC,and the Rb/Sr ratio are good indicators of ancient climate fluctuations.Paleoclimatic evolution in the Lhasa Tangjia region could be divided into seven stages.In stages II(11.7-10.2 kaB.P.) and IV(8.1-6.1 kaB.P.),δ13C was positive and TOC was high,indicating that the climates in these two stages were relatively warm and humid.In stages III(10.2-8.1 kaB.P.) and V(6.1-4.9 kaB.P.),δ13C showed cyclical fluctuations,but TOC exhibited less change,suggesting that the climates displayed variation on the millennial scale.Moreover,the cli-matic variations were on a century-long scale during the later Middle Holocene.Compared with δ13C from Sumxi Co(松木希错) and δ18O from the Guliya(古里雅) ice core,the study confirmed that four cold events occurred during the Holocene(9.4,8.2,5.4,and 4.2 kaB.P.).The climate indicators were limited to the river terrace based on the geological characteristics of the Lhasa region.Unexpectedly,δ13C was a sensitive indicator of climate change.

【关键词】 organic carbon isotopesTOCpaleoclimateLhasa.
【Key words】 organic carbon isotopesTOCpaleoclimateLhasa.
【基金】 financially supported by the China Geological Survey (No. 1212010818085)
  • 【文献出处】 Journal of Earth Science ,地球科学学刊(英文版) , 编辑部邮箱 ,2011年06期
  • 【分类号】P532
  • 【被引频次】3
  • 【下载频次】111
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