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南海北部深水区渐新-中新世沉积地球化学特征及物源演变
引用本文:陈淑慧,乔培军,张厚和,谢晓军,崔宇驰,邵磊. 南海北部深水区渐新-中新世沉积地球化学特征及物源演变[J]. 海洋学报(英文版), 2018, 37(2): 35-43. DOI: 10.1007/s13131-017-1127-7
作者姓名:陈淑慧  乔培军  张厚和  谢晓军  崔宇驰  邵磊
作者单位:同济大学海洋与地球科学学院国家重点实验室, 200092, 上海;中海油深圳分公司, 510240, 广州,同济大学海洋与地球科学学院国家重点实验室, 200092, 上海,中海油北京研究总院, 100027, 北京,中海油北京研究总院, 100027, 北京,同济大学海洋与地球科学学院国家重点实验室, 200092, 上海,同济大学海洋与地球科学学院国家重点实验室, 200092, 上海
基金项目:The National Natural Science Foundation of China under contract Nos 41576059, 91128207 and 91528302; the National Major Science and Technology Projects under contract No. 2011ZX05025-006-02.
摘    要:Geochemical and detrital zircon U-Pb dating data for drilled sediments from the Baiyun deepwater area of the northern South China Sea demonstrate a change of sedimentary sources from the Oligocene to the Miocene.Zircon ages of the pre-rift Eocene sequences are dominated by Yanshanian ages with various peak values(110–115 Ma for U1435 and L21; 150 Ma for H1), indicating local sediment supply from the pre-existing Mesozoic magmatic belt. For the Oligocene sediments in the northern part of the basin, the rare earth elements show different distribution characteristics, indicating sediment supply from the paleo-Zhujiang River(Pearl River), as also confirmed by the multimodal zircon age spectra of the Lower Oligocene strata in Well X28. By contrast, a positive Eu anomaly characterizes sediments from the western and southern parts of the basin, indicating potential provenances from intermediate to basic volcanic rock materials. The Baiyun Movement at the end of the Oligocene contributed to a large-scale subsidence in the deepwater area and also a northward retreat of continental shelf break, leading to deepening depositional environment in the basin. As a result, all the detrital zircon ages of the Upper Oligocene strata from Wells X28, L13, and L21 share a similar distribution, implying the possible control of a common source like the Zhujiang River. During the Miocene, whereas sediments in the northern area were mainly sourced from the Zhujiang River Delta, and those in the southern deepwater area continued to be affected by basic volcanic activities, the Dongsha Uplift could have contributed as the main source to the eastern area.

关 键 词:地球化学  碎屑锆石U-Pb定年  物源  南海  白云深水区
收稿时间:2017-05-22
修稿时间:2011-10-11

Geochemical characteristics of Oligocene-Miocene sediments from the deepwater area of the northern South China Sea and their provenance implications
CHEN Shuhui,QIAO Peijun,ZHANG Houhe,XIE Xiaojun,CUI Yuchi and SHAO Lei. Geochemical characteristics of Oligocene-Miocene sediments from the deepwater area of the northern South China Sea and their provenance implications[J]. Acta Oceanologica Sinica, 2018, 37(2): 35-43. DOI: 10.1007/s13131-017-1127-7
Authors:CHEN Shuhui  QIAO Peijun  ZHANG Houhe  XIE Xiaojun  CUI Yuchi  SHAO Lei
Affiliation:1.State Key Laboratory of Marine Geology, Tongji University, Shanghai 200092, China;Shenzhen Branch of China National Offshore Oil Corporation, Guangzhou 510240, China2.State Key Laboratory of Marine Geology, Tongji University, Shanghai 200092, China3.China National Offshore Oil Corporation Research Institute, Beijing 100027, China
Abstract:Geochemical and detrital zircon U-Pb dating data for drilled sediments from the Baiyun deepwater area of the northern South China Sea demonstrate a change of sedimentary sources from the Oligocene to the Miocene. Zircon ages of the pre-rift Eocene sequences are dominated by Yanshanian ages with various peak values (110-115 Ma for U1435 and L21; 150 Ma for H1), indicating local sediment supply from the pre-existing Mesozoic magmatic belt. For the Oligocene sediments in the northern part of the basin, the rare earth elements show different distribution characteristics, indicating sediment supply from the paleo-Zhujiang River (Pearl River), as also confirmed by the multimodal zircon age spectra of the Lower Oligocene strata in Well X28. By contrast, a positive Eu anomaly characterizes sediments from the western and southern parts of the basin, indicating potential provenances from intermediate to basic volcanic rock materials. The Baiyun Movement at the end of the Oligocene contributed to a large-scale subsidence in the deepwater area and also a northward retreat of continental shelf break, leading to deepening depositional environment in the basin. As a result, all the detrital zircon ages of the Upper Oligocene strata from Wells X28, L13, and L21 share a similar distribution, implying the possible control of a common source like the Zhujiang River. During the Miocene, whereas sediments in the northern area were mainly sourced from the Zhujiang River Delta, and those in the southern deepwater area continued to be affected by basic volcanic activities, the Dongsha Uplift could have contributed as the main source to the eastern area.
Keywords:geochemistry  zircon U-Pb age  provenance  South China Sea  Baiyun deepwater area
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