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西沙地区碳酸盐台地发育过程与海平面变化:基于西科1井BIT指标分析数据
引用本文:王振峰,崔宇驰,邵磊,张道军,董茜茜,刘新宇,张传伦,尤丽,肖安涛.西沙地区碳酸盐台地发育过程与海平面变化:基于西科1井BIT指标分析数据[J].地球科学,2015,40(5):900-908.
作者姓名:王振峰  崔宇驰  邵磊  张道军  董茜茜  刘新宇  张传伦  尤丽  肖安涛
作者单位:1.中海石油有限公司湛江分公司,广东湛江 524057
基金项目:中国海洋石油总公司项目,国家科技重大专项项目,国家自然科学基金项目
摘    要:为了探讨南海碳酸盐台地的发育过程及控制因素, 采用有机分子化合物指标方法对其进行了研究.有机分子化合物指标BIT(branched isoprenoid tetraether)是沉积物中源自陆源的细菌膜脂支链甘油双烷基链甘油四醚(branched glycerol dialkyl glycerol tetraethers,简称bGDGTs)与主要来自海洋泉古菌中的类异戊二烯GDGTs(isoprenoid GDGTs,简称iGDGTs)的含量之比,在古环境研究中,用来区分沉积物有机质的来源、判断沉积环境.通过对西科1井的数据研究发现,西科1井BIT指数随深度呈现三段式规律性变化,从下到上呈现高-低-高的变化,反映了中中新世以来南海海平面变化及碳酸盐台地生长发育的过程:在中中新世晚期,受全球及区域海平面变化下降影响,西沙地区碳酸盐台地形成礁-滩交互的沉积地层,由于大气淡水的影响,造成BIT指数呈现高值;到晚中新世至上新世,全球及区域海平面出现持续上升,有利于西沙碳酸盐台地的生长发育,使该井沉积环境以礁内泻湖相为主,造成BIT指数呈现低值;在第四纪冰期,全球及区域海平面出现总体下降趋势,西沙碳酸盐台地又频繁暴露于地表,造成BIT指数又呈现高值.研究表明,西沙地区碳酸盐台地受区域相对海平面变化影响更大,说明南海海平面变化既受全球海平面变化的影响,也受南海区域构造沉降的控制. 

关 键 词:南海    西沙群岛    西科1井    生物礁    有机化合物    海洋地质    地层学
收稿时间:2014-10-25

Carbonate Platform Development and Sea-Level Variations of Xisha Islands:Based on BIT Index of Well Xike-1
Wang Zhenfeng,Cui Yuchi,Shao Lei,Zhang Daojun,Dong Xixi,Liu Xinyu,Zhang Chuanlun,You Li,Xiao Antao.Carbonate Platform Development and Sea-Level Variations of Xisha Islands:Based on BIT Index of Well Xike-1[J].Earth Science-Journal of China University of Geosciences,2015,40(5):900-908.
Authors:Wang Zhenfeng  Cui Yuchi  Shao Lei  Zhang Daojun  Dong Xixi  Liu Xinyu  Zhang Chuanlun  You Li  Xiao Antao
Abstract:In order to explore the developmental process of carbonate platform in the South China Sea (SCS) and its control factors, the organic molecular compound index method were described in this study. The branched isoprenoid tetraether (BIT) index is the ratio between the branched glycerol dialkyl glycerol tetraethers (bGDGTs) from terrigenous supply and isoprenoid GDGTs (iGDGTs) from marine crenarchaeol comprising the majority of denominator, which serves as a proxy for provenance discrimination of the organic matter and related sedimentary environments in paleoenvironmental research. The BIT curve of well Xike-1 is characterized by a unique "high-low-high" feature up section, indicating the effects of sea-level variations and carbonate platform development since Middle Miocene in the SCS. Strata with reef-beach facies were developed within carbonate platforms of Xisha Islands influenced by decrease in global as well as regional sea-level during the Late Miocene, with increased BIT values due to plenty of precipitation. Between Late Miocene and Pliocene when sea-level was higher, carbonate platforms were better formed in shallow marine environment with low BIT values. Carbonate platforms of Xisha Islands were periodically exposed in Quaternary as a result of sea-level decline over glacial cycles, leading to the second increase in BIT. Our results demonstrate that carbonate platforms of Xisha Islands have been affected by regional sea-level variations, reflecting a coupling effect on the SCS by global sea-level fluctuations and regional tectonic subductions. 
Keywords:South China Sea  Xisha Islands  well Xike-1  bioherm  organic compound  marine geology  stratigraphy
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