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峨眉山地幔柱在桂北的响应
张晓静
导师胡瑞忠
2013
学位授予单位中国科学院研究生院
学位授予地点北京
学位名称硕士
学位专业地球化学
关键词峨眉山大火成岩省 地幔柱 桂北 锆石u-pb年龄 Hf同位素
摘要峨眉山大火成岩省是我国唯一被国际学术界认可的地幔柱成因的大火成岩省,其对研究地幔物质结构、成分变化、大陆岩石圈深部过程与大陆裂解的成因信息及与之有关的成矿作用有重要意义。目前的研究认为,峨眉山大火成岩省(ELIP)是中国西南地区二叠纪到三叠纪地幔柱活动的产物,大约从260Ma开始启动,在259~257Ma进入主喷发期,251Ma酸性岩的喷发可能代表了其上限。地幔柱和相关的火山喷发作用通常被认为是引起全球气候变化和生物灭绝的原因。峨眉山地幔柱的活动时限与大规模生物灭绝事件在时间上的高度一致性暗示两者在之间存在内在联系。本文在野外地质工作的基础上,对桂北地区分布的晚古生代基性岩进行了研究,深入探究了该区的地球动力学背景及对峨眉山地幔柱的响应。取得如下新认识和进展: 1. 对桂北百色、巴马地区存在争议的基性岩进行了详细的野外调研和室内镜下观察,确认岩体与围岩为侵入接触关系,并有清楚的接触界限和硅化作用,岩石具有块状构造和辉绿结构,因此认为其应为辉绿岩。 2. 对桂北百色、巴马地区的辉绿岩进行精确的LA-ICP-MS锆石U-Pb定年、地球化学及Hf同位素研究,认为其与峨眉山玄武岩为同源产物,具有密切的成因关系。辉绿岩显示出地幔柱成因的特征,并遭受了轻微的地壳混染作用。锆石U-Pb定年结果表明,其形成年龄在255-259Ma左右,与峨眉山玄武岩的主喷发期基本一致。 3. 扩展了峨眉山大火成岩省的空间分布范围,二叠纪峨眉山玄武质岩浆活动影响到了广西北部地区,与桂北晚古生代辉绿岩具有相似地质产出特征的黔南、滇东晚古生代基性岩很可能也与此有关。这将为合理理解峨眉山大火成岩省的玄武岩喷发事件的时空分布提供新的约束。 目前,多数人认为峨眉山大火成岩省的主喷发期为259~257Ma,主喷发时限集中在1~3Ma之间,是在地幔穹窿上升之后的快速喷发。通过本论文的研究,平圩、龙川、玉凤和巴马地区的辉绿岩形成时代与峨眉山地幔柱的主喷发期基本一致,应为峨眉山玄武质岩浆活动的同质异相产物。因此认为峨眉山大火成岩省的分布范围可能延伸到了桂西地区,且由于其与大规模生物灭绝事件在时限上一致,进一步支持了两者之间存在密切关系。
其他摘要As the only accepted large igneous province in china, Emeishan large igneous province has been accepted by internationalsholas. It has significant meanings to study the substance structure of mantle, content variation, deep process of continental lithosphere, the cause of continental cracking and mineralization.The Emeishan large igneous province (ELIP) was recently interpreted as the production of mantle plume activity in Permian and Triassic period in southewest of China. It probably started erupt in 260Ma, and the eruption period between 259~257Ma, and the acid rock in 251Ma may represent the end. Mantle plumes and associated voluminous eruption of lavas are generally considered to be a potentially important cause for crises in global climate and biological extinction. The high accordance between Emeishan mantle plume activity and mass extinction of biont incident likely imply that they have inherent relationship. Based on the observation in field, late Paleozoic debases in north Guangxi province have been studied and the geodynamic background of northern Guangxi and reflection to Emeishan mantle plume has been considered. New results and progress have been obtained. 1. After analyzing the debated basaltic rocks of Baise and Bama, north of Guangxi in field and laboratory carefully, we conclude that the dykes are intruded into country rocks and the interference is clear with silification. And the rocks are massive structure with diabasic texture. So, we think that they are diabases. 2. Geochronology, petrology and geochemistry were performed systematically on diabases in Baise and Bama, north Guangxi province. Diabases in north Guangxi were homologous with Emeishan basalts and were derived from mantle plume with little contamination. The LA-ICP-MS U-Pb zircon data of diabases yields a concordant age, 255-259Ma, which is in almost accordance with the main eruption time of Emeishan basalts. 3. The range of ELIP has been expanded, and the activity of Emeishan basaltic magmas in Permian has an influence on north of Guangxi. Also, basic rocks, which have similar characteristics in south of Guizhou and east of Yunnan, may be the results of this activity. All of this will supply new constraints on the spatial and temporal distributions of ELIP. The main eruption age of ELIP,which is concentrated in 1~3Ma, has been considered to be 259~257Ma by most scholars. Emeishan large igneous province was production of rapid mantle uplifting. Through the study of this article, diabases of Pingxu, Longchuan, Poyou and Yanna have equal chronology with Emeishan mantle plume. So, they must be the homogeneous interphase product of Emeishan basaltic magama activity. Therefore, we consider that the distribution of Emeishan large igneous province probably has extended to west of Guangxi province. Due to the same eruption time with the mass biological extinction incident, the relationship between the two has further been proved.
学科领域矿床地球化学
语种中文
文献类型学位论文
条目标识符http://ir.gyig.ac.cn/handle/352002/5826
专题研究生_研究生_学位论文
推荐引用方式
GB/T 7714
张晓静. 峨眉山地幔柱在桂北的响应[D]. 北京. 中国科学院研究生院,2013.
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