首页> 外文会议>International Workshop on Tethyan Orogenesis and Metallogeny in Asia and Cooperation among Institutions of Higher Education: Extended Abstract Volume >Different mantle evolutions between the Paleo-Asian and Paleo-Tethyan domains deduced from Pb isotopic data
【24h】

Different mantle evolutions between the Paleo-Asian and Paleo-Tethyan domains deduced from Pb isotopic data

机译:从铅同位素数据推论的古亚洲和特提斯风之间的地幔演化

获取原文
获取原文并翻译 | 示例

摘要

Paleo-Tethyan and Paleo-Asian mantle domains have existed on Earth throughout the Phanerozoic.We analyzed the geochemical and Pb, Nd and Sr isotopic compositions of representative mafic rocks from five Paleo-Asian Ocean (PAO) ophiolites ranging in age from 354 to 624d Ma to constrain the isotopic evolution of its mantle domain that, in turn, will help us better understand mantle geodynamics during Earth's history.Data suggest that the Sr isotopic composition of PAO ophiolites do not represent primary magmatic composition due to alteration.Combined with similar data for mafic rocks from Paleo-Tethyan Ocean (PTO) ophiolites, the Nd and Pb isotopic composition indicates the sub-PAO and-PTO mantles have had similar long time-integrated history of Sm/Nd enrichment but marked differences in their Th/Pb and U/Pb fractionation.The former produced a Pacific MORB-type mantle with lower 207pb/204Pb(t) and 208pb/204Pb(t) for given 206Pb/204Pb ratios than the latter.The PAO and PTO evolutionary histories and associated tectonic characteristics suggest the Pb isotopic differences between the two mantles may be due to the presence of two long-lived independent global-scale mantle convention cells, Pacific and Africa, which kept the sub-PAO and-PTO mantles isolated from each other.The Africa cell was overlain and, perhaps, at the same time controlled continental dispersals and collisions within the PTO realm whereas the Pacific cell was underlain and controlled the accretionary margins in the PAO realm.Consequently, the long time-integrated Pb isotopic evolution of the sub-PTO mantle most probably had been affected by continental materials more so than the sub-PAO mantle.
机译:整个古生代都存在古特提斯和古亚洲地幔区域。我们分析了五种古亚洲洋(PAO)蛇绿岩在354至624d年龄的代表性镁铁质岩石的地球化学和Pb,Nd和Sr同位素组成Ma限制了其地幔区域的同位素演化,这反过来将有助于我们更好地了解地球历史期间的地幔地球动力学数据表明,由于变质,PAO蛇绿岩的Sr同位素组成不代表主要岩浆成分。结合类似的数据对于古特提斯洋(PTO)蛇绿岩中的镁铁质岩石,Nd和Pb同位素组成表明亚PAO和PTO地幔具有相似的长时间Sm / Nd富集历史,但其Th / Pb和U / Pb分馏:前者产生的太平洋MORB型地幔比后者给定的206Pb / 204Pb比率低207pb / 204Pb(t)和208pb / 204Pb(t)。保守性和相关的构造特征表明,两个地幔之间的铅同位素差异可能是由于存在两个长期存在的独立的全球尺度地幔常规单元太平洋和非洲,它们使亚-PAO和-PTO地幔相互隔离非洲细胞被覆盖,也许同时控制了PTO区域内的大陆散布和碰撞,而太平洋细胞被覆盖并控制了PAO区域内的增生边缘,因此,长时间整合的Pb同位素演化与次PAO地幔相比,次PTO地幔中最有可能受到大陆物质的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号