首页> 外文期刊>Journal of mineralogical and petrological sciences >Peak and post–peak development of UHT metamorphism at Mather Peninsula, Rauer Islands: Zircon and monazite U–Th–Pb and REE chemistry constraints
【24h】

Peak and post–peak development of UHT metamorphism at Mather Peninsula, Rauer Islands: Zircon and monazite U–Th–Pb and REE chemistry constraints

机译:劳尔群岛马瑟半岛UHT变质的高峰和峰后发展:锆石和独居石U–Th–Pb和REE化学约束

获取原文
       

摘要

Zircon and monazite in ultrahigh temperature (UHT) metamorphic rocks from the Rauer Islands of Prydz Bay in East Antarctica were investigated in terms of U–Th–Pb and rare earth elements (REE) chemistry along with textural context. All five analyzed samples, three from the Mather Paragneiss UHT unit and two from the host orthogneiss unit yield 522–517 Ma concordant zircon ages, with older protolith/inherited zircon ages of 3268 and 2800–2400 Ma along with highly discordant Mesoproterozoic to Neoproterozoic ages. Our data confirm the Archaean protolith age for the host orthogneiss surrounding the UHT Mather Paragneiss. The Archaean and Mesoproterzoic components of the Rauer Islands were not amalgamated in the Rauer Tectonic Event at 1030–990 Ma, and deposition of the Mather Paragneiss was considered at some time after the Rauer Tectonic Event. In contrast to the well–defined 520 Ma ages obtained from the zircons in the UHT rocks, monazite grains measured by electron microprobe show a distinct internal zonation, from 580–560 Ma dark–backscattered electron image (BSE) cores enriched in middle rare earth elements (MREE) and heavy rare earth elements (HREE) to 550–520 Ma mid–BSE mantles and 510–500 Ma bright–BSE rims. From the chemical and textural evidence we infer that the MREE–HREE–rich 580–560 Ma monazite cores may have formed through the decomposition of garnet during decompression just after the UHT event, whereas the MREE–HREE–depleted 550–500 Ma monazite grains/rims formed or recrystallized in reactions associated with subsequent extensive hydration during the upper–amphibolite to granulite–facies main Prydz Tectonic Event, which also caused marked recrystallization of zircon. The above data strongly support the interpretation that the UHT metamorphism occurred prior to 590–580 Ma.
机译:根据U–Th–Pb和稀土元素(REE)的化学成分以及构造背景,研究了南极东部Prydz湾的Rauer群岛的超高温(UHT)变质岩中的锆石和独居石。所有五个分析样品,三个来自Mather Paragneiss UHT单位,两个来自主生正条岩单位,产锆石年龄为522–517 Ma,原生石/继承的锆石年龄分别为3268和2800–2400 Ma,中元古生代至新元古代。我们的数据证实了UHT Mather Paragneiss周围寄主直片麻岩的古生代石器时代。在1030–990 Ma的Rauer构造事件中并未合并Rauer群岛的古生代和中元古代成分,并且在Rauer构造事件之后的某个时间考虑了马瑟帕拉尼格斯的沉积。与从UHT岩石中的锆石中获得的明确的520 Ma年龄相反,通过电子微探针测量的独居石颗粒表现出明显的内部区带,富集在中稀土中的580-560 Ma暗背散射电子像(BSE)核元素(MREE)和重稀土元素(HREE)到550-520 Ma的中BSE地幔和510-500 Ma的亮BSE边缘。根据化学和组织学证据,我们推断,UHT事件发生后减压期间石榴石的分解可能形成了富含MREE–HREE的580–560 Ma独居石岩心,而经过MREE–HREE耗尽的550–500 Ma的独居石晶粒上闪石到粒相的主要Prydz构造事件期间,随后的大量水化反应形成的/边缘形成或重结晶,这也引起锆石的明显重结晶。以上数据有力地支持了UHT变质发生在590-580 Ma之前的解释。

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