首页> 外文期刊>Canadian journal of earth sciences >Geology and U-Pb geochronology of the Kipawa Syenite Complex - a thrust related alkaline pluton - and adjacent rocks in the Grenville Province of western Quebec
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Geology and U-Pb geochronology of the Kipawa Syenite Complex - a thrust related alkaline pluton - and adjacent rocks in the Grenville Province of western Quebec

机译:魁北克西部格伦维尔省Kipawa Syenite复杂地层的地质学和U-Pb年代学-与逆冲有关的碱性岩体-及其相邻岩石

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摘要

The Kipawa Syenite Complex, a thin, folded sheet of amphibole syenite, quartz syenite and minor nepheline syenite, lies along a west-vergent thrust separating a lower slice comprising the Kikwissi granodiorite and biotite tonalite dated at 2717 (+15)(-11) Ma, and unconformably overlying metasedimentary rocks from an overlying slice containing the Red Pine Chute orthogneiss, an alkali granite gneiss, and the Mattawa Quartzite. The syenite complex, dated at 1033 +/- 3 Ma, lies within the lower slice but has metasomatically altered the overlying slice. Texturally guided U-Pb spot analyses on partially metasomatised zircons from the alkali granite gneiss yield a cluster of Pb-207/Pb-206 ages at 1389 +/- 8 Ma, interpreted as the time of igneous crystallization and four ages overlapping the time of syenite emplacement, interpreted as in situ, metasomatic growth. The highest structural slice comprises garnet amphibolite separated from lower slices by the Allochthon Boundary Thrust. Metamorphic grade increases upward from greenschist grade in the biotite tonalite to amphibolite grade (690 degreesC, 9 kbar (1 kbar = 100 MPa)) at the lower boundary of the alkali granite. Emplacement of the Kipawa Syenite Complex took place after assembly of the thrust stack had begun and after emplacement of the allochthon or hot slab responsible for the inverted metamorphic gradient. Origin of the syenite is tentatively ascribed to anatexis of material metasomatized by flow of alkaline solutions along a major shear surface. Crystallization of new zircon in the margins of the syenite shows that metasomatism continued from ca. 1035 to 990 Ma, redistributing alkalies, fluorine, rare-earth elements and zirconium.
机译:Kipawa Syenite Complex是由薄褶皱的角闪石正长岩,石英正长岩和次要霞石正长岩构成的岩屑,沿着西向的逆冲断层,分隔下层,包括Kikwissi花岗闪长岩和黑云母洞石,日期为2717(+15)(-11) Ma,以及来自上覆薄片的不整合的上覆沉积岩,这些薄片包含赤松斜道斜长片岩,碱性花岗岩片麻岩和Mattawa石英岩。年龄在1033 +/- 3 Ma的正长岩复合物位于下层片层内,但变质作用改变了上层片层。对来自碱花岗岩麻片岩的部分交代化锆石的组织引导下的U-Pb斑点分析在1389 +/- 8 Ma时产生了一群Pb-207 / Pb-206年龄,被解释为火成岩的结晶时间,而四个年龄重叠了正弦岩的位置,解释为原位交代生长。最高的结构片包括石榴石角闪石,其通过较低的异位界边界推力与下部的片分离。在碱性花岗岩的下边界,变质品位从黑云母五官矿中的绿片岩品位上升到角闪石品位(690摄氏度,9 kbar(1 kbar = 100 MPa))。 Kipawa Syenite Complex的安装是在推力堆栈开始组装之后,以及负责反向变质梯度的异体或热板的安装之后进行的。堇青石的起源暂时归因于碱性溶液沿主要剪切面流动而交代的物质的无酸盐。新的锆石在正长岩边缘的结晶表明,交代作用从ca开始持续。 1035至990 Ma,可重新分配碱,氟,稀土元素和锆。

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