首页> 外文会议>Proceedings of the 11th European workshop of the European Microbeam Analysis Society (EMAS) on modern developments and applications in microbeam analysis >An investigation of trace and isotope light elements in mineral phases from well RN-17 (Reykjanes Peninsula, SW Iceland)
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An investigation of trace and isotope light elements in mineral phases from well RN-17 (Reykjanes Peninsula, SW Iceland)

机译:RN-17井(雷克雅尼斯半岛,西南冰岛)矿物相中微量和同位素轻元素的研究

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The light lithophile (Li, Be and B) and halogen (F, Cl) elements are powerful tracers of fluid transfer due to their mobility during high temperature hydrothermal processes and metamorphic devolatilisation. Moreover, although a great deal of studies have been carried out on these elements in whole rock and minerals of altered rocks from divergent and convergent plate margins, an inventory for mineral phases from the altered Icelandic oceanic crust is still incomplete. In the present paper we report the results of in situ EPMA and SIMS investigations on variously altered magmatic (plagioclase and clinopyroxene) and hydrothermal phases (amphibole and epidote) from selected cuttings drilled at different depths (400 - 3000 m) of the well RN-17, Reykjanes geothermal system (SW Iceland). Our study has benefited from the use of high-magnification SEM investigations; from ICP-MS on Li, P-TIMS determinations of boron isotope composition (δ~(11)B) and ID analyses of B contents on the whole rock. Particularly, SIMS data on epidote have shown that alteration beneath Reykjanes has been more efficient in the shallow and intermediate cuttings, while whole rock data on boron isotope composition have revealed that the alteration has been caused firstly by δ_(11)B-poor fluids and successively by δ~(11)B-rich seawater-hydrothermal fluids.
机译:轻的亲石物质(Li,Be和B)和卤素(F,Cl)元素是流体转移的有力示踪剂,因为它们在高温水热过程和变质脱挥发分过程中具有流动性。此外,尽管已经对整个岩石和来自不同和收敛的板块边缘的蚀变岩石的矿物进行了大量研究,但是来自蚀变的冰岛洋壳的矿物相的清单仍然不完整。在本文中,我们报告了在RN-井的不同深度(400-3000 m)钻探的选定岩屑上对各种蚀变岩浆(斜长石和斜生辉岩)和热液相(闪石和附子)进行原位EPMA和SIMS研究的结果。 17,雷克雅尼斯地热系统(冰岛西南部)。我们的研究得益于高倍扫描电镜的研究。 ICP-MS对锂进行测定,用P-TIMS测定硼同位素(δ〜(11)B)以及整个岩石中B含量的ID分析​​。尤其是,SIMS的史密斯数据显示,雷克雅尼斯下方的蚀变在浅层和中层钻屑中更为有效,而整个岩石中有关硼同位素组成的数据表明,这种变化首先是由δ_(11)B贫乏流体引起的,而富含δ〜(11)B的海水热液。

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