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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井中矿物阶段痕量和同位素光元素的研究(Reykjanes Peninsula,SW冰岛)

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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:光亲石(锂,Be和B)和卤素(F,Cl)的元件是流体转移的强大示踪剂由于在高温水热方法与变质脱挥发分他们的流动性。另外,虽然研究了大量已经在全岩和发散和收敛板块边缘蚀变岩的矿物质这些元素进行的,从改变后的冰岛海洋地壳的矿物相的库存仍然是不完整的。在本文件中,我们报告原位EPMA和SIMS调查对各种变更岩浆选自钻屑在不同深度(400 - 3000米)的结果(斜长石和单斜辉石)和水热相(闪石和绿帘)的阱RN- 17,雷恰内斯海地热系统(SW冰岛)。我们的研究已经从使用高倍率的SEM调查中受益;从硼同位素组合物(δ〜(11)B)和ID的李,P-TIMS确定ICP-MS分析的B中的整个岩石上的内容。特别是,在绿帘SIMS数据表明雷恰内斯海下方改变已经在浅和间伐更有效,而在硼同位素组成整个岩石数据已揭示的改变已经由δ_(11)B-差的流体首先​​引起和先后由δ〜(11)B丰富的海水热液。

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