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Spatial distribution of helium isotopes in Icelandic geothermal fluids and volcanic materials with implications for location, upwelling and evolution of the Icelandic mantle plume

机译:冰岛地热液中氦同位素的空间分布和冰岛地幔羽流的影响,升高和演化影响

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The distribution of helium isotope ratios (He-3/He-4) in Icelandic geothermal fluids, volcanic glasses and phyric lavas is investigated. Along with presenting a new helium isotope dataset using phyric lavas largely from off-rift regions, we compiled published data and constructed a database of all available helium isotope data from Iceland. The new dataset reveals an exceptionally high He-3/He-4 ratio from a phyric lava in NW-Iceland (47.5 R-A, where R-A is the He-3/He-4 ratio of air), which is among the highest values measured in any mantle-derived magma to date. Modifications of primary (i.e., mantle-derived) helium isotope ratios, due to additions of air-derived helium and He from radiogenic ingrowth, were evaluated and the database was filtered accordingly. The geographical information system ArcGIS (ESRI) was used to perform spatial analysis on the filtered database and the interpolation method, Natural Neighbor, was used to calculate representative helium isotope ratios for all parts of Iceland, including off-rift regions. The results show that helium isotope ratios for the whole of Iceland vary from 5.1 to 47.5 R-A. However, this study allows for a fine-scale distinction to be made between individual rift segments and off-rift regions. The results clearly reveal that each rift zone has its own distinctive mean isotope signature: 12-17 R-A in the Western Rift Zone, 8-11 R-A in the Northern Rift Zone and 18-21 R-A in the Eastern Rift Zone. Our isoscape map places new constraints on a previously inferred high-helium plateau region in central Iceland (Breddam a al., 2000). The plateau continues southward along the propagating Eastern Rift Zone and through to the South Iceland Seismic Zone and the Mid-Iceland belt. Its location coincides with many geological features, e.g., eruption rates, location of abandoned rift segments, seismic velocity and gravity anomalies. Such high helium isotope ratios have been associated with undegassed and primordial mantle sources t
机译:研究了冰岛地热流体,火山玻璃和凤梨岩中的氦同位素比(HE-3 / HE-4)的分布。除了在缺陷地区使用斑岩熔岩呈现新的氦同位素数据集,我们编制了已发布的数据并从冰岛构建了所有可用氦同位素数据的数据库。新数据集显示了NW-冰岛(47.5 RA)的富力熔岩的特别高的HE-3 / HE-4比例(其中RA是HE-3 / HE-4的空气比例),这是测量的最高值之​​一迄今为止的任何地幔派生的岩浆。评估由于增加空气源氦和来自辐射性发光的原发性(即披风衍生的)氦同位素比的修饰,并相应地过滤数据库。地理信息系统ArcGIS(ESRI)用于对滤波数据库的空间分析以及插值方法,天然邻居用于计算冰岛所有部分的代表性氦同位素比,包括离裂区域。结果表明,整个冰岛的氦同位素比率从5.1到47.5 r-a变化。然而,这项研究允许在各个裂缝区段和离裂区域之间进行微尺度区分。结果清楚地表明,每个裂口区都有自己独特的平均同位素签名:西部裂口区12-17 r-a,北裂口区8-11 r-a,东部裂痕区18-21 r-a。我们的ISOSCAPE地图将在冰岛中部(Breddam A,2000)中的先前推断的高氦气高原地区展示了新的约束。高原沿着东部裂缝区展开,进入南冰兰地震区和中冰腰带。其位置与许多地质特征恰逢爆发率,放弃裂缝段的位置,地震速度和重力异常。这种高氦同位素比已经与阳离和原始地幔源T有关

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