首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Apparent decoupling of the He and Ne isotope systematics of the Icelandic mantle: The role of He depletion, melt mixing, degassing fractionation and air interaction
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Apparent decoupling of the He and Ne isotope systematics of the Icelandic mantle: The role of He depletion, melt mixing, degassing fractionation and air interaction

机译:冰岛地幔中He和Ne同位素系统的表观解耦:He耗竭,熔体混合,脱气分馏和空气相互作用的作用

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摘要

We present new He-Ne data for geothermal fluids and He-Ne-Ar data for basalts from throughout the Icelandic neovolcanic zones and older parts of the Icelandic crust. Geothermal fluids, subglacial glasses, and mafic phenocrysts are characterized by a wide range in helium isotope ratios (~3He/~4He) encompassing typical MORB-like ratios through values as high as 36.8 R_A (where R_A=air ~3He/~4He). Although neon in geothermal fluids is dominated by an atmospheric component, samples from the northwest peninsula show a small excess of nucleogenic ~(21)Ne, likely produced in-situ and released to circulating fluids. In contrast, geothermal fluids from the neovolcanic zones show evidence of a contribution of mantle-derived neon, as indicated by ~(20)Ne enrichments up to 3% compared to air. The neon isotope composition of subglacial glasses reveals that mantle neon is derived from both depleted MORB-mantle and a primordial, 'solar' mantle component. However, binary mixing between these two endmembers can account for the He-Ne isotope characteristics of the basalts only if the ~3He/~(22)Ne ratio of the primordial mantle endmember is lower than in the MORB component. Indeed, the helium to neon elemental ratios (~4He/~(21)Ne* and ~3He/~(22)Ne_s where ~(21)Ne*=nucleogenic ~(21)Ne and ~(22)Ne_s='solar'-derived ~(22)Ne) of the majority of Icelandic subglacial glasses are lower than theoretical values for Earth's mantle, as observed previously for other OIB samples. Helium may be depleted relative to neon in high-~3He/~4He ratio parental melts due to either more compatible behavior during low-degree partial melting or more extensive diffusive loss relative to the heavier noble gases. However, Icelandic glasses show higher ~4He/~(40)Ar* (~(40)Ar*=radiogenic Ar) values for a given ~4He/~(21)Ne* value compared to the majority of other OIB samples: this observation is consistent with extensive open-system equilibrium degassing, likely promoted by lower confining pressures during subglacial eruptions of Icelandic lavas. Taken together, the He-Ne-Ar systematics of Icelandic subglacial glasses are imprinted with the overlapping effects of helium depletion in the high-~3He/~4He ratio parental melt, binary mixing of two distinct mantle components, degassing fractionation and interaction with atmospheric noble gases. However, it is still possible to discern differences in the noble gas characteristics of the Icelandic mantle source beneath the neovolcanic zones, with MORB-like He-Ne isotope features prevalent in the Northern Rift Zone and a sharp transition to more primitive 'solar-like' characteristics in central and southern Iceland.
机译:我们提供了来自整个冰岛新火山区和冰岛地壳较老部分的新的地热流体氦氖数据和玄武岩氦氦氖数据。地热流体,冰下玻璃和镁铁质隐晶岩的特征是氦同位素比率范围很广(〜3He /〜4He),涵盖了典型的MORB类比率,其值高达36.8 R_A(其中R_A = air〜3He /〜4He) 。尽管地热流体中的氖气主要由大气成分控制,但西北半岛的样品显示出少量的核型〜(21)Ne,可能是原位产生并释放到循环流体中。相反,来自新火山区的地热流体显示出地幔衍生的氖的贡献,与空气相比,〜(20)Ne富集高达3%。冰河下玻璃的氖同位素组成表明,地幔氖既来自贫化的MORB地幔,又来自原始的“太阳”地幔组分。但是,只有当原始地幔末端构件的〜3He /〜(22)Ne比低于MORB组分时,这两个末端构件之间的二元混合才能解释玄武岩的He-Ne同位素特征。实际上,氦与氖的元素比(〜4He /〜(21)Ne *和〜3He /〜(22)Ne_s,其中〜(21)Ne * =成核的〜(21)Ne和〜(22)Ne_s ='太阳正如之前在其他OIB样品中所观察到的,大多数冰岛冰河下玻璃的'-(22)Ne)都低于地球地幔的理论值。相对于较重的稀有气体,在低度部分熔化过程中表现出更多的相容性,或者在较广泛的稀有气体中存在更广泛的扩散损失,在高至3He /〜4He比例的母体熔体中,氦气相对于氖可能会耗竭。但是,与其他大多数OIB样品相比,对于给定的〜4He /〜(21)Ne *值,冰岛玻璃显示出更高的〜4He /〜(40)Ar *(〜(40)Ar * =放射性Ar)值:观测结果与广泛的开放系统平衡脱气是一致的,这很可能是由于冰岛熔岩的冰期下喷过程中较低的围压引起的。两者合计,冰岛冰河玻璃的He-Ne-Ar系统在高〜3He /〜4He比例的母体熔体,两种截然不同的地幔组分的二元混合,脱气分馏以及与大气的相互作用中都具有氦耗的重叠效应。稀有气体。然而,仍然有可能辨别新火山带下方冰岛地幔源的稀有气体特征的差异,北裂谷地区普遍存在着类似MORB的He-Ne同位素特征,并迅速向更原始的“太阳系”过渡的特征在冰岛中部和南部。

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