海洋岛屿玄武岩的氦和碳同位素特征:福戈火山(佛得角群岛)的启示

IF 4.8 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
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引用次数: 0

摘要

海洋岛玄武岩(OIB)所携带的表晶中夹杂的流体包裹体(FI)包含了有关其地幔源中挥发物的丰度和来源的关键信息。在这里,我们介绍了从佛得角群岛(大西洋东部)唯一经常活跃的火山--福戈的飞地、熔岩、凝灰岩和火山气体样品中提取的橄榄石和霞石包裹的 FI 的惰性气体(He-Ne-Ar)和碳(C)同位素新结果,为我们了解全球海洋岛岩浆中的挥发性地球化学增添了新的知识。通过 FI 和火山口熔岩,将福戈火山的 3He/4He 特征确定为 7.14-8.44 Rc/Ra(其中 RC 为空气校正 3He/4He 同位素比值,Ra 为空气中的相同比值),这属于典型的 MORB(大洋中脊玄武岩)地幔。FI 和熏孔中 CO2 的碳同位素比值(δ13C 与 Pee Dee Belemnite 的比值)在 -6.04 到 -4.41 ‰ 之间。我们确定了δ13C和He/Ar*随FI夹带压力的系统变化(根据主矿物气压测定法和FI微热测定法的组合估算),并据此建立了地幔-地壳岩浆储存系统的挥发性脱气模型。该模型预测了地幔在 ∼2200 兆帕(∼77 千米)熔化形成的初级熔体中碳的地壳样特征(δ13C 为-0.4 ± 1.0 ‰),以及源 He/Ar* 比率为 0.90-0.24 ,这表明地壳成分的富碳熔体/流体对地幔进行了不同程度的贫化变质。我们还利用我们的结果来描述来自 OIB 的 C 和 He 同位素组成的区域(佛得角群岛和加那利群岛)和全球趋势。通过与其他几个有δ13C资料的OIB地点进行比较,我们提出,在全球范围内,OIB岩浆活动中可能经常出现富碳地壳成分,但往往被岩浆脱气过程中的同位素分馏所掩盖。此外,我们还发现,在区域尺度上,OIB尺度的He同位素与各个岛屿下方地幔的部分熔化程度成反比(根据喷发玄武岩的La/Yb比率推断)。更广泛地说,我们的研究结果证实了以前在 OIB He 同位素特征、羽流浮力通量和上覆板块速度之间建立的全球关系。在这种解释中,福戈的类似于 MORB 的 3He/4He (8 ± 1 Ra)反映了(i)中低岩浆生产力、(ii)相对较低的羽流浮力通量(∼1.1 Mg/s)和(iii)上覆板块缓慢的平均速度(∼3 厘米/年)的综合作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The helium and carbon isotopic signature of Ocean island basalts: Insights from Fogo volcano (Cape Verde archipelago)

Fluid inclusions (FI) entrapped in phenocrysts carried by Ocean Island Basalts (OIB) contain key information on volatiles’ abundance and origin in their mantle sources. Here, we add new piece of knowledge to our understanding of volatile geochemistry in global OIB magmas, by presenting new noble gas (He-Ne-Ar) and carbon (C) isotope results for olivine- and clinopyroxene-hosted FI from enclaves, lavas, tephra and volcanic gas samples from Fogo, the only frequently active volcano at the Cape Verde archipelago (eastern Atlantic Ocean). FI, together with crater fumaroles, constrain the Fogo 3He/4He signature at 7.14–8.44 Rc/Ra (where RC is the air-corrected 3He/4He isotope ratio, and Ra is the same ratio in air), which is within the typical MORB (Mid-Ocean Ridge Basalt) mantle. The carbon isotopic ratio (δ13C vs. Pee Dee Belemnite) of CO2 in FI and fumaroles range from -6.04 to -4.41 ‰. We identify systematic variations of δ13C and He/Ar* with FI entrapment pressure (estimated from a combination of host mineral barometry and FI microthermometry), from which we develop a model for volatile degassing in the mantle-to-crustal magma storage system. The model predicts a crustal-like signature for carbon (δ13C of -0.4 ± 1.0 ‰) in primary melts formed by mantle melting at ∼2200 MPa (∼77 km) and a source He/Ar* ratio of 0.90–0.24, which are indicative of variably depleted mantle metasomatized by carbon enriched melts/fluids from a crustal component. We also use our results to characterise regional (in the Cape Verde and Canary archipelagos) and global trends in C and He isotope composition from OIB. From a comparison with the few other OIB localities for which δ13C are available, we propose that a carbon enriched crustal component could be recurrent at a global scale in OIB magmatism, although often masked by isotope fractionation during magmatic degassing. We additionally find that, at regional scale, He isotopes in OIB scale inversely correlate with the degree of partial melting of the mantle beneath individual islands’ (inferred from the La/Yb ratio of erupted basalts). More widely, our results corroborate previously established global relationships between OIB He isotopic signature, plume buoyancy flux and overlying plate velocity. In this interpretation, the MORB-like 3He/4He (8 ± 1 Ra) at Fogo reflects a combination of (i) low to medium magma productivity, (ii) relatively low plume buoyancy flux (∼1.1 Mg/s), and (iii) slow average velocity (∼3 cm/yr) of the overlying plate.

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来源期刊
Earth and Planetary Science Letters
Earth and Planetary Science Letters 地学-地球化学与地球物理
CiteScore
10.30
自引率
5.70%
发文量
475
审稿时长
2.8 months
期刊介绍: Earth and Planetary Science Letters (EPSL) is a leading journal for researchers across the entire Earth and planetary sciences community. It publishes concise, exciting, high-impact articles ("Letters") of broad interest. Its focus is on physical and chemical processes, the evolution and general properties of the Earth and planets - from their deep interiors to their atmospheres. EPSL also includes a Frontiers section, featuring invited high-profile synthesis articles by leading experts on timely topics to bring cutting-edge research to the wider community.
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