A.D. Evans, C.D. Standish, J.A. Milton, A.G. Robbins, D. Craw, G.L. Foster, D.A.H. Teagle
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引用次数: 0
摘要
蛇绿岩化地幔岩石反映了多种蚀变事件的累积总和,但迄今为止,由于对流体-岩石交换示踪剂空间分布的了解有限,识别不同的蛇绿岩化事件仍然具有挑战性。在这里,我们展示了新的高空间分辨率(∼10 μm)硼、镍、钙和锂浓度图,并结合对塞浦路斯特罗多斯蛇绿岩强烈蛇绿岩化地幔橄榄岩的原位硼同位素分析。我们绘制的地图显示,硼的浓度具有强烈的异质性,早期形成的蛇纹石替代橄榄石中的硼浓度较高,而网纹蛇纹石和韧皮辉石中的硼含量则低得多。晚期横切蛇纹石矿脉中的硼含量非常低。相比之下,在较粗尺度上进行的硼同位素测量结果却非常一致(平均值+11.9 ± 3.2 ‰, 1σ, n = 49)。我们认为,高硼蛇纹石反映了塞浦路斯俯冲板块脱水过程中产生的高硼浓度流体对早期普遍蛇纹石化过程的部分保存。随后的中低硼蛇纹石相则反映了低硼浓度陨石水的逐步再结晶和沥滤作用。
Imaging of boron in altered mantle rocks illuminates progressive serpentinisation episodes
Serpentinised mantle rocks reflect the cumulative sum of multiple alteration events, but to date, identifying distinct serpentinisation episodes has remained challenging due to limited knowledge of the spatial distribution of tracers of fluid-rock exchange. Here we present novel high spatial resolution (∼10 μm) boron, nickel, calcium, and lithium concentration maps combined with in situ boron isotope analyses of strongly serpentinised mantle peridotites from the Troodos ophiolite, Cyprus. Our maps indicate strongly heterogenous boron concentrations with high boron concentrations in early formed serpentine replacing olivine but much lower boron contents in mesh-textured serpentine and bastitic pyroxene. Late stage crosscutting serpentine veins have very low boron concentrations. In contrast, boron isotope measurements, made at coarser scales, are remarkably uniform (mean value +11.9 ± 3.2 ‰, 1σ, n = 49). We interpret the high boron serpentine as reflecting the partial preservation of an early pervasive serpentinisation episode by fluids with high boron concentrations sourced from the dehydration of the subducting Cyprus slab. Subsequent serpentine phases with moderate to low boron reflect progressive recrystallisation and leaching by low boron concentration meteoric waters.
期刊介绍:
Geochemical Perspectives Letters is an open access, internationally peer-reviewed journal of the European Association of Geochemistry (EAG) that publishes short, highest-quality articles spanning geochemical sciences. The journal aims at rapid publication of the most novel research in geochemistry with a focus on outstanding quality, international importance, originality, and stimulating new developments across the vast array of geochemical disciplines.