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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Boron cycling by subducted lithosphere; insights from diamondiferous tourmaline from the Kokchetav ultrahigh-pressure metamorphic belt
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Boron cycling by subducted lithosphere; insights from diamondiferous tourmaline from the Kokchetav ultrahigh-pressure metamorphic belt

机译:俯冲岩石圈的硼循环; Kokchetav超高压变质带中含钻石碧玺的真知灼见

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摘要

Subduction of lithosphere, involving surficial materials, into the deep mantle is fundamental to the chemical evolution of the Earth. However, the chemical evolution of the lithosphere during subduction to depth remains equivocal. In order to identify materials subjected to geological processes near the surface and at depths in subduction zones, we examined B and Li isotopes behavior in a unique diamondiferous, K-rich tourmaline (K-tourmaline) from the Kokchetav ultrahigh-pressure metamorphic belt. The K-tourmaline, which includes microdiamonds in its core, is enriched in B-11 relative to B-10 (delta B-11 = -1.2 to +7.7) and Li-7 relative to Li-6 (delta Li-7 = -1.1 to +3.1). It is suggested that the K-tourmaline crystallized at high-pressure in the diamond stability field from a silicate melt generated at high-pressure and temperature conditions of the Kokchetav peak metamorphism. The heavy isotope signature of this K-tourmaline differs from that of ordinary Na-tourmalines in crustal rocks, enriched in the light B isotope (delta B-11 = -16.6 to -2.3), which experienced isotope fractionation through metamorphic dehydration reactions. A possible source of the heavy B-isotope signature is serpentine in the subducted lithospheric mantle. Serpentinization of the lithospheric mantle, with enrichment of heavy B-isotope, can be produced by normal faulting at trench-outer rise or trench slope regions, followed by penetration of seawater into the lithospheric mantle. Serpentine breakdown in the lithospheric mantle subducted in subarc regions likely provided fluids with the heavy B-isotope signature, which was acquired during the serpentinization prior to subduction. The fluids could ascend and cause partial melting of the overlying crustal layer, and the resultant silicate melt could inherit the heavy B-isotope signature. The subducting lithospheric mantle is a key repository for modeling the flux of fluids and associated elements acquired at a near the surface into the deep mantle. (c) 2008 Elsevier Ltd. All rights reserved.
机译:将涉及表层物质的岩石圈俯冲到地幔深处是地球化学演化的基础。但是,俯冲到深度期间岩石圈的化学演化仍然是模棱两可的。为了识别在俯冲带的地表附近和深处经历地质过程的物质,我们研究了来自Kokchetav超高压变质带的独特的富含钻石,富含K的电气石(K-电气石)中的B和Li同位素行为。相对于B-10(δB-11 = -1.2至+7.7),K-电气石(其核心包括微金刚石)的B-11含量较高,相对于Li-6(δLi-7 = -1.1至+3.1)。建议在金刚石稳定场中,在Kokchetav峰变质的高压和高温条件下产生的硅酸盐熔体中,在高压下结晶出K电气石。该K-电气石的重同位素特征不同于地壳岩石中的普通Na-电气石,富含轻质B同位素(δB-11 = -16.6至-2.3),轻质B同位素通过变质脱水反应经历了同位素分级分离。重的B同位素特征的可能来源是俯冲的岩石圈地幔中的蛇纹石。岩石圈地幔的蛇形化,富含重的B同位素,可通过在沟外上升或沟渠斜坡区域正常断裂,然后将海水渗透到岩石圈地幔中来产生。在亚弧区域俯冲的岩石圈地幔中的蛇形破坏很可能为流体提供了重的B同位素特征,这是在俯冲之前的蛇形化过程中获得的。流体可能上升并引起上覆地壳层的部分熔融,并且生成的硅酸盐熔体可能继承了重的B同位素特征。俯冲的岩石圈地幔是一个关键的资料库,用于对在近地表采集到深地幔的流体和相关元素的通量进行建模。 (c)2008 Elsevier Ltd.保留所有权利。

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