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首页> 外文期刊>The island arc >Trace element compositions of jadeite (+omphacite) in jadeitites from the Itoigawa-Ohmi district, Japan: Implications for fluid processes in subduction zones
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Trace element compositions of jadeite (+omphacite) in jadeitites from the Itoigawa-Ohmi district, Japan: Implications for fluid processes in subduction zones

机译:日本Itoigawa-Ohmi地区的翡翠中的翡翠(+辉石)的微量元素组成:对俯冲带流体过程的影响

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摘要

Trace-element compositions of jadeite (+/- omphacite) in jadeitites from the Itoigawa-Ohmi district of Japan, analyzed by a laser-ablation inductively coupled plasma mass spectrometry technique showed chemical zoning within individual grains and variations within each sample and between different samples. Primitive mantle-normalized patterns of jadeite in the samples generally showed high large-ion lithophile element contents, high light rare earth element/heavy rare earth element ratios and positive anomalies of high field strength elements. The studied jadeitites have no signatures of the protolith texture or mineralogy. Shapes and distributions of minerals coupled with chemical zoning within grains suggest that the jadeitites were formed by direct precipitation of minerals from aqueous fluids or complete metasomatic modification of the precursor rocks by fluids. In either case, the geochemical characteristics of jadeite are highly affected by fluids enriched in both large-ion lithophile elements and high field strength elements. The specific fluids responsible for the formation of jadeitites are related to serpentinization by slab-derived fluids in subduction zones. This process is followed by dissolving high field strength elements in the subducting crust as the fluids continue to circulate into the subducting crusts and serpentinized peridotites. The fluids have variations in chemical compositions corresponding to various degrees of water-rock interactions.
机译:通过激光烧蚀-电感耦合等离子体质谱技术分析了日本Itoigawa-Ohmi地区的翡翠中的翡翠(+/-绿辉石)中的微量元素组成,结果显示单个颗粒内的化学区带以及每个样品之​​间以及不同样品之间的变化。样品中翡翠的原始地幔归一化模式通常显示出高离子的亲石元素含量,轻稀土元素/重稀土元素比率高以及高场强元素的正异常。所研究的翡翠没有原石质地或矿物学特征。矿物的形状和分布,再加上晶粒内的化学分区,表明翡翠是由矿物直接从含水流体中析出或通过流体对前驱岩的完全交代改性而形成的。无论哪种情况,翡翠的地球化学特征都受到富含大离子亲石元素和高场强元素的流体的强烈影响。负责翡翠形成的特定流体与俯冲带中板状流体的蛇纹石化有关。此过程之后,随着流体继续循环到俯冲壳和蛇纹岩化橄榄岩中,将高场强元素溶解在俯冲壳中。流体的化学组成会发生变化,对应于不同程度的水-岩相互作用。

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