首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Trace-element mobilization during Ca-metasomatism along a major fluid conduit: Eclogitization of blueschist as a consequence of fluid-rock interaction
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Trace-element mobilization during Ca-metasomatism along a major fluid conduit: Eclogitization of blueschist as a consequence of fluid-rock interaction

机译:沿主要流体管道的Ca致瘤过程中的微量元素动员:由于流体-岩石相互作用而导致的蓝胶凝析

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摘要

In the subduction complex of the Tianshan mountains, western China, massive blueschist is cross-cut by an eclogite-facies major fluid conduit surrounded by a reaction zone which is mainly composed of omphacite and garnet. Petrological as well as geochemical evidence suggest that formation of the vein and the eclogitic selvage around the vein was caused by fluid infiltration under peak metamorphic conditions of 21 +/- 1.5 kbar and 510 +/- 30 degrees C. The combination of whole-rock with mineral trace-element data as well as mass-balance calculations indicate that substantial differences exist between the unaltered host rock and the part of the system which was altered by fluid-rock interaction. These differences include: (1) depletion of mainly large-ion lithophile elements (LILE) and Li of up to 60% relative to their concentrations in the unaltered host rock; (2) an extreme enrichment of CaO (similar to 115%), Sr and Pb (>300%) in the altered parts of the vein-wall-rock system; (3) redistribution of heavy rare earth elements (HREE) from partly replaced rutile and recrystallized titanite in the blueschist-eclogite transition zone into newly grown garnet rims in the eclogitic selvage around the vein; (4) transformation of high Nb/Ta rutile into low Nb/Ta titanite which is associated with preferred mobilization of Nb over Ta; and (5) decoupling of Zr and Hf from Nb and Ta; the latter are depleted by similar to 30% relative to the unaltered blueschist host rock whereas the former are depleted by only similar to 10%. The prerequisite for the transformation of Ca-poor blueschist (6-7 wt.% CaO) into Ca-rich eclogite (up to 13 wt.% CaO) was the infiltration of a Ca-rich fluid. The release of trace elements can be attributed to partitioning of these elements into the passing fluid phase during dissolution-reprecipitation processes in the course of eclogitization. The reactivity of the precursor mineral assemblage and the chemical gradients between the reacting and passing fluid of the conduit are mainly responsible for trace-element mobilization in the studied samples. The suite of trace elements released upon fluid-induced eclogitization of the reactive wall-rock resembles that in island arc magmas showing strong enrichment of LIL elements, strong depletions in HFS elements and intermediate concentrations of REE.
机译:在中国西部的天山俯冲带中,大量的蓝片岩被一个以榴辉岩和石榴石为主的反应区包围的榴辉岩相主要流体导管横切。岩石学和地球化学证据表明,在峰值变质条件为21 +/- 1.5 kbar和510 +/- 30摄氏度的条件下,流体的浸润导致了静脉的形成和绕静脉的边缘溢流。全岩石的组合矿物微量元素数据以及质量平衡计算的结果表明,未改变的宿主岩与系统的一部分之间存在着实质性的差异,该差异被流体-岩石相互作用所改变。这些差异包括:(1)相对于未改变的基质岩石中主要的大离子亲石元素(LILE)和Li耗竭高达60%; (2)在脉-壁-岩系统的蚀变部分中,CaO(约占115%),Sr和Pb(> 300%)极富集; (3)将重稀土元素(HREE)从在蓝片岩-榴辉岩过渡带中部分取代的金红石和重结晶的钛矿重新分布到在静脉周围的斜边上的新生长的石榴石边缘中; (4)将高Nb / Ta金红石转变为低Nb / Ta钛铁矿,这与Nb优先于Ta的迁移有关。 (5)Zr和Hf与Nb和Ta的解耦;相对于未改变的blueschist母岩,后者的损耗约30%,而前者的损耗仅约10%。贫钙的蓝晶(6-7 wt。%CaO)转变成富钙的榴辉岩(最多13 wt。%CaO)的前提是富钙流体的渗透。微量元素的释放可以归因于在凝固过程中在溶解-再沉淀过程中这些元素分配到通过的液相中。前体矿物组合的反应性以及导管的反应液和通过液之间的化学梯度主要负责所研究样品中的微量元素动员。在流体诱导的反应性岩壁凝结后释放的一系列微量元素类似于岛弧岩浆中的LIL元素富集,HFS元素大量耗竭和REE的中间浓度。

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