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首页> 外文期刊>Russian Geology and Geophysics >Mobility of elements in a continental subduction zone: evidence from the UHP metamorphic complex of the Kokchetav massif
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Mobility of elements in a continental subduction zone: evidence from the UHP metamorphic complex of the Kokchetav massif

机译:大陆俯冲带中元素的活动性:来自科科切夫地块的超高压变质复合体的证据

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We studied clastics of high-alumina garnet-kyanite-mica schists and garnet-kyanite-quartz granofelses, including diamond-bearing ones, found in the eluvial sediments near Lake Barchi. In contents of major elements the studied rocks correspond to argillaceous shales. The garnet-kyanite-quartz granofelses are poorer in K (0.49-1.35 wt.% K2O) than the garnet-kyanite-mica schists (4.9-2.2 wt.% K2O) but have the same contents of other major components. The REE patterns of most of the garnet-kyanite-phengite schists are similar to those of the Post-Archean Australian Shale (PAAS) ((x) over bar (La/Yb) =13). All garnet-kyanite-quartz rocks are much stronger depleted in LREE ((x) over bar (La/Yb) =1.4) and other incompatible elements. Our studies show that allanite and monazite are the main concentrators of LREE and Th in the garnet-kyanite-phengite rocks of the Barchi site. Monazite, occurring as inclusions in garnet, contains not only LREE but also Th, U, and Pb. Rutile of the nondepleted rocks is enriched in Fe and Nb impurities only. The garnet-kyanite-quartz granofelses bear rutile, apatite, and xenotime as accessory phases. Rutile of the depleted rocks shows wide variations in contents of Nb, Ta, and V impurities. In places, the contents of Nb and Ta reach 10.5 and 2.3 wt.%, respectively. The rutile decomposes into rutile with Nb (1.4 wt.%) and Fe (0.87 wt.%) impurities and titanium oxide rich in Fe (6.61 wt.%), Nb (up to 20.8 wt.%), and Ta (up to 2.81%) impurities. Based on the measured contents of incompatible elements in differently depleted high-alumina rocks, the following series of element mobility during UHP metamorphism has been established: Th > Ce > La > Pr > Nd > K > Ba > Rb > Cs > Sm > Eu. The contents of U, P, and Zr in the depleted rocks are similar to those in the nondepleted rocks. The studies have shown that metapelites subducted to the depths with diamond stability conditions can be depleted to different degrees. This might be either due to their exhumation from different depths of the subduction zone or to the presence of an external source of water controlling the temperature of dissolution of phengite and the formation of supercritical fluid/melt. (C) 2015, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:我们研究了在巴尔奇湖附近的沉积物中发现的高铝石榴石-蓝晶石-云母片岩和石榴石-蓝晶石-石英花岗石,包括含金刚石的碎屑岩。在主要元素的含量上,研究的岩石对应于泥质页岩。石榴石-蓝晶石-石英花岗岩体的钾含量(0.49-1.35 wt。%K2O)比石榴石-蓝晶石-云母片岩(4.9-2.2 wt。%K2O)差,但其他主要成分的含量相同。大多数石榴石-蓝晶石-辉长岩片岩的REE模式与后Archean澳大利亚页岩(PAAS)相似((x)超过bar(La / Yb)= 13)。所有石榴石-蓝晶石-石英岩石的LREE((x)超过bar(La / Yb)= 1.4)和其他不相容元素的消耗都更强。我们的研究表明,在Barchi站点的石榴石-蓝晶石-辉石岩中,尿囊石和独居石是LREE和Th的主要浓缩物。独居石以石榴石的内含物形式存在,不仅含有稀土元素,而且还含有Th,U和Pb。未耗尽岩石的金红石仅富含Fe和Nb杂质。石榴石-蓝晶石-石英花岗石具有金红石,磷灰石和xenotime作为辅助相。贫化的金红石的Nb,Ta和V杂质含量变化很大。在某些地方,Nb和Ta的含量分别达到10.5和2.3 wt。%。金红石分解为Nb(1.4 wt。%)和Fe(0.87 wt。%)杂质以及富含Fe(6.61 wt。%),Nb(至20.8 wt。%)和Ta(至多2.81%)杂质。根据不同贫化高铝岩中不相容元素的含量,建立了UHP变质过程中元素迁移的以下系列:Th> Ce> La> Pr> Nd> K> Ba> Rb> Cs> Sm> Eu 。贫化岩石中的U,P和Zr含量与非贫化岩石中的相似。研究表明,在金刚石稳定条件下俯冲到深处的变质岩可以不同程度地消耗掉。这可能是由于它们从俯冲带的不同深度发掘出来,或者是由于存在外部水源的存在,该外部水源控制了硫铁矿的溶解温度和超临界流体/熔体的形成。 (C)2015,V.S. Sobolev IGM,RAS的西伯利亚分公司。由Elsevier B.V.发布。保留所有权利。

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