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Metasomatism of the peridotites from southern Mariana fore-arc: Trace element characteristics of clinopyroxene and amphibole

机译:马里亚纳南部前弧橄榄岩的交代作用:斜辉石和闪石的微量元素特征

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Modal composition and mineral composition of harzburgites from the southern Mariana fore-arc show that they are highly refractory. There are a few modals of clinopyroxene (0.7 vol %) in harzburgites. Two types of amphibole are found in these harzburgites: magnesiohornblende accompanied by clinopyroxene with higher Al_2O_3 content ( > 7%) and lower Mg; tremolite around orthopyroxene with lower Al_2O_3 content (< 2%) and higher Wg. Trace element of clinopyroxene and two types of amphibole are analyzed. Primitive mantle-normalised REE patterns for clinopyroxene and magnesio hornblende are very similar and both show HREE enrichment relative to LREE, while magnesiohornblende has higher content of trace element than clinopyroxene. The contents of trace element of tremolite are much lower than those of magnesiohornblende. Clinopyroxene shows enrichment of most of the trace element except HREE and Ti relative to clinopyroxene in abyssal peridotites. Petrology and trace element characteristic of clinopyroxene and two types of amphibole indicate that southern Mariana fore-arc harzburgites underwent two stages of metasomatism. The percolation of a hydrous melt led to mobility of Al, Ca, Fe, Mg, Na, and large amounts of trace element. LILE and LREE can be more active in hydrous melt than HREE and Ti, and the activities of most of the trace element except some of LILE are influenced by temperature and pressure.
机译:来自南部马里亚纳弧前的harzburgite的模态组成和矿物组成表明它们是高度难熔的。哈兹伯格氏岩中有一些亚铁氰化萘(0.7%(体积))。在这些哈兹伯格岩中发现了两种类型的角闪石:镁闪石与伴有较高Al_2O_3含量(> 7%)和较低Mg的斜辉石相伴; Al_2O_3含量(<2%)和Wg较高的邻辉石周围的透闪石。分析了斜生辉石和两种类型的闪石的痕量元素。 Clinopyroxene和Magnesio角闪石的原始地幔归一化REE模式非常相似,并且都显示出相对于LREE的HREE富集,而Magnesiohornblende的痕量元素含量高于Clinopyroxene。透闪石中微量元素的含量远低于菱镁矿。在深渊橄榄岩中,除HREE和Ti外,次氯环己烯显示出大多数微量元素的富集。斜辉石和两种类型的角闪石的岩石学和微量元素特征表明,南部马里亚纳弧前哈兹伯格岩经历了交代作用的两个阶段。含水熔体的渗滤导致Al,Ca,Fe,Mg,Na和大量痕量元素的迁移。 LILE和LREE在含水熔体中的活性可能高于HREE和Ti,并且除某些LILE外,大多数痕量元素的活性受温度和压力的影响。

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