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首页> 外文期刊>International Geology Review >Elemental mobility in subduction metamorphism: insight from metamorphic rocks of the Franciscan Complex and the Feather River ultramafic belt, California
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Elemental mobility in subduction metamorphism: insight from metamorphic rocks of the Franciscan Complex and the Feather River ultramafic belt, California

机译:俯冲变质作用中的元素迁移性:方济各会联合体和羽毛河超镁铁质带的变质岩的见解,加利福尼亚

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The degree of element mobility in subduction metamorphism has generated much debate; some workers advocate considerable mobility during metamorphism, whereas others postulate minimal mobility. We assess this issue by examination of major and trace element concentrations and Pb-, Nd-isotopic data for 39 mafic metavolcanic rocks from the Franciscan subduction complex, related units of coastal California, and the Feather River ultramafic belt of the northern Sierra Nevada, California; these samples span a wide range of metamorphic grade. We conclude that these rocks, despite their metamorphism up to eclogite facies, preserve protolith major and trace elemental compositions and isotopic ratios, with the exception of some mobile large ion lithophile elements such as Ba, Pb, and to a smaller extent La, U, and Sr. Thus subduction metamorphism of these metabasalts occurred in a largely closed system. Lack of light rare earth element enrichment in the rocks demonstrates lack of chemical exchange with subducted metasediments. Relatively low SiO2 content (48 wt.%) of many of the metamorphic rocks and the lack of correspondence between silica depletion and metamorphic grade suggests that the silica depletion resulted from seafloor hydrothermal alteration before subduction. In spite of demonstrated mobility of Pb, and possible mobility of Nd, isotopic ratios of Pb and Nd were not modified during subduction metamorphism. In contrast to our results from metabasaltic rocks, our analysis of actinolite-rich rinds from high-grade Franciscan mélange blocks suggests some chemical exchange between metachert and the overlying mantle. The increasing enrichment in Ba and Pb with increasing metamorphic grade suggests that Ba- and Pb-rich fluids interacted more intensely with metabasalt at the higher grades of metamorphism. Comparison of these results with studies of the active Mariana forearc suggests that fluids interacting with the mantle wedge up-dip of the region of magma genesis are derived from subducting sediments overlying the down-going plate.View full textDownload full textKeywordselement mobility in subduction metamorphism, major and trace elements, Nd, Sr, and Pb isotopes, Franciscan subduction complex, high-grade metamorphism, Feather River ultramafic beltRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00206814.2011.567087
机译:俯冲变质作用中元素迁移的程度引起了很多争论。一些工人主张在变质过程中有相当大的流动性,而另一些工人则假定最小的流动性。我们通过检查来自方济各斯俯冲复合体,加利福尼亚沿海相关单元以及加利福尼亚内华达山脉北部的羽毛河超镁铁质带的39个镁铁质超火山岩的主要和微量元素浓度以及Pb-,Nd-同位素数据,评估了该问题;这些样品的变质等级范围很广。我们得出的结论是,这些岩石尽管变质到榴辉岩相,但仍保留了原石的主要和痕量元素组成以及同位素比,除了一些可移动的大型离子亲石元素(例如Ba,Pb和较小程度的La,U,因此,这些玄武岩的俯冲变质作用发生在一个封闭的系统中。岩石中缺乏轻稀土元素富集表明与俯冲的沉积物缺乏化学交换。许多变质岩中的SiO 2 含量相对较低(<48 wt。%),并且二氧化硅耗竭与变质品位之间缺乏对应关系,这表明二氧​​化硅耗竭是俯冲前海底热液蚀变造成的。尽管已证明了Pb的迁移率和Nd的可能迁移率,但在俯冲变质作用中Pb和Nd的同位素比并未改变。与我们从准玄武质岩石中获得的结果相反,我们对来自高等方济各斯混砂岩块的富含阳起石的外皮的分析表明,半软cher与上覆地幔之间存在某种化学交换。随着变质等级的增加,Ba和Pb的富集度增加表明,富含Ba和Pb的流体与变质等级越高的玄武岩相互作用越强。将这些结果与活跃的玛丽安娜前臂的研究进行比较表明,与岩浆成因区域的地幔楔上倾相互作用的流体来自下沉板块上的俯冲沉积物。主要和微量元素,Nd,Sr和Pb同位素,方济各斯俯冲复合体,高级变质作用,羽毛河超镁铁质带相关的var addthis_config = { Delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00206814.2011.567087

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