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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Geochemical trends across an arc-continent collision zone: magma sources and slab-wedge transfer processes below the Pantar Strait volcanoes, Indonesia
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Geochemical trends across an arc-continent collision zone: magma sources and slab-wedge transfer processes below the Pantar Strait volcanoes, Indonesia

机译:弧-大陆碰撞带的地球化学趋势:印度尼西亚潘塔尔海峡火山下方的岩浆源和板楔楔传输过程

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摘要

Four volcanoes in the Pantar Strait, the westernmost part of the extinct sector of the east Sunda arc, show remarkable across-arc variation in elemental abundances (K2O 1.2 to 4.3%), trace element ratios (Pb/Ce: 0.4 to 0.18; Ce/Yb: 20 to 55) and isotope ratios (Nd-143/Nd-144: 0.5120 to 0.51245; Sr-87/Sr-86: 0.7053 to 0.7068; Pb-206/Pb-204: 19.29 to 19.15). Pb isotopes are decoupled from Sr and Nd isotopes, with the frontal volcanoes showing the higher Nd and Pb and lower Sr isotopic ratios. The isotopic and trace element ratios of the volcanic samples are best explained by modification of a MORB-type source (with Indian Ocean island basalt-type Pb isotopic characteristics) by a fluid and a partial melt of subducted continental material (SCM). The frontal volcano contains the highest proportion of the fluid component, with a small contribution of partial melt. The source of the rear-arc volcano is strongly influenced by a partial melt of SCM that had undergone a previous dehydration event, by which it lost most of its fluid-mobile elements such as Pb. The SCM partial melt was in equilibrium with both rutile and garnet, whereas mantle melting took place in the presence of residual mica. The relatively large across-arc increase in incompatible elements can be explained by a combination of increasing addition of SCM partial melt, changing mantle wedge fertility and smaller degrees of partial melting toward the rear of the arc. Comparison with a more westerly across-arc transect shows that the relatively low Nd-143/Nd-144 ratios of the frontal volcano, and the decoupling of Pb from Sr and Nd isotopes are unique to the Pantar Strait volcanoes. This is likely to reflect magma generation in a collisional environment, where the leading edge of the Australian continent, rather than subducted sediment, contributes to the magma source. Copyright (C) 2002 Elsevier Science Ltd. [References: 78]
机译:Sun他海峡(Sunda弧东绝灭带的最西端)的四座火山在弧上的元素丰度(K2O为1.2至4.3%),微量元素比率(Pb / Ce:0.4至0.18; Ce / Yb:20至55)和同位素比(Nd-143 / Nd-144:0.5120至0.51245; Sr-87 / Sr-86:0.7053至0.7068; Pb-206 / Pb-204:19.29至19.15)。铅同位素与Sr和Nd同位素解耦,额火山显示Nd和Pb较高,而Sr同位素比率较低。火山岩样品的同位素和痕量元素比率最好通过流体和俯冲大陆物质(SCM)的部分熔体对MORB型源(具有印度洋岛屿玄武岩型Pb同位素特征)的修饰来解释。正面火山包含的流体成分比例最高,部分熔体贡献很小。后弧火山的源头受到先前脱水事件引起的SCM部分融化的强烈影响,从而使它失去了大部分可流动的元素,例如Pb。 SCM的部分熔融与金红石和石榴石均处于平衡状态,而地幔熔融则在残留云母的情况下发生。不相容元素的跨弧相对较大的增加可以通过增加SCM部分熔体的添加量,改变地幔楔肥力和向电弧后部较小程度的部分熔体的组合来解释。与偏西弧形横断面的比较表明,额座火山的Nd-143 / Nd-144比率相对较低,以及Pb与Sr和Nd同位素的解耦作用是潘塔尔海峡火山所特有的。这很可能反映了碰撞环境中的岩浆生成,在该环境中,澳大利亚大陆的前缘而不是俯冲的沉积物是岩浆源。版权所有(C)2002 Elsevier Science Ltd. [参考:78]

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