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首页> 外文期刊>International Geology Review >Geochemistry of basaltic lavas from the southern Lau Basin: input of compositionally variable subduction components
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Geochemistry of basaltic lavas from the southern Lau Basin: input of compositionally variable subduction components

机译:劳盆地南部玄武岩熔岩的地球化学:俯冲成分变化成分的输入

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摘要

We present new major element, trace element, and Sr-Nd-Pb isotope data for 18 basaltic lavas and six glasses collected in situ from the Eastern Lau Spreading Centre (ELSC) and the Valu Fa Ridge (VFR). All lava samples are aphanitic and contain rare plagioclase and clinopyroxene microlites and microphenocrysts. The rocks are sub-alkaline and range from basalt and basaltic andesite to more differentiated andesite. In terms of trace element compositions, the samples are transitional between typical normal mid-ocean ridge basalt (MORB) and island arc basalt. Samples from the VFR have higher large ion lithophile element/high field strength element ratios (e.g. Ba/Nb) than the ELSC samples. VFR and ELSC Sr-Nd isotopic compositions plot between Indian MORB and Tonga arc lavas, but VFR samples have higher 87Sr/86Sr for a given 143Nd/144Nd ratio than ELSC analogues. The Pb isotopic composition of ELSC lavas is more Indian MORB-like, whereas that of VFR lavas is more Pacific MORB-like. Our new data, combined with literature data for the Central Lau Spreading Centre, indicate that the mantle beneath the ELSC and VFR spreading centres was originally of Pacific type in composition, but was displaced by Indian-type mantle as rifting propagated to the south. The mantle beneath the spreading centres also was variably affected by subduction-induced metasomatism, mainly by fluids released from the altered, subducting oceanic crust; the influence of these components is best seen in VFR lavas. To a first approximation, the effects of underflow on the composition and degree of partial melting of the mantle source of Lau spreading centre lavas inversely correlate with distance of the spreading centres from the Tonga arc. Superimposed on this general process, however, are the effects of the local geographic contrasts in the composition of subduction components. The latter have been transferred mainly by dehydration-generated fluids into the mantle beneath the Tonga supra-subduction zone.View full textDownload full textKeywordsEastern Lau Spreading Centre, Valu Fa Ridge, supra-subduction zone, back-arc basin lavas, southern Lau BasinRelated 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/10.1080/00206814.2012.664031
机译:我们提供了从东劳氏扩散中心(ELSC)和Valu Fa Ridge(VFR)现场采集的18个玄武岩熔岩和6个玻璃的新的主要元素,痕量元素和Sr-Nd-Pb同位素数据。所有的熔岩样品都是泛晶石质的,并且含有稀有的斜长石和斜辉石微晶和微隐晶。岩石是次碱性的,范围从玄武岩和玄武质安山岩到更分化的安山岩。就痕量元素组成而言,样品在典型的正常大洋中脊玄武岩(MORB)和岛弧玄武岩之间过渡。来自VFR的样品比ELSC样品具有更高的大离子亲锂元素/高场强元素比率(例如Ba / Nb)。在印度MORB和汤加弧熔岩之间绘制了VFR和ELSC Sr-Nd同位素组成,但是对于给定的 143 ,VFR样品具有更高的 87 Sr / 86 Sr。 sup> Nd / 144 Nd比ELSC类似物。 ELSC熔岩的Pb同位素组成更像印度的MORB,而VFR熔岩的Pb同位素组成更像太平洋的MORB。我们的新数据,再加上中央劳氏扩散中心的文献数据,表明ELSC和VFR扩散中心下方的地幔成分最初是太平洋型的,但随着裂谷向南扩散,它被印度型地幔所取代。俯冲引起的交代作用,主要是由改变后的俯冲洋壳释放出的流体,对扩散中心下方的地幔也有不同的影响。这些成分的影响最好在VFR熔岩中看到。初步估算,底流对Lau扩散中心熔岩地幔源组成和部分融化程度的影响与扩散中心距汤加弧的距离成反比。然而,在俯冲分量的组成上叠加了当地地理对比的影响。后者主要是由脱水生成的流体转移到汤加超俯冲带下方的地幔中。查看全文下载全文关键词东劳扩散中心,Valu Fa Ridge,超俯冲带,弧后盆地熔岩,劳盆地南部addthis_config = {ui_cobrand:“泰勒和弗朗西斯在线”,servicescompact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00206814.2012.664031

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