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Insights from Pb and O isotopes into along-arc variations in subduction inputs and crustal assimilation for volcanic rocks in Java, Sunda arc, Indonesia

机译:从Pb和O同位素到印度尼西亚Sun他弧地区爪哇岛火山岩俯冲输入和地壳同化沿弧变化的见解

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摘要

New Pb isotope data are presented for Gede Volcanic Complex, Salak and Galunggung volcanoes in West Java, Merbabu and Merapi volcanoes in Central Java and Ijen Volcanic Complex in East Java of the Sunda arc, Indonesia. New O isotope data for Merbabu and new geochemical and radiogenic isotope data (Sr-Nd-Hf-Pb) for three West Javanese, upper crustal, Tertiary sedimentary rocks are also presented. The data are combined with published geochemical and isotopic data to constrain the relative importance of crustal assimilation and subducted input of crustal material in petrogenesis in Java. Also discussed are the significance of limestone assimilation in controlling the geochemical and isotopic characteristics of erupted Javanese rocks and the geochemical impact upon central and eastern Javanese arc rocks due to the subduction of Roo Rise between 105 and 109°E. The negative correlation between Pb isotopes and SiO₂, combined with mantle-like δ¹⁸O values in Gede Volcanic Complex rocks, West Java, are most likely explained by assimilation of more isotopically-primitive arc rocks and/or ophiolitic crust known to outcrop in West Java. The negative Pb isotope-SiO₂ trend cannot be explained by assimilation of the known compositions of the upper crustal rocks. A peak in δ¹⁸O whole-rock and mineral values in Central Javanese volcanic rocks (Merbabu and Merapi) combined with along-arc trends in Sr isotope ratios suggest that a different or additional crustal assimilant exerts control on the isotopic composition of Central Javanese volcanic rocks. This assimilant (likely carbonate material) is characterised by high δ¹⁸O and high Sr isotope ratio but is not particularly elevated in its Pb isotopic ratio. Once the effects of crustal assimilation are accounted for, strong East to West Java regional variations in Ba concentration, Ba/Hf ratio and Pb isotopic composition are evident. These differences are attributed to heterogeneity in the subducted source input component along the island: a more radiogenic Pb isotopic, lower Ba/Hf component (detrital-rich subducted sediment) in West Java and a less radiogenic Pb isotopic, high Ba/Hf component (attributed to a greater AOC/sediment fluid component and/or dominance of pelagic, clay-rich subducted sediment) in East and possible Central Java. The subduction of the Roo Rise, an area of oceanic basement relief, is thought to contribute significantly to the spatial geochemical source input variations exhibited by Javanese volcanoes.
机译:给出了西爪哇省的盖德火山群,Salak和Galunggung火山,中爪哇省的Merbabu和Merapi火山以及印度尼西亚the他弧东爪哇的伊真火山群的新的Pb同位素数据。还介绍了默巴布的新O同位素数据以及西爪哇,上地壳,第三纪沉积岩的新地球化学和放射性同位素数据(Sr-Nd-Hf-Pb)。这些数据与已发布的地球化学和同位素数据相结合,以限制地壳同化和地壳物质俯冲输入在Java的成岩作用中的相对重要性。还讨论了石灰石同化作用在控制爪哇火山喷发岩石的地球化学和同位素特征方面的重要性,以及由于Roo Rise在105至109°E俯冲作用对爪哇中东部弧岩的地球化学影响。西爪哇Gede火山群岩石中Pb同位素与SiO 2的负相关性,再加上地幔状的δ1 O值,很可能是由于吸收了西爪哇地区露头更多的同位素-原始原生弧质岩石和/或脂石质地壳所致。 Pb同位素-SiO 2的负趋势不能通过上地壳岩石已知成分的同化来解释。爪哇中部火山岩(Merbabu和Merapi)的δ10 O全岩峰和矿物值峰值,加上弧形的Sr同位素比趋势表明,不同或附加的地壳同化剂对爪哇中部火山岩的同位素组成起了控制作用。这种同化物(可能是碳酸盐材料)的特征是高δ10O和高Sr同位素比,但其Pb同位素比并未特别提高。一旦考虑了地壳同化的影响,就可以清楚地看到东爪哇岛到西爪哇岛在Ba浓度,Ba / Hf比和Pb同位素组成方面的强烈区域差异。这些差异归因于沿岛的俯冲源输入组分的异质性:西爪哇岛的放射源铅同位素较高,Ba / Hf分量较低(富含碎屑的俯冲沉积物),放射源的铅同位素较少,Ba / Hf分量较高(归因于东部和可能的中爪哇地区更大的AOC /沉积流体成分和/或上层,富含粘土的俯冲沉积物的优势。 Roo Rise的俯冲作用是海洋地下室的一个起伏区域,被认为对爪哇火山所表现出的空间地球化学源输入变化有重大贡献。

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