首页> 外文期刊>Journal of earth system science >Extending the limit of widespread dispersed Toba volcanic glass shards and identification of new in-situ volcanic events in the Central Indian Ocean Basin
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Extending the limit of widespread dispersed Toba volcanic glass shards and identification of new in-situ volcanic events in the Central Indian Ocean Basin

机译:扩大广泛分散的ToBA火山玻璃碎片分片的碎片和鉴定中央印度洋盆地的原位原位火山活动

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We report the widespread extent of Toba volcanic glass shards in the Central Indian Ocean Basin. Investigation of four sediment cores (7$^{circ}$a??17$^{circ}$S) revealed several shard-rich horizons (SRH) that provide the first detailed tephrochronology for volcanic glass shards in the CIOB. A comparative study of surface sediments floored with Youngest Toba Tuff (YTT), indicate that irrespective of the rate of sedimentation, YTT in the basin is restricted to a depth of &lt35 cm-bsf. We utilized microtektites (0.77 Ma), associated with the Oldest Toba Tuff (OTT) glass shards, as a proxy for age calculation of the SRH. The results are comparable with well-established ages derived from paleomagnetic and $delta^{18}$O methods for the Leg 21 ODP Site 758. The other significant finding of this study includes the first report of Middle Toba Tuff (equivalent to Layer C) and Layer D that are present between YTT and OTT (Layer E) and also Layers G, H, h, I, J, K, L and M. All these layers correspond with those reported for ODP Site 758. Furthermore, two SRH between layers G and H show signatures of localized in-situ phreatomagmatic origin, suggesting that CIOB is apparently more active a?? tectonically and volcanically than it is presumed.
机译:我们在印度印度洋盆地中报告了托巴火山玻璃碎片的广泛程度。对四个沉积物核心的调查(7 $ ^ { rIN} $ a ?? 17 $ ^地面沉积物与最小ToBA Tuff(YTT)的比较研究表明,无论沉降速率如何,盆地中的YTT都仅限于&LT35cm-BSF的深度。我们利用Microtektites(0.77 mA),与最古老的ToBA Tuff(OTT)玻璃碎片相关联,作为SRH的年龄计算的代理。结果与腿21 ODP网站758的古磁性和$ delta ^ {18}方法的良好成熟年龄相当。该研究的其他显着发现包括中间Toba Tuff的第一个报告(相当于层c)和在YTT和OTT(层E)之间存在的层D以及层G,H,H,I,J,K,L和M.所有这些层对应于ODP位点758的报告的那些。此外,两个层间G和H之间的SRH显示了本地化的原位Phreatomagmatic Origin的签名,表明CIOB显然更活跃A?比推测,构造和火山。

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