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Clarifying the distal to proximal tephrochronology of the Millennium (B-Tm) eruption, Changbaishan Volcano, northeast China

机译:澄清长白山火山千年(B-Tm)火山喷发的近端至近端年代学

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摘要

Tephra dispersed during the Millennium eruption (ME), Changbaishan Volcano, NE China provides one of the key stratigraphic links between Asia and Greenland for the synchronization of palaeoenvironmental records. However, controversy surrounds proximal-distal tephra correlations because (a) the proposed proximal correlatives of the distal ME tephra (i.e. B–Tm) lack an unequivocal chronostratigraphic context, and (b) the ME tephra deposits have not been chemically characterized for a full spectrum of element using grain-specific techniques. Here we present grain-specific glass chemistry, including for the first time, single grain trace element data, for a composite proximal sequence and a distal tephra from Lake Kushu, northern Japan (ca. 1100 km away from Changbaishan). We demonstrate a robust proximal-distal correlation and that the Kushu tephra is chemically associated with the ME/B–Tm. We propose that three of the proximal pyroclastic fall units were erupted as part of the ME. The radiocarbon chronology of the Kushu sedimentary record has been utilised to generate a Bayesian age-depth model, providing an age for the Kushu tephra which is consistent with high resolution ages determined for the eruption and therefore supports our geochemical correlation. Two further Bayesian age-depth models were independently constructed each incorporating one of two ice-core derived ages for the B–Tm tephra, providing Bayesian modelled ages of 933–949 and 944–947 cal AD (95.4%) for the Kushu tephra. The high resolution ice-core tephra ages imported into the deposition models help test and ultimately constrain the radiocarbon chronology in this interval of the Lake Kushu sedimentary record. The observed geochemical diversity between proximal and distal ME tephra deposits clearly evidences the interaction of two compositionally distinct magma batches during this caldera forming eruption.
机译:东北地区长白山火山中的Tephra散布于千年喷发(ME)中,为古环境记录的同步提供了亚洲和格陵兰之间的重要地层联系之一。但是,争议围绕着近端-远端球面相关性,因为(a)所建议的远端ME球面(即B–Tm)的近端相关性缺乏明确的年代地层背景,并且(b)尚未对ME球面的沉积物进行完整的化学表征。使用特定于晶粒的技术分析元素的光谱。在这里,我们介绍了特定晶粒的玻璃化学,包括来自日本北部(距离长白山约1100公里)九州湖的一个复合近端序列和一个远端特非拉的单晶痕量元素数据。我们证明了稳健的近端-远端相关性,并且Kushu球星与ME / B–Tm具有化学联系。我们建议将近端的火裂碎屑下降单元中的三个作为ME的一部分爆发。 Kushu沉积记录的放射性碳年代学已被用于生成贝叶斯年龄深度模型,从而为Kushu tephra提供了一个年龄,该年龄与为喷发确定的高分辨率年龄相一致,因此支持了我们的地球化学相关性。独立构建了另外两个贝叶斯年龄深度模型,每个模型都结合了B–Tm特弗拉的两个冰芯衍生年龄之一,从而为Kushu特弗拉提供了933–949和944–947 cal AD的贝叶斯建模年龄(95.4%)。沉积模型中导入的高分辨率冰芯特弗拉年龄有助于测试并最终限制了库舒湖沉积记录这一间隔内的放射性碳年代学。观察到的近端和远端ME Tephra沉积物之间的地球化学多样性清楚地证明了在该破火山口形成喷发期间,两个成分不同的岩浆批次之间的相互作用。

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    Chen Xuanyu;

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  • 年度 2016
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  • 正文语种 eng
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