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Distal occurrence of mid-Holocene Whakatane Tephra on the Chatham Islands, New Zealand, and potential for cryptotephra studies

机译:在新西兰查塔姆群岛上发生的全新世中生华卡塔尼·特弗拉的远距离发生和潜在的隐胎研究

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摘要

The Whakatane Tephra, a rhyolitic tephra erupted ca. 5500 cal. BP from Okataina Volcanic Centre, central North Island, has been identified on the Chatham Islands which lie ˜900 km east of Christchurch, New Zealand. The visible tephra layer, ˜5 mm in thickness and preserved within peat on Pitt Island, was identified using both radiocarbon dating and analysis of glass shards by electron microprobe. Whakatane Tephra is the first Holocene tephra to be identified on the Chatham Islands, and it is the most distal Holocene tephra yet recorded in the New Zealand region, being ˜850 km from source. The Pitt Island occurrence extends the tephra's dispersal area markedly, by an order of magnitude, possibly to ˜300,000 km2. An estimated dispersal index (D) of approximately 105 km2 indicates that the eruption generated a very high plinian column, possibly exceeding ˜30 km in height, with strong winds blowing the ash plume southeastwards. This new discovery of distal Whakatane Tephra as a thin but visible layer strongly implies that cryptotephras are likely to be preserved on the Chatham Islands and within adjacent ocean floor sediments. Therefore the potential exists to develop enhanced cryptotephrostratigraphic records from these distal areas, which in turn would help facilitate precise correlation via tephrochronology of palaeoenvironmental records (such as NZ-INTIMATE) from mainland New Zealand, the southwest Pacific Ocean, and the Chatham Islands.
机译:Whakatane Tephra,流纹特非拉火山爆发。 5500卡路里来自北岛中部Okataina火山中心的BP已在查塔姆群岛上被发现,该岛位于新西兰基督城以东约900公里处。使用放射性碳年代测定法和通过电子探针对玻璃碎片进行分析,鉴定了可见的特非拉层,厚度约5毫米,保留在皮特岛的泥炭中。 Whakatane Tephra是查塔姆群岛上最早发现的全新世Tephra,它是新西兰地区迄今记录的最远的全新世Tephra,距源头约850公里。皮特岛的发生显着扩展了特非拉的扩散区域,幅度达一个数量级,可能达到〜300,000 km2。估计的散布指数(D)约为105 km2,表明喷发产生了很高的普林尼柱,高度可能超过〜30 km,强风向东南吹灰烟羽。 Whakatane Tephra远端的这一新发现是薄而可见的层,强烈暗示着隐胎象很可能被保存在查塔姆群岛和邻近海底沉积物内。因此,存在从这些远侧区域发展出增强的地层岩石记录的潜力,这反过来将有助于通过来自新西兰大陆,西南太平洋和查塔姆群岛的古环境记录(例如NZ-INTIMATE)的年代学来促进精确的相关性。

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