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首页> 外文期刊>Bulletin of Volcanology >Lithostratigraphic analysis and geochemistry of a vitric spatter-bearing ignimbrite: the Quaternary Adeje Formation, Cañadas volcano, Tenerife
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Lithostratigraphic analysis and geochemistry of a vitric spatter-bearing ignimbrite: the Quaternary Adeje Formation, Cañadas volcano, Tenerife

机译:含玻璃飞溅的火成岩的岩石地层分析和地球化学:特内里费岛卡纳达斯火山第四纪阿德耶组

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The 1.5-Ma Adeje Formation in SW Tenerife contains an ignimbrite sheet with remarkable textural and chemical complexity. A basal Plinian pumice-fall layer is overlain by a partly welded compound ignimbrite in which phonolitic pumice lapilli and dense obsidian spatter rags with irregular, fluidal-shaped margins are supported in a poorly sorted tuff matrix. The lower ignimbrite flow-unit contains accretionary lapilli in its upper part, overlain by an ash-pellet-bearing fallout layer from a co-ignimbrite plume. The upper ignimbrite flow-unit comprises a locally welded massive lapilli-tuff that grades up into lithic breccia containing juvenile obsidian blocks and both cognate and vent-derived lithic blocks. Geochemically, the Adeje Formation shows two distinct juvenile populations that relate to crystal-poor and crystal-rich magma types. Crystal-rich juvenile clasts contain multiple compositions of ilmenite and magnetite, and crystal aggregates of bytownite (An79–86). The varied assemblage of juvenile clasts reflects an eruptive style that may have involved rapid changes in magma chamber pressure associated with caldera collapse, and possibly the disruption of a lava lake. The Adeje eruption started with a Plinian explosive phase that rained ash and pumice lapilli across SW Tenerife; followed by pyroclastic fountaining feeding density currents with explosive ejecta of juvenile glassy material producing the coarse, spatter-bearing ignimbrite facies. A short pause between pyroclastic density currents is recorded by the co-ignimbrite ash and pellet-fall bed. The climactic phase of the eruption probably involved caldera subsidence as recorded by a widespread massive heterolithic breccia.
机译:特内里费岛西南部的1.5 Ma Adeje地层包含一个易燃薄片,具有明显的结构和化学复杂性。基层的Plinian浮石降落层覆盖有部分焊接的复合火成岩,其中,在排序较差的凝灰岩基质中支撑着具有不规则的,流体状边缘的疏松浮石lapilli和致密的黑曜石飞溅碎屑。下部的火成岩流动单元在其上部包含增生的lapilli,上面覆盖着由共火成岩羽流形成的含灰粒的沉降层。上层的火成岩流动单元包括一个局部焊接的块状青金石凝灰岩,该凝灰岩逐渐上升为含角质角砾岩的角砾岩,该角砾岩含有少年黑曜石块以及同生和发泄的岩性块。从地球化学上看,阿德耶岩层显示了两个不同的少年种群,它们与晶体贫乏和富含晶体的岩浆类型有关。富含晶体的少年碎屑包含钛铁矿和磁铁矿的多种成分,以及副镇长的晶体聚集体(An79-86)。各种不同的幼岩碎片反映出一种喷发型,可能涉及火山口坍塌相关的岩浆室压力的快速变化,可能还包括熔岩湖的破坏。阿德耶火山喷发始于普利尼星爆发阶段,在特内里费岛西南部洒下灰烬和浮石拉皮利。然后进行火山碎屑喷入,用幼小的玻璃状物质的爆炸弹射出密度流,产生粗糙的,带有飞溅的火成岩相。共着火灰和落粒床记录了火山碎屑密度流之间的短暂停顿。火山爆发的高潮期可能涉及火山口下陷,这是由广泛的大规模异质角砾岩记录的。

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