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A proposed methodology for analyses of wide-ranged elements in volcanic glass shards in widespread Quaternary tephras

机译:一种提议的分析第四纪特弗拉斯火山玻璃碎片中宽范围元素的方法

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The abundances of 58 elements from lithium to uranium of volcanic glass shards in 11 Quaternary widespread tephras of Japan and those of 4 tephras of North America have been analyzed using the laser ablation inductively-coupled plasma mass spectrometry (LA-ICP-MS) technique. The analytical values of the major components (SiO2, TiO2, Al2O3, FeO, MnO, MgO, CaO, and K2O) were systematically lower (< 10%) than those of analyzed using electron microanalysis techniques in previous researches, whereas that Na2O tend to be similar to 20% higher than those of previous researches using the electron-beam microanalysis technique. The higher values of Na2O obtained by LA-ICP-MS may result from the absence of the Na-loss phenomenon associated with the electron-beam analytical techniques. Most elements were analyzed with less than 20% of the relative standard deviations (RSDs), whereas some trace elements such as beryllium and some transition metals exhibit higher RSDs (up to similar to 120%) in 5-repeated analyses on the single glass shard. The LA-ICP-MS technique can be reasonably available for quantitative analyses of the major elements in volcanic glass shards, in addition to the trace elements. The volcanic glass can be clearly distinguished from each other by the patterns of the element abundances. The element abundances and the patterns of the elements of the volcanic glass shards are helpful to more precise identification and correlation of tephra samples. (C) 2015 Elsevier Ltd and INQUA. All rights reserved.
机译:利用激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)分析了日本11个第四纪特弗拉斯和北美4个特弗拉斯的火山玻璃碎片中锂到铀的58种元素的丰度。主要成分(SiO2,TiO2,Al2O3,FeO,MnO,MgO,CaO和K2O)的分析值系统地低于(<10%),低于先前研究中使用电子显微分析技术所分析的值,而Na2O倾向于与以前使用电子束微分析技术进行的研究相比,高出20%。通过LA-ICP-MS获得的Na2O值较高可能是由于不存在与电子束分析技术相关的Na损失现象。在单玻璃碎片的5次重复分析中,大多数元素的相对标准偏差(RSD)不到20%,而某些痕量元素(如铍和某些过渡金属)表现出更高的RSD(高达120%)。 。除了痕量元素外,LA-ICP-MS技术还可以合理地用于火山玻璃碎片中主要元素的定量分析。火山玻璃可以通过元素丰度的模式相互区分。火山玻璃碎片的元素丰度和元素形态有助于更准确地鉴定和关联特非拉样品。 (C)2015 Elsevier Ltd和INQUA。版权所有。

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