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In situ multi-element analysis of the Mount Pinatubo quartz-hosted melt inclusions by NIR femtosecond laser ablation-inductively coupled plasma-mass spectrometry

机译:近红外飞秒激光烧蚀-电感耦合等离子体质谱法对皮纳图博火山山石英熔体包裹体进行原位多元素分析

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Microscopic melt inclusions found in magmatic minerals are undoubtedly one of the most important sources of information on the chemical composition of melts. This paper reports on the successful application of near-infrared (NIR) femtosecond laser ablation (LA) - inductively coupled plasma-mass spectrometry to in situ determination of incompatible trace elements (Li, Rb, Sr, Y, Zr, Nb, Cs, Ba, REE, Ta, Th, U) and ore metals (As, Mo, Pb) in individual melt inclusions hosted in quartz from the Mount Pinatubo dacites, Philippines. The determined elements cover a concentration range of five orders of magnitude. Femtosecond LA-ICP-MS analyses of twenty-eight individual melt inclusions demonstrate the efficiency of the microanalytical technique and suggests a spectacular homogeneity of the entrapped melt, at least with respect to the following incompatible trace elements: Rb, Sr, Nb, Cs, Ba, La, Ce, Pr, Nd, Pb, Th. The analytical precision (1s) for Na, Ca, Rb, Sr, Y, Nb, Ba and LREE ranged from 3 to 20%. Comparison of trace element concentrations in Mt. Pinatubo melt inclusions determined by femtosecond LA-ICP-MS with those of melt inclusions previously analysed by secondary ion mass spectrometry analysis (SIMS) and those of matrix glasses previously determined by nanosecond LA-ICP-MS showed an agreement typically within 30-40%. The homogeneity of trace element concentrations of the Mt. Pinatubo melt inclusions and the matrix glasses is consistent with the melt inclusion origin as homogeneous rhyolitic melt that was trapped in quartz phenocrysts at the final crystallisation stages of the host adakite (dacite) magma.
机译:岩浆矿物中发现的微观熔体包裹体无疑是有关熔体化学成分的最重要信息来源之一。本文报道了近红外(NIR)飞秒激光烧蚀(LA)-电感耦合等离子体质谱法在不相容痕量元素(Li,Rb,Sr,Y,Zr,Nb,Cs,来自菲律宾Mount Pinatubo dacites的石英中包含的单个熔体夹杂物中的Ba,REE,Ta,Th,U)和矿石金属(As,Mo,Pb)。确定的元素覆盖五个数量级的浓度范围。飞秒LA-ICP-MS对28个单个熔体夹杂物的分析证明了微分析技术的效率,并至少在以下不兼容的微量元素方面,证明了所包裹熔体的惊人同质性:Rb,Sr,Nb,Cs, Ba,La,Ce,Pr,Nd,Pb,Th Na,Ca,Rb,Sr,Y,Nb,Ba和LREE的分析精度(1s)为3%至20%。山中微量元素浓度的比较。飞秒LA-ICP-MS测定的皮纳图博熔体夹杂物与先前通过二次离子质谱分析(SIMS)分析的熔体夹杂物和纳秒LA-ICP-MS测定的基体玻璃的熔体夹杂物之间的一致性通常在30-40%之内。山中微量元素浓度的均一性。皮纳图博熔体包裹体和基体玻璃与熔体包裹体起源一致,是均质的流纹熔体,在主体ad石(达卡特)岩浆的最终结晶阶段被捕获在石英细晶内。

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