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用于悬浮火山灰定量元素分析的自校准激光诱导击穿光谱法

Self-Calibrated Laser-Induced Breakdown Spectroscopy for the Quantitative Elemental Analysis of Suspended Volcanic Ash.

作者信息

Taleb Aya, Dell'Aglio Marcella, Gaudiuso Rosalba, Mele Daniela, Dellino Pierfrancesco, De Giacomo Alessandro

机构信息

Department of Chemistry, University of Bari, Bari, Italy.

CNR-IFN (National Research Council-Institute for Photonics and Nanotechnologies), C-O Physics Department, University of Bari, Bari, Italy.

出版信息

Appl Spectrosc. 2024 Jul;78(7):714-726. doi: 10.1177/00037028241241076. Epub 2024 Mar 26.

Abstract

Real-time analysis of fine ash in volcanic plumes, which represent magma fragments expelled from the crater during explosive eruptions, is a valuable tool for volcano monitoring and hazard assessment. To obtain the chemical characterization of the juvenile pyroclastic material emitted in volcanic plumes, many analytical techniques can be used. Among them, laser-induced breakdown spectroscopy (LIBS) is the one that can most easily be adapted to advanced applications in extreme environments. In this paper, LIBS experiments based on self-calibrated approaches are used to determine the elemental composition of suspended volcanic ash. To simulate the conditions of dispersed volcanic ash in the atmosphere, different sizes of volcanic ash samples are suspended in the air by laser-induced shockwaves in a dedicated chamber, and a parametric study is carried out to establish the optimal experimental conditions for recording usable plasma emission spectra for each ash size. The quantitative analysis is performed using a self-calibrated analytical method, including calibration-free LIBS, which is based on the calculation of the spectral radiance of a uniform plasma in local thermodynamic equilibrium. The method accounts intrinsically for self-absorption since it modifies the intensity of spectral lines and thus leads to an underestimation of the elemental fraction. An intensity calibration of the spectra based on the measurements of Fe lines intensities was also used in this work to deduce the apparatus response from the spectrum itself and avoid the use of standard calibration lamps. Results demonstrate the potential of real-time measurements of elemental fractions in volcanic ash with good agreement with the literature composition.

摘要

对火山羽流中的细灰进行实时分析是火山监测和灾害评估的一项重要工具,火山羽流代表了爆发性喷发期间从火山口喷出的岩浆碎块。为了获取火山羽流中喷出的新生火山碎屑物质的化学特征,可以使用多种分析技术。其中,激光诱导击穿光谱法(LIBS)是最容易适用于极端环境下先进应用的技术。本文采用基于自校准方法的LIBS实验来测定悬浮火山灰的元素组成。为了模拟火山灰在大气中的分散条件,通过专用腔室内的激光诱导冲击波将不同尺寸的火山灰样品悬浮于空气中,并开展参数研究以确定针对每种灰分尺寸记录可用等离子体发射光谱的最佳实验条件。定量分析采用一种自校准分析方法进行,包括无校准LIBS,该方法基于局部热力学平衡下均匀等离子体的光谱辐射计算。该方法本质上考虑了自吸收,因为它改变了谱线强度,从而导致元素含量的低估。本研究还基于铁线强度测量对光谱进行强度校准,以便从光谱本身推断仪器响应,避免使用标准校准灯。结果表明了实时测量火山灰中元素含量的潜力,且与文献组成具有良好的一致性。

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