High repetition-rate laser-induced breakdown spectroscopy combined with two-dimensional correlation method for analysis of sea-salt aerosols

激光诱导击穿光谱 海盐 光谱学 重复(修辞手法) 盐(化学) 激光器 分析化学(期刊) 化学 材料科学 环境科学 气溶胶 光学 环境化学 物理 有机化学 物理化学 哲学 量子力学 语言学
作者
Boyang Xue,Zhangjun Wang,Tao Zhu,Yezhen Gu,Sun Weihong,C. Chen,Zhigang Li,Jens Riedel,Yi You
出处
期刊:Spectrochimica Acta Part B: Atomic Spectroscopy [Elsevier BV]
卷期号:221: 107048-107048 被引量:5
标识
DOI:10.1016/j.sab.2024.107048
摘要

Laser-induced breakdown spectroscopy (LIBS) offers a tantalizing glimpse into real-time, on-the-spot aerosol analysis. Yet, the reliance on traditional lasers, with their limitations in energy and frequency, hampers optimal sample handling, dissociation, and excitation. To address those challenges, we propose a novel tactic: utilize a high repetition-rate (rep.-rate) laser with low pulse energy in combination with the two-dimensional correlation (2D-corr.) technique for sea-salt aerosols analyses. By examining the emission patterns from both the laser pulse train and individual pulses, we recognize distinctive analyte-specific rep.-rate responses, which allowed spectral reconstruction of analytes, avoiding background interferences. This discovery enabled the rep.-rate modulation for a 2D-corr. spectroscopy workflow. Consequently, we successfully differentiated between particle-related and air-species-related spectral components, obviating expensive spectrometers or intensified image detectors. For instance, the Na I at 589 nm stemming from aerosols exhibited an entirely different correlation contribution compared to O I at 777 nm, resulting in reconstructed clean aerosol-spectra without spectral peaks originated from air species. This 2D-corr. aerosol LIBS approach shows promising analytical potential streamlining aerosol particle analysis. • Direct analysis of sea salt aerosol (SSA) elemental compositions. • Utilizing a high repetition-rate and low pulse energy laser in combination with the two-dimensional correlation (2D-corr.). • Enhanced spectral feature extraction through spectral signal modulations from the laser repetition-rate.
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