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Spectroscopy and imaging of laser-induced plasmas for chemical analysis of bulk aqueous solutions at high pressures

机译:激光诱导等离子体的光谱学和成像,用于高压下批量水溶液的化学分析

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Laser-induced breakdown spectroscopy (LIBS) is a chemical sensing technique that has been demonstrated in numerous applications on land. This study investigates the application of LIBS as a technique for in situ analysis of the chemical composition of the ocean. The effects of pressure on the spectral emissions of various different elements in bulk aqueous solution has been evaluated, and imaging of plasmas generated in liquids at pressures between 0.1-30 MPa has been performed. The observations indicate that during the early stages of laser-induced breakdown, in the time frame when spectroscopic measurements are made, the plasma and surrounding phenomena (formation of shockwaves and cavitation bubbles) are almost independent of the surrounding hydrostatic pressure up to 30 MPa. Spectroscopic investigations found that Na, Ca, and Mg are detectable in liquid at pressures from 0.1 to 30 MPa, at concentrations of 1, 10, and 500ppm, respectively. These elements are of key importance in the identification of hydrothermal vent fluids. The results of this study suggest that laser induced spectroscopy is applicable for in situ elemental analysis of liquids at oceanic pressures.
机译:激光诱导的击穿光谱(Libs)是一种化学传感技术,在陆地上的许多应用中已经证明。本研究研究了LIBS作为原位分析海洋化学成分的技术。已经评估了大量水溶液中各种不同元素光谱排放的压力的影响,并进行了在0.1-30MPa的压力下在液体中产生的等离子体的成像。观察结果表明,在激光诱导的击穿的早期阶段,在制造光谱测量时,在时间框架中,等离子体和周围的现象(形成冲击波和空化泡沫)几乎与高达30MPa的周围静水压力无关。发现Na,Ca和Mg分别在0.1至30MPa的压力下可检测Na,Ca和Mg,分别为1,10和500ppm的浓度。这些元素在识别水热通气流体方面具有重要性。该研究的结果表明,激光诱导光谱适用于海洋压力下液体的原位元素分析。

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