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Laser-induced breakdown spectroscopy for in situ chemical analysis at sea

机译:激光诱导击穿光谱用于海上原位化学分析

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Spectroscopy is emerging as a technique that can expand the envelop of modern oceanographic sensors. The selectivity of spectroscopic techniques enables a single instrument to measure multiple components of the marine environment, and can form the bases of versatile tools to perform in situ geo-chemical analysis. This work investigates emission spectroscopy using laser-induced plasmas to perform multi-element chemical analysis of liquids and solids at sea. In situ measurements of both liquids and solids have been successfully performed at sea using the 3000m depth rated prototype I-SEA (In situ Seafloor Element Analyser). Techniques aimed at optimising the signals observed from plasmas generated at high pressure are described and their mechanisms discussed. I-SEA is just an example of a new generation of chemical cameras (ChemiCam) that can probe different aspects of the environment. It is hoped that through integration with platforms such as underwater vehicles, drilling systems and subsea observatories, this technology will contribute to more efficient scientific surveys, and serve as a tool to facilitate both spatially and temporally continuous study of the ocean.
机译:光谱学作为一种可以扩展现代海洋传感器范围的技术而兴起。光谱技术的选择性使单个仪器可以测量海洋环境的多个组成部分,并可以构成执行现场地球化学分析的多功能工具的基础。这项工作研究了使用激光诱导等离子体对海上液体和固体进行多元素化学分析的发射光谱。使用额定深度为3000m的原型I-SEA(原位海底元素分析仪),已在海上成功进行了液体和固体的原位测量。描述了旨在优化从高压产生的等离子体中观察到的信号的技术,并讨论了其机理。 I-SEA只是可以探测环境不同方面的新一代化学相机(ChemiCam)的一个示例。希望通过与诸如水下航行器,钻井系统和海底观测站等平台的集成,该技术将有助于更有效的科学勘测,并成为促进对海洋进行时空连续研究的工具。

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