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Development of a deep-sea laser-induced breakdown spectrometer for in situ multi-element chemical analysis

机译:开发用于原位多元素化学分析的深海激光诱导击穿光谱仪

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摘要

Spectroscopy is emerging as a technique that can expand the envelope 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 basis for versatile tools to perform in situ geochemical analysis. We have developed a deep-sea laser-induced breakdown spectrometer (ChemiCam) and successfully deployed the instrument from a remotely operated vehicle (ROV) to perform in situ multi-element analysis of both seawater and mineral deposits at depths of over 1000 m. The instrument consists of a long-nanosecond duration pulse-laser, a spectrometer and a high-speed camera. Power supply, instrument control and signal telemetry are provided through a ROV tether. The instrument has two modes of operation. In the first mode, the laser is focused directly into seawater and spectroscopic measurements of seawater composition are performed. In the second mode, a fiber-optic cable assembly is used to make spectroscopic measurements of mineral deposits. In this mode the laser is fired through a 4 m long fiber-optic cable and is focused onto the target’s surface using an optical head and a linear stage that can be held by a ROV manipulator. In this paper, we describe the instrument and the methods developed to process its measurements. Exemplary measurements of both seawater and mineral deposits made during deployments of the device at an active hydrothermal vent field in the Okinawa trough are presented. Through integration with platforms such as underwater vehicles, drilling systems and subsea observatories, it is hoped that this technology can contribute to more efficient scientific surveys of the deep-sea environment.
机译:光谱学作为一种可以扩展现代海洋学传感器范围的技术而兴起。光谱技术的选择性使一台仪器可以测量海洋环境的多个组成部分,并可以成为进行现场地球化学分析的多功能工具的基础。我们开发了一种深海激光诱导击穿光谱仪(ChemiCam),并成功地从远程操作车辆(ROV)部署了该仪器,以对1000 m以上的海水和矿物沉积物进行原位多元素分析。该仪器包括一个长纳秒脉冲激光,一个光谱仪和一个高速照相机。通过ROV系绳提供电源,仪器控制和信号遥测。仪器有两种操作模式。在第一模式中,将激光直接聚焦到海水中,并对海水成分进行光谱测量。在第二种模式下,使用光纤电缆组件对矿物沉积物进行光谱测量。在这种模式下,激光通过一条4 m长的光缆发射,并使用光学头和可以由ROV机械手固定的线性平台将其聚焦在目标表面上。在本文中,我们描述了仪器和开发用于处理其测量值的方法。给出了在冲绳海槽的活跃热液喷口处部署该装置期间对海水和矿物沉积物进行的示例性测量。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,希望这项技术可以为更有效的深海环境科学勘察做出贡献。

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