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Evaluation of laser-induced breakdown spectroscopy (LIBS) as a new in situ chemical sensing technique for the deep ocean

机译:激光诱导的击穿光谱(Libs)评估深海原位化学传感技术

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Present day expeditionary oceanography based on short term ship and submersible deployments is beginning to shift to an ocean observatory mode where long term temporally focused studies become feasible. As a result, a greater need for in situ chemical and biological sensors is evolving. Laser-induced breakdown spectroscopy (LIBS) possesses many of the characteristics required for such in situ chemical sensing, and is a promising technique for field measurements in extreme environments. LIBS has many possible applications in the ocean, including the analysis of rocks, sediments, and hydrothermal vent fluids. Although many LIBS researchers have focused their work on solids, very little attention has been paid to bulk liquid analysis, and especially on the effect of oceanic pressures on LIBS signals. In this work, preliminary laboratory experiments are presented to validate the technique in a simulated deep ocean environment; more specifically, the focus is on using LIBS to study hydrothermal vent fluids.
机译:目前的一天远程海洋学基于短期船舶和潜水部署开始转移到海洋观测模式,长期时间关注的研究变得可行。结果,对原位化学和生物传感器的需求更高。激光诱导的击穿光谱(Libs)具有许多原位化学传感所需的许多特性,并且是极端环境中的现场测量的有希望的技术。 LIBS在海洋中有许多可能的应用,包括分析岩石,沉积物和水热通风流体。虽然许多LIBS研究人员都集中了他们对固体的工作,但很少关注散装液体分析,特别是对海洋压力对LIBS信号的影响。在这项工作中,提出了初步实验室实验以验证模拟深海环境中的技术;更具体地,重点是使用Libs研究水热通气流体。

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