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Development of an Easy-to-Operate Underwater Raman System for Deep-Sea Cold Seep and Hydrothermal Vent In Situ Detection

机译:开发用于深海冷渗流和原位检测水热渗透和水热通风口的易于操作的水下拉曼系统

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摘要

As a powerful in situ detection technique, Raman spectroscopy is becoming a popular underwater investigation method, especially in deep-sea research. In this paper, an easy-to-operate underwater Raman system with a compact design and competitive sensitivity is introduced. All the components, including the optical module and the electronic module, were packaged in an L362 × Φ172 mm titanium capsule with a weight of 20 kg in the air (about 12 kg in water). By optimising the laser coupling mode and focusing lens parameters, a competitive sensitivity was achieved with the detection limit of SO42− being 0.7 mmol/L. The first sea trial was carried out with the aid of a 3000 m grade remotely operated vehicle (ROV) “FCV3000” in October 2018. Over 20,000 spectra were captured from the targets interested, including methane hydrate, clamshell in the area of cold seep, and bacterial mats around a hydrothermal vent, with a maximum depth of 1038 m. A Raman peak at 2592 cm−1 was found in the methane hydrate spectra, which revealed the presence of hydrogen sulfide in the seeping gas. In addition, we also found sulfur in the bacterial mats, confirming the involvement of micro-organisms in the sulfur cycle in the hydrothermal field. It is expected that the system can be developed as a universal deep-sea survey and detection equipment in the near future.
机译:作为一种强大的原位检测技术,拉曼光谱正成为一个受欢迎的水下调查方法,特别是在深海研究中。本文介绍了具有紧凑设计和竞争灵敏度的易于操作的水下拉曼系统。包括光学模块和电子模块的所有组件,在L362×φ172mm钛胶囊中包装,其重量在空气中为20kg(水中约12kg)。通过优化激光耦合模式和聚焦镜头参数,通过SO42的检出限为0.7mmol / L来实现竞争灵敏度。第一次海洋试验是在2018年10月的3000米级远程操作的车辆(ROV)“FCV3000”的借助于3000米的级联车辆(ROV)。从感兴趣的目标中捕获了超过20,000个光谱,包括甲烷水合物,Clamshell在寒冷的渗透区域,和水热通风口周围的细菌垫,最大深度为1038米。在甲烷水合物光谱中发现2592cm-1处的拉曼峰,其显示在渗煤中存在硫化氢。此外,我们还发现细菌垫中的硫,确认微生物在水热场中的硫循环中的参与。预计该系统可以在不久的将来作为普遍的深海调查和检测设备开发。

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