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A near-infrared carbon dioxide sensor system using a compact folded optical structure for deep-sea natural gas hydrate exploration

机译:使用紧凑的折叠光学结构的近红外二氧化碳传感器系统,用于深海天然气水合物勘探

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The detection of dissolved gas (e.g. carbon dioxide (CO2) and methane (CH4)) in seawater is important for deep-sea natural gas hydrate exploration, which requires that the sensor especially the optical structure should be of compact size and capable of operation in a deep-sea environment. A compact optical structure with a simple beam alignment and tracing method was proposed for tunable laser absorption spectroscopy (TLAS) based gas measurements, in order to minimize the sensor size and ease the beam alignment/tracing procedure for deep-sea operation. A near-infrared CO2 sensor system was developed based on the compact optical structure. A distributed feedback (DFB) laser centered at 6361.3 cm?1 and a multi-pass gas cell (MPGC) with an effective optical path length of 29.8 m were employed. The sensor system was integrated as standalone equipment by customizing an aluminum baseplate for a stable field operation. A series of experiments were carried out to assess the performance of the sensor system. A limit of detection (LoD) of ~7.1 parts-per-million in volume (ppmv) at a 0.4 s averaging time was obtained, and the LoD was reduced to ~277 parts-per-billion in volume (ppbv) at an optimum averaging time of 153.6 s. Considering the gas mixing time, the rise and fall times were measured to be ~290 s and ~200 s, respectively. The proposed compact sensor structure provides the basis for the further development of a sensor system for dissolved CO2 detection with a LoD of ppbv via the use of a mid-infrared tunable laser.
机译:海水中溶解气体(例如二氧化碳(CO2)和甲烷(CH4))的检测对于深海天然气水合物勘探非常重要,这要求传感器(尤其是光学结构)应具有紧凑的尺寸并且能够在深海环境。提出了一种具有简单光束对准和跟踪方法的紧凑型光学结构,用于基于可调谐激光吸收光谱(TLAS)的气体测量,目的是最小化传感器尺寸并简化深海作业的光束对准/跟踪过程。基于紧凑的光学结构,开发了一种近红外CO2传感器系统。使用了以6361.3 cm?1为中心的分布式反馈(DFB)激光器和有效光程为29.8 m的多通气室(MPGC)。通过定制铝基板以实现稳定的现场操作,将传感器系统集成为独立设备。进行了一系列实验以评估传感器系统的性能。平均时间为0.4 s时,检测限(LoD)约为百万分之7.1(ppmv),在最佳条件下,检测限降至ppbv〜277百万分之平均时间为153.6 s。考虑到气体混合时间,测得的上升和下降时间分别为〜290 s和〜200 s。所提出的紧凑型传感器结构为通过使用中红外可调谐激光器,以ppbv的LoD检测溶解的CO2的传感器系统的进一步开发提供了基础。

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