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Highly sensitive Raman system for dissolved gas analysis in water

机译:高灵敏的拉曼系统,用于水中的溶解气体分析

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摘要

The detection of dissolved gases in seawater plays an important role in ocean observation and exploration. As a potential technique for oceanic applications, Raman spectroscopy has already proved its advantages in the simultaneous detection of multiple species during previous deep-sea explorations. Due to the low sensitivity of conventional Raman measurements, there have been many reports of Raman applications on direct seawater detection in high-concentration areas, but few on undersea dissolved gas detection. In this work, we have presented a highly sensitive Raman spectroscopy (HSRS) system with a special designed gas chamber for small amounts of underwater gas extraction. Systematic experiments have been carried out for system evaluation, and the results have shown that the Raman signals obtained by the innovation of a near-concentric cavity was about 21 times stronger than those of conventional side-scattering Raman measurements. Based on this system, we have achieved a low limit of detection of 2.32 and 0.44 mu mol/L for CO2 and CH4, respectively, in the lab. A test-out experiment has also been accomplished with a gas-liquid separator coupled to the Raman system, and signals of O-2 and CO2 were detected after 1 h of degasification. This system may show potential for gas detection in water, and further work would be done for the improvement of in situ detection. (C) 2016 Optical Society of America
机译:海水中溶解气体的检测在海洋观察和勘探中起着重要作用。作为海洋应用的潜在技术,拉曼光谱已经证明了其在先前的深海勘探中同时检测多种物种的优势。由于常规拉曼测量的灵敏度低,因此有许多报道将拉曼应用于高浓度地区的直接海水检测,但很少用于海底溶解气体检测。在这项工作中,我们提出了一种高度敏感的拉曼光谱(HSRS)系统,该系统带有专门设计的气室,用于少量的水下气体提取。已经进行了系统实验以进行系统评估,结果表明,通过创新近同心腔获得的拉曼信号比传统的侧向散射拉曼测量强约21倍。基于该系统,在实验室中,我们分别实现了针对CO2和CH4的2.32和0.44μmol/ L的低检测限。还通过与拉曼系统连接的气液分离器完成了一项测试实验,在脱气1小时后检测到O-2和CO2信号。该系统可能显示出在水中进行气体检测的潜力,并且将进行进一步的工作以改善原位检测。 (C)2016美国眼镜学会

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