...
【24h】

Multiple-pass enhanced Raman spectroscopy for fast industrial trace gas detection and process control

机译:用于快速工业轨迹检测和过程控制的多通增强拉曼光谱

获取原文
获取原文并翻译 | 示例

摘要

We report an advanced multiple-pass Raman spectroscopy setup with enhanced sensitivity for industrial in situ monitoring and process control applications. A multiple-pass cavity with 20 total passes is constructed using one concave mirror and two high-reflection mirrors. The multiple-pass cavity is fully compatible with gas chamber with dead volume as small as 2.5 ml. The setup is simple, reliable, and robust, which is important for practical industrial applications. With this system, gas samples in static cells are tested to show the analytical potential of this multiple-pass setup. The results show that the noise equivalent detection limit (3 sigma) of 12.0 (N-2), 13.3 (O-2), 12.2 (CO2), and 5.8 Pa (hydrogen isotopologues), which corresponds to relative abundance by volume at 1 bar total pressure of 120, 133, 122, and 58 ppm can be achieved in 1 s with a 1.5-W red laser. We further demonstrate a modified version of current multiple-pass Raman spectroscopy, which can afford an even lower detection limit for nonhazardous gas samples. The sensitivity of the current setup can be further increased, and different approaches are discussed in detail. Based on the experience gained in this prototype setup, various improvements are currently being investigated and implemented, aiming at higher sensitivity and stability. The results obtained with this newly designed Raman system are very promising, as sensitive subsecond monitoring and process control of low-pressure hydrogen isotopologues based on Raman spectroscopy seems to be within reach in a fusion reactor. Besides, the analysis and monitoring of other important gas species (e.g., environmental gas) can also be benefited from the current design.
机译:我们报告了一个先进的多通拉曼光谱设置,增强了工业的灵敏度,原位监控和过程控制应用。使用一个凹面镜和两个高反射镜构造具有20个总通量的多通腔。多通腔与气室完全兼容,气室具有小于2.5ml的死体积。设置简单,可靠和强大,对实际工业应用很重要。通过该系统,测试静态电池中的气体样本以显示该多功能设置的分析潜力。结果表明,12.0(N-2),13.3(O-2),12.2(CO2)和5.8Pa(氢同位素)的噪声等效检测限(3 sigma),其对应于1的相对丰度可以在1S中用1.5-W红色激光获得120,133,122和58ppm的条形条。我们进一步展示了电流多通拉曼光谱的改进版本,其可以为无危险的气体样品提供甚至更低的检测限。可以进一步增加电流设置的灵敏度,并详细讨论不同的方法。根据该原型设置中获得的经验,目前正在调查和实施各种改进,旨在更高的灵敏度和稳定性。用这种新设计的拉曼系统获得的结果非常有前途,作为基于拉曼光谱的低压氢同位素的敏感亚级监测和过程控制似乎在融合反应器中达到。此外,对其他重要气体物种(例如,环境气体)的分析和监测也可以从目前的设计中受益。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号