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用于检测燃料电池中痕量氢气中气体杂质的腔增强拉曼光谱法。

Cavity-Enhanced Raman Spectroscopy for Detection of Trace Gaseous Impurities in Hydrogen for Fuel Cells.

机构信息

State Key Laboratory of Power Transmission Equipment & System Security and New Technology, Chongqing University, Chongqing 400044, China.

出版信息

Anal Chem. 2023 May 2;95(17):6894-6904. doi: 10.1021/acs.analchem.3c00066. Epub 2023 Apr 19.

Abstract

Gaseous impurities contained in hydrogen (H) profoundly affect the performance of hydrogen proton-exchange membrane fuel cells. We demonstrate the utility of cavity-enhanced Raman spectroscopy as a unique approach for detection of gaseous impurities. A dense-pattern multipass cavity which is composed of four spherical mirrors placed in a Z-shaped configuration is used to enhance the Raman signal by extending the laser-gas interaction length. A total of 85 spots are identified on the 2-inch-diameter front (or rear) mirror, which indicates that 510 beams exist in the cavity. Detection limits of the impurity gases, including oxygen (O), nitrogen (N), carbon monoxide (CO), carbon dioxide (CO), methane (CH), ammonia (NH), and hydrogen sulfide (HS), reach sub-ppm- and ppb-levels at a total pressure of 0.1 and 2.5 MPa, respectively. This satisfies the detection requirements according to the maximum allowable concentration for these gases. Our cavity-enhanced Raman spectroscopy (CERS) apparatus can simultaneously measure multiple gases with high sensitivity and selectivity with no sample destruction. It has excellent application prospects in gaseous impurity analysis for the quality assessment of gaseous energy.

摘要

氢气中所含的气态杂质会对质子交换膜燃料电池的性能产生深远影响。我们展示了利用腔增强拉曼光谱作为一种独特方法来检测气态杂质的实用性。一个由四个放置在 Z 形配置中的球形反射镜组成的密集图案多通腔用于通过延长激光-气体相互作用长度来增强拉曼信号。在 2 英寸直径的前(或后)镜上总共可以识别 85 个点,这表明腔中有 510 束光。在总压力分别为 0.1 和 2.5 MPa 的情况下,对包括氧气(O)、氮气(N)、一氧化碳(CO)、二氧化碳(CO)、甲烷(CH)、氨(NH)和硫化氢(HS)在内的杂质气体的检测限达到亚 ppm 和 ppb 级。这满足了根据这些气体的最大允许浓度进行检测的要求。我们的腔增强拉曼光谱(CERS)仪器可以在不破坏样品的情况下同时进行高灵敏度和选择性的多种气体测量。它在气态能源的气体杂质分析中的质量评估方面具有极好的应用前景。

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