Kan Rui-feng, Liu Wen-qing, Zhang Yu-jun, Liu Jian-guo, Wang Min, Gao Shan-hu, Chen Jun
Key Laboratoy of Environmeental Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2006 Mar;26(3):392-5.
Tunable diode laser absorption spectroscopy (TDLAS) is a new method to detect trace-gas qualitatively or quantificationally based on the scan characteristic of the diode laser used to obtain the absorption spectroscopy in the characteristic absorption region It needs to be combined with a long absorption path in the ambient trace-gas measurements. TDLAS is a new trace gas detective method developed with the combination of a tunable diode laser source and a long absorption path; it has significant advantages not only in the sensitivity but also in rapidity of response. It has been widely used in many atmospheric trace-gases detection, ground trace-gas detection and, gas leakage detection. On-line calibrating is necessary to most trace gas monitor, and in the present paper the authors introduced a simple and accurate method, analyzed it in the theory, and proved it's feasibility in the experiment.
可调谐二极管激光吸收光谱技术(TDLAS)是一种基于二极管激光器的扫描特性,在特征吸收区域获取吸收光谱,从而对痕量气体进行定性或定量检测的新方法。在环境痕量气体测量中,它需要与长吸收路径相结合。TDLAS是一种将可调谐二极管激光源与长吸收路径相结合而开发的新型痕量气体检测方法;它不仅在灵敏度方面具有显著优势,而且在响应速度方面也具有显著优势。它已广泛应用于许多大气痕量气体检测、地面痕量气体检测以及气体泄漏检测中。大多数痕量气体监测器都需要进行在线校准,在本文中,作者介绍了一种简单而准确的方法,对其进行了理论分析,并在实验中证明了其可行性。