Willer Ulrike, Scheel Dirk, Kostjucenko Irina, Bohling Christian, Schade Wolfgang, Faber Eckhard
Institut für Physik und Physikalische Technologien, Technische Universität Clausthal, Clausthal-Zellerfeld, Germany.
Spectrochim Acta A Mol Biomol Spectrosc. 2002 Sep;58(11):2427-32. doi: 10.1016/s1386-1425(02)00058-6.
A compact, rugged and portable fiber-optic evanescent-field laser sensor is developed for the detection of gaseous species in harsh environments such as volcano fumaroles or industrial combustion of glass furnaces. The sensor consists of an optical multi-mode fused silica fiber with jacket and cladding removed and the bare fiber core in direct contact with the surrounding molecules. The beam of a single-mode DFB diode laser with an emission wavelength centered at 1.5705 microm is coupled into the fiber. At the other end of the fiber an infrared detector is used to record the transmitted infrared laser light intensity. Due to the frustrated total reflection (FTR) and the attenuated total reflection (ATR) the laser intensity is attenuated when passing through the fiber. The FTR is related to a change of the index of refraction while the latter one is related to a change of the absorption coefficient. While tuning the DFB laser wavelength across absorption lines of molecules surrounding the fiber a spectral intensity profile is measured. Voigt functions are fitted to the recorded intensity profiles to estimate relative molecule concentrations. In this paper results from first field measurements at the volcano site 'Solfatara' in Italy are reported that use such a sensor device for simultaneous detection of H2S, CO2 and H2O directly in the gas stream of a volcano fumarole.
一种紧凑、坚固且便携的光纤倏逝场激光传感器被开发出来,用于在诸如火山喷气孔或玻璃熔炉工业燃烧等恶劣环境中检测气态物质。该传感器由一根去掉护套和包层的光学多模熔融石英光纤组成,裸光纤芯直接与周围分子接触。发射波长以1.5705微米为中心的单模分布反馈二极管激光器的光束耦合到光纤中。在光纤的另一端,使用红外探测器记录透射的红外激光光强。由于受抑全反射(FTR)和衰减全反射(ATR),激光强度在通过光纤时会衰减。FTR与折射率的变化有关,而后者与吸收系数的变化有关。当在光纤周围分子的吸收线范围内调谐分布反馈激光器的波长时,测量光谱强度分布。将沃伊特函数拟合到记录的强度分布上,以估计相对分子浓度。本文报道了在意大利“索尔法塔拉”火山现场进行的首次实地测量结果,该测量使用这种传感器设备直接在火山喷气孔的气流中同时检测H2S、CO2和H2O。