Schaden Stefan, Domínguez-Vidal Ana, Lendl Bernhard
Institute of Chemical Technologies and Analytics, Vienna University of Technology, Getreidemarkt 9/164AC A-1060, Vienna, Austria.
Appl Spectrosc. 2006 May;60(5):568-71. doi: 10.1366/000370206777412068.
On-line monitoring of a model reaction was performed by employing two pulsed mid-infrared Fabry-Pérot quantum cascade lasers (QCL). The emission maxima of the QCLs were located at 1393 and 1080 cm(-1). An optical system of parabolic mirrors and a ZnSe beam splitter combined the two laser beams and allowed a transmission cell to be probed with both QCLs simultaneously. The reaction mixture was pumped continuously through a cell that had an optical path of 48 microm. This dual QCL system allowed fast absorption measurements of the reaction mixture at two distinct wavenumbers. The reaction under study was the oxidation of sulfite to sulfate with hydrogen peroxide acting as oxidant. On-line measurements of the chemical reaction allowed direct, real-time monitoring of sulfate formation and hydrogen peroxide depletion.
通过使用两台脉冲中红外法布里-珀罗量子级联激光器(QCL)对一个模型反应进行在线监测。QCL的发射最大值位于1393和1080 cm⁻¹处。抛物面镜和硒化锌分束器组成的光学系统将两束激光合并,并允许用两台QCL同时探测一个透射池。反应混合物连续泵入一个光程为48微米的池中。这种双QCL系统允许在两个不同波数下对反应混合物进行快速吸收测量。所研究的反应是以过氧化氢为氧化剂将亚硫酸盐氧化为硫酸盐。化学反应的在线测量允许直接实时监测硫酸盐的形成和过氧化氢的消耗。