Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Hefei 230027, China; Key Laboratory of Environmental Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China.
Key Laboratory of Environmental Optics and Technology, Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Hefei 230031, China.
J Environ Sci (China). 2018 Mar;65:190-200. doi: 10.1016/j.jes.2017.03.012. Epub 2017 Mar 22.
An OH radical measurement instrument based on Fluorescence Assay by Gas Expansion (FAGE) has been developed in our laboratory. Ambient air is introduced into a low-pressure fluorescence cell through a pinhole aperture and irradiated by a dye laser at a high repetition rate of 8.5kHz. The OH radical is both excited and detected at 308nm using A-X(0,0) band. To satisfy the high efficiency needs of fluorescence collection and detection, a 4-lens optical system and a self-designed gated photomultiplier (PMT) is used, and gating is actualized by switching the voltage applied on the PMT dynodes. A micro channel photomultiplier (MCP) is also prepared for fluorescence detection. Then the weak signal is accumulated by a photon counter in a specific timing. The OH radical excitation spectrum range in the wavelength of 307.82-308.2nm is detected and the excited line for OH detection is determined to be Q(2) line. The calibration of the FAGE system is researched by using simultaneous photolysis of HO and O. The minimum detection limit of the instrument using gated PMT is determined to be 9.4×10molecules/cm, and the sensitivity is 9.5×10cps/(OH·cm), with a signal-to-noise ratio of 2 and an integration time of 60sec, while OH detection limit and the detection sensitivity using MCP is calculated to be 1.6×10molecules/cm and 2.3×10cps/(OH·cm). The laboratory OH radical measurement is carried out and results show that the proposed system can be used for atmospheric OH radical measurement.
我们实验室开发了一种基于荧光分析的气相扩展(FAGE)的 OH 自由基测量仪器。环境空气通过微孔进入低压荧光池,并在 8.5kHz 的高重复率下用染料激光照射。OH 自由基在 308nm 处同时被激发和检测,使用 A-X(0,0) 带。为了满足荧光收集和检测的高效率需求,使用了一个 4 透镜光学系统和一个自行设计的门控光电倍增管(PMT),通过切换施加在 PMT 倍增管上的电压来实现门控。还准备了微通道光电倍增管(MCP)用于荧光检测。然后,在特定的时间内,通过光子计数器累积弱信号。检测到 307.82-308.2nm 波长范围内的 OH 自由基激发光谱范围,并确定用于 OH 检测的激发线为 Q(2)线。通过同时光解 HO 和 O 来研究 FAGE 系统的校准。使用门控 PMT 的仪器的最小检测限确定为 9.4×10molecules/cm,灵敏度为 9.5×10cps/(OH·cm),信噪比为 2,积分时间为 60sec,而使用 MCP 的 OH 检测限和检测灵敏度计算为 1.6×10molecules/cm 和 2.3×10cps/(OH·cm)。进行了实验室 OH 自由基测量,结果表明所提出的系统可用于大气 OH 自由基测量。