首页> 外文会议>Optical Methods in Atmospheric Chemistry >Laser-induced-fluorescence-based detection system for measurement of tropospheric OH using 308-nm excitation at low pressure
【24h】

Laser-induced-fluorescence-based detection system for measurement of tropospheric OH using 308-nm excitation at low pressure

机译:基于激光诱导荧光的检测系统,用于在低压下使用308 nm激发来测量对流层OH

获取原文
获取原文并翻译 | 示例

摘要

Abstract: A detection system for the measurement of tropospheric OH radicals by laser-induced fluorescence has been developed. Ambient air is expanded through a nozzle into a fluorescence cell and is irradiated at low pressure by a pulsed frequency-doubled dye laser. The laser wavelength is tuned to selectively excite the OH radicals on a single rovibronic transition at 308 nm. The OH-resonance fluorescence, emitted mostly between 307 and 311 nm, is detected by a gated photomultiplier/photon counter assembly. This excitation/detection method reduces interferences due to laser generated OH efficiently, far below the projected limit of detection. Calibration of our present system yields a detection limit (SNR $EQ 2) of 8.2 $MUL 10$+6$/ OH/cm$+3$/ for a 5 minutes on-resonance and 5 minutes off-resonance signal integration period at a laser pulse repetition rate of 20 Hz. A considerable improvement of the detection limit to 3.7 $MUL 10$+5$/ OH/cm$+3$/ is anticipated by replacing the currently available laser system by a copper-vapor laser pumped dye laser allowing a higher repetition rate of 10 kHz. This would allow useful in-situ OH measurements for testing current tropospheric chemistry models. !23
机译:摘要:开发了一种通过激光诱导的荧光测量对流层OH自由基的检测系统。环境空气通过喷嘴膨胀到荧光池中,并通过脉冲倍频染料激光在低压下照射。调整激光波长以在308 nm的单个电子振动跃迁上选择性激发OH自由基。 OH共振荧光主要在307至311 nm之间发射,由门控光电倍增管/光子计数器组件检测。这种激发/检测方法有效地减少了由于激光产生的OH而引起的干扰,该干扰远低于预计的检测极限。对本系统进行校准后,在5分钟的开启共振和5分钟的非共振信号积分周期内,检测极限(SNR $ EQ 2)为8.2 $ MUL 10 $ + 6 $ / OH / cm $ + 3 $ /激光脉冲重复频率为20 Hz。预计将检测限大大提高至3.7 $ MUL 10 $ + 5 $ / OH / cm $ + 3 $ /可以通过用铜蒸气激光器泵浦的染料激光器替换当前可用的激光器系统来实现更高的重复率10千赫。这将允许有用的原位OH测量来测试当前的对流层化学模型。 !23

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号