期刊文献+

适用于测量大气气溶胶吸收系数的光声光谱系统的研究 被引量:17

Development of a Photoacoustic Spectroscopy System for the Measurement of Absorption Coefficient of Atmospheric Aerosols
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摘要 外部噪声和环境温湿度变化对光声池性能的影响是光声光谱技术在实际大气气溶胶吸收测量应用中遇到的主要问题。详细分析了环境温湿度变化引起的共振频率漂移对光声信号的影响,提出了抑制流动噪声和采样泵振动噪声的方法,研制完成了一套测量大气气溶胶吸收的光声光谱系统,探测极限为1.4×10-8 W·cm-1·Hz-1/2。利用NO2气体在532nm的吸收对光声池进行了标定,并对实际大气气溶胶的吸收特性进行了测量,结果表明光声光谱测量系统可以满足自然悬浮状态下的气溶胶吸收系数的实时测量。 In the present paper, the authors focus on the effect of the resonance frequency shift due to the changes in temperature and humidity on the PA signal, present several methods to control the noise derived form gas flow and vibration from the sam- pling pump. Based on the efforts mentioned above, a detection limit of 1.4X 10-8 W ~ cm-~ ~ Hz-1/z was achieved for the meas- urement of atmospheric aerosols absorption coefficient. During the experiments, the PA cell was calibrated with the absorption of standard NOz gas at 532 nm and the atmospheric aerosols were measured continuously. The measurement results show that the PAS is suitable for the real-time measurement of the absorption coefficient of atmospheric aerosols in their natural suspended state.
出处 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2013年第7期1729-1733,共5页 Spectroscopy and Spectral Analysis
基金 国家自然科学基金项目(41175036 41205120)资助
关键词 光声光谱 大气气溶胶 吸收系数 Photoacoustic spectroscopy Atmospheric aerosols Absorption coefficient
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参考文献10

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同被引文献97

  • 1张贤达,保铮.盲信号分离[J].电子学报,2001,29(z1):1766-1771. 被引量:212
  • 2潘爱军,严高师.激光光声光谱法检测磷化氢气体浓度的研究[J].激光与光电子学进展,2006,43(1):33-35. 被引量:9
  • 3饶瑞中.激光大气传输湍流与热晕综合效应[J].红外与激光工程,2006,35(2):130-134. 被引量:46
  • 4王建业,纪新明,吴飞蝶,周嘉,黄宜平.光声光谱法探测微量气体[J].传感技术学报,2006,19(4):1206-1211. 被引量:27
  • 5Vincenzo Spagnolo, Pietro Patimisco, Simone Borri, et al.. Part-per-trillion level SF6 detection using a quartz enhanced photoacoustic spectroscopy-based sensor with single-mode fiber-coupled quantum cascade laser excitation [J]. Opit Lett, 2012, 37(21): 4461-4463.
  • 6黄会贤. 变压器油中微弱乙炔气体的光声光谱检测特性研究[D].重庆: 重庆大学, 2008. 18-29.
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  • 10林洁丽. 高分辨(饱和)分子光谱谱线线型、线宽及其应用的研究[D]. 武汉: 中国科学院武汉物理与数学研究所, 2000. 15-12.

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