Si Fuqi
Chinese Academy of Sciences
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Featured researches published by Si Fuqi.
Chinese Physics | 2005
Si Fuqi; Liu Jianguo; Xie Pinghua; Zhang Yu-jun; Liu Wen-qing; Hiroaki Kuze; Liu Cheng; Nofel Lagrosas; Nobuo Takeuchi
With the method of differential optical absorption spectroscopy (DOAS), average concentrations of aerosol particles along light path were measured with a flashlight source in Chiba area during the period of one month. The optical thickness at 550 nm is compared with the concentration of ground-measured suspended particulate matter (SPM). Good correlations are found between the DOAS and SPM data, leading to the determination of the aerosol mass extinction efficiency (MEE) to be possible in the lower troposphere. The average MEE value is about 7.6m2.g−1 and the parameter exhibits a good correlation with the particle size as determined from the wavelength dependence of the DOAS signal intensity.
Light, Energy and the Environment (2016), paper JW4A.24 | 2016
Li Su-wen; Liu Wenqing; Si Fuqi; Wei Ming-Hong
A method was developed to reconstruct spatial distributions of NO2 emission of industrial chimneys basing on timing scanning MAX-DOAS system, combining computed tomography. Visual spatial distribution of NO2 concentrations was formed.
Chinese Physics B | 2014
Li Chuanxin; Si Fuqi; Liu Wen-qing; Zhou Haijin; Jiang Yu; Hu Renzhi
By utilizing a natural mercury lamp, the transverse Zeeman background correction method, which is used for trace mercury measurement in air, is studied. In this paper, a natural mercury lamp is used as a light source, and is placed in a 1.78-T magnetic field. The lamp emits two linearly polarized light beams σ± and π of 253.65-nm resonance line, which are used as bias light and absorbing light, respectively. A polarization modulation system is used to allow σ± and π light beams to pass through alternately with a certain frequency. A multipath optical cell with 12-m optical path is used to increase optical distance. Based on the system described above, the influence caused by UV absorbing gases, such as NO2, SO2, acetone, benzene, and O3, is analyzed. The results show that it may reduce the detection limit when the concentrations of these gases exceed 83.4 ppm, 20.3 ppm, 142.3 ppm, 0.85 ppm, and 0.55 ppm, respectively. The detection limit of the system is calculated and can achieve up to 1.44 ng/m3 in 10 minutes. Measurements on mercury sample gas and air are carried out, and the measured data are compared with the data of RA-915 mercury analyzer (Russia). The result shows that the correlation coefficient reaches up to 0.967. The experimental results indicate that the transverse Zeeman background correction method can be used to quantify trace mercury in air with high-precision.
Atmospheric Environment | 2005
Si Fuqi; Hiroaki Kuze; Yotsumi Yoshii; Masaya Nemoto; Nobuo Takeuchi; Toru Kimura; Toyofumi Umekawa; Taisaku Yoshida; Tadashi Hioki; Tsuyoshi Tsutsui; Masahiro Kawasaki
Archive | 2013
Si Fuqi; Xie Pinhua; Dou Ke; Zhou Haijin; Wang Yaping; Liu Yu; Fang Wu; Liu Wenqing
Archive | 2010
Si Fuqi; Xie Pinhua; Dou Ke; Zhan Kai; Liu Yu; Xu Jin; Liu Wenqing
Archive | 2015
Xu Jin; Li Ang; Xie Pinhua; Si Fuqi; Fang Wu; Jiang Yu; Dou Ke; Liu Wenqing; Liu Jianguo
Archive | 2014
Jiang Yu; Xie Pinhua; Si Fuqi; Qin Min; Chen Jun
Archive | 2014
Si Fuqi; Jiang Yu; Xiang Lianqin; Zhou Haijin; Zhao Minjie; Liu Wenqing
Advances in Atmospheric Sciences | 2006
Si Fuqi; Liu Jianguo; Xie Pinghua; Zhang Yu-jun; Liu Wen-qing; Hiroaki Kuze; Nofel Lagrosas; Nobuo Takeuchi