• Acta Optica Sinica
  • Vol. 37, Issue 5, 501002 (2017)
Zhang Yong1、2、3, Si Fuqi1, Li Chuanxin1, Zeng Yi1, Liu Wenqing1, and Zhou Haijin1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/aos201737.0501002 Cite this Article Set citation alerts
    Zhang Yong, Si Fuqi, Li Chuanxin, Zeng Yi, Liu Wenqing, Zhou Haijin. Flue Gas Mercury Online Monitoring System Based on Transverse Zeeman Effect[J]. Acta Optica Sinica, 2017, 37(5): 501002 Copy Citation Text show less
    References

    [1] Feng Xinbin, Qiu Guangle, Fu Xuewu, et al. Mercury pollution in the environment[J]. Progress in Chemistry, 2009, 21(2-3): 436-457.

    [2] Ivannikova N V, Shiryaeva O A, Karpov Y A. Atomic absorption determination of mercury in solid samples of placer[J]. Inorganic Materials, 2010, 46(14): 1499-1502.

    [3] Zhang Y L, Adeloju S B. Speciation of mercury in fish samples by flow injection catalytic cold vapour atomic absorption spectrometry[J]. Analytica Chimica Acta, 2012, 721: 22-27.

    [4] Pacyna E G, Pacyna J M. Steenhuisen F, et al. Global anthropogenic mercury emission inventory for 2000[J]. Atmospheric Environment, 2006, 40(22): 4048-4063.

    [5] Wang Sheng, Wang Huimin, Zhu Fahua, et al. Mercury emission characteristics from coal-fired power plants based on actual measurement[J]. Environmental Science, 2011, 32(1): 33-37.

    [6] Yin Libao, Gao Yuqun, Xu Qisheng, et al. Mercury emission from coal-fired power plants in China[J]. Proceedings of the CSEE, 2013, 33(29): 1-9.

    [7] Yang Xianghua, Duan Yufeng, Yang Linjun, et al. The measurement of mercury in flue gases from coal-fired power plants[J]. Energy Research and Utilization, 2005(5): 25-29.

    [8] Liu Jin, Si Fuqi, Zhou Haijin, et al. Estimation of sulfur dioxide emission from power plant using imaging differential optical absorption spectroscopy technique[J]. Acta Optica Sinica, 2015, 35(6): 0630003.

    [9] Qiao Linqin, Zhang Jun, Zhu Zejun, et al. Online monitoring status of mercury in the flue gas and performance evaluation of instrument[J]. The Administration and Technique of Environmental Monitoring, 2014, 26(5): 61-63.

    [10] Zhang Jie. The online monitoring technology and application of atmosphere mercury in coal-fired power plants[J]. Huadian Technology, 2011, 33(7): 72-76.

    [11] Sang Qi, Le Yuanyuan, Xu Han. Emission standards, current situation and reduction technology of air pollutants for thermal power plants[J]. Zhejiang Electric Power, 2011(12): 42-46.

    [12] Deng Bo, He Huakun. Atomic absorption spectral analysis[M]. Beijing: Chemical Industry Press, 2004.

    [13] Yang Minzhen, Du Zonglu. Zeeman effect atomic absorption spectroscopy[J]. Journal of Liaoning Normal University(Natural Science Edition), 1987(3): 32-38.

    [14] Li Zhonggen, Feng Xinbin, Zheng Wei, et al. Sampling and determination of different mercury species in atmosphere[J]. Environmental Monitoring in China, 2007, 23(2): 19-25.

    [15] Li Chuanxin, Si Fuqi, Zhou Haijin, et al. New transverse Zeeman effect method for mercury detection based on common mercury lamp[J]. Acta Physica Sinica, 2014, 63(7): 074202.

    [16] Pandey S K, Kim K H, Brown R J C. Measurement techniques for mercury species in ambient air[J]. Trends in Analytical Chemistry, 2011, 30(6): 899-917.

    [17] Pan L, Chai T F, Carmichael G R, et al. Top-down estimate of mercury emissions in China using four-dimensional variational data assimilation[J]. Atmospheric Environment, 2007, 41: 2804-2819.

    [18] Edner H, Sunesson A, Svanberg S, et al. Differential optical absorption spectroscopy system used for atmospheric mercury monitoring[J]. Applied Optics, 1986, 25(3): 403-409.

    [19] Chen Zhijun, Zeng Limin. Calibration methods for an on-line atmospheric mercury analyzer using a permeation tube[J]. Acta Scientiae Circumstantiae, 2011, 31(6): 1192-1197.

    [20] Huber M L, Laesecke A, Friend D G. Correlation for the vapor pressure of mercury[J]. Industrial and Engineering Chemistry Research, 2006, 45(21): 7351-7361.

    [21] Zhou Zeyi, Liang Jianping, Gai Liangjing. Study of diffusion tube calibration gases preparation and dynamic volumetric method[J]. Acta Metrologica Sinica, 2004, 25(1): 81-84.

    [22] Byun Y, Shin D N, Ham S W, et al. Calibration of mercury analysers: Assessment of agreement between four methods[J]. Analytical Methods, 2012, 4: 3841-3848.

    [23] Yang Kai. Flue gas mercury monitoring technology and equipment in stationary pollution source[M]. Beijing: China Electric Power Press, 2012.

    [24] Yu Minjie, Liu Minghui, Dong Zuoren, et al. Study on measuring concentration of ammonia and sulphur dioxide by differential optical absorption spectrometry based on fast Fourier transform[J]. Chinese J Lasers, 2015, 42(9): 0915001.

    Zhang Yong, Si Fuqi, Li Chuanxin, Zeng Yi, Liu Wenqing, Zhou Haijin. Flue Gas Mercury Online Monitoring System Based on Transverse Zeeman Effect[J]. Acta Optica Sinica, 2017, 37(5): 501002
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