Spectroscopy and Spectral Analysis, Volume. 31, Issue 1, 69(2011)

A Method for Quantitative Analysis System of Alkane Gaseous Mixture with Near Infrared Spectroscopy

ZHU Ling-jian1,2、*, TANG Xiao-jun1, QIU Zong-ming2, LIU Jun-hua1, ZHANG Zhong-hua3, and ZHANG Yong1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    A method for online quantitative analysis system of alkane gaseous mixture with near infrared spectroscopy is described in the present paper. A single plane diffraction grating is used as the principal device in the monochromatic spectrum system. The key parameters of the monochromator were deduced and calculated in detail. A quantitative analysis system was designed and constructed according to the parameters. The narrow-band beam testing experiments and spectral scanning experiments of seven kinds of single-component alkane gases were accomplished on the above hardware system platform. The narrow-beam experiments show that a 10 nm narrow-band beam spectra was successfully obtained by the monochromatic system when the entrance slit width is 2 mm. And a step-scanning resolution of the outgoing beam’s center wavelength with 0.1 nm can be realized within the spectra of 1.2~1.8 μm. The spectral scanning experiments indicate that there was some stronger characteristic absorption spectrum existing between the spectra of 1.6~1.8 μm, which is consistent with the HITRAN spectral database. And there is serious cross-aliasing phenomenon existing among the absorption spectra. These experiments demonstrate that this method has a successful application in mixed gas monitoring and on-line analysis with the characteristics of simple structure and low cost. And it also provides further technical reserves and opens a path way to spectral analysis in the follow-up studies.

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    ZHU Ling-jian, TANG Xiao-jun, QIU Zong-ming, LIU Jun-hua, ZHANG Zhong-hua, ZHANG Yong. A Method for Quantitative Analysis System of Alkane Gaseous Mixture with Near Infrared Spectroscopy[J]. Spectroscopy and Spectral Analysis, 2011, 31(1): 69

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    Paper Information

    Received: Mar. 2, 2010

    Accepted: --

    Published Online: Mar. 24, 2011

    The Author Email: Ling-jian ZHU (zlj.zhy@gmail.com)

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