Intermediate infrared absorption spectra based method for multi-component mixed gas qualitative and quantitative analysis and system thereof

An infrared absorption spectrum, mixed gas technology, applied in the field of optics, can solve the problems of gas concentration error, large inaccuracy of gas concentration, and inability to qualitatively analyze

Active Publication Date: 2012-07-04
广州昂昇环境分析仪器有限公司 +1
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Problems solved by technology

[0006]1. Unable to qualitatively analyze the spectrum containing unknown gas, it is necessary to manually input the gas that may exist, and then analyze the type of gas that may exist under a specific environmental condition The absorption spectra obtained by a separate spectrometer are linearly weighted and summed to obtain the concentration of the correspondin

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  • Intermediate infrared absorption spectra based method for multi-component mixed gas qualitative and quantitative analysis and system thereof
  • Intermediate infrared absorption spectra based method for multi-component mixed gas qualitative and quantitative analysis and system thereof
  • Intermediate infrared absorption spectra based method for multi-component mixed gas qualitative and quantitative analysis and system thereof

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Embodiment Construction

[0033] The present invention will be described in detail below in conjunction with the embodiments and accompanying drawings.

[0034] The invention is a method for qualitative and quantitative analysis of multi-component mixed gas absorption spectrum based on an adjustable mid-infrared quantum cascade laser. The experimental device can collect the characteristic absorption spectrum of at least one gas in a certain band, and compare the collected gas characteristic absorption spectrum with the theoretical spectrum of the standard database (HITRAN or PNNL) under similar experimental conditions through nonlinear optimization calculations, so that Calculate the gas concentration.

[0035] Such as figure 1 , is a flowchart of the qualitative and quantitative analysis method for multi-component mixed gas based on mid-infrared absorption spectrum of the present invention, including the following:

[0036] 1. Decompose the gas absorption spectrum into Voigt functions. The gas abs...

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Abstract

The invention belongs to the technical field of optics, and particularly relates to an intermediate infrared absorption spectra based method for multi-component mixed gas qualitative and quantitative analysis and a system thereof. The method provided by the invention includes the steps as follows: a nonlinear optimization method is adopted, repeated fitting for the characteristic absorption spectra is performed through adopting a series of Voigt functions, so as to judge the absorption peaks of to-be-tested gases for forming the tested absorption peak, and further obtain a list of peak positions; default positions of peak values of spectra of different objects obtained from a standard data bank are compared with the peak positions in the list, so that the existence of a certain gas can beconfirmed within a certain acceptable error range; and the gas concentration can be acquired through the nonlinear optimization algorithm carried out by the computer. The method provided by the invention can obtain an accurate result through numerical analysis even if positions of spectrum lines or line widths tested by an instrument change to a certain extent under the influence of an environment, and does not need an independent spectrometer to obtain reference spectra under different experiment conditions; and meanwhile, the invention provides the system for realizing the method for the qualitative and quantitative analysis.

Description

technical field [0001] The invention belongs to the field of optical technology, in particular to a method and system for qualitative and quantitative analysis of multi-component mixed gas based on mid-infrared absorption spectrum. Background technique [0002] Since the rotational and vibrational energy states of gas molecules in the mid-infrared band can produce strong characteristic absorption spectra, tunable mid-infrared quantum cascade laser (Quantum Cascade laser, QCL) spectroscopy is widely used in the field of atmospheric trace gas monitoring. [0003] Beer's law relates the electrical signal output from the MCT detector to the gas concentration and its corresponding molecular spectrum. [0004] Due to the limitations of the tuning range and spectral resolution of quantum cascade lasers, a variety of numerical fitting methods were used to quantitatively analyze the gas concentration in the monitored spectrum. [0005] The widely used linear least squares fitting me...

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Application Information

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IPC IPC(8): G01N21/35G01N21/3504
Inventor 李丹陈尊裕晋得安胡强山张得志
Owner 广州昂昇环境分析仪器有限公司
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