Two quantum cascade laser spectrum-based multicomponent gas simultaneous detection device and method

A quantum cascade laser and quantum cascade technology are applied in the field of laser spectrum detection and gas detection, which can solve the problems of low reliability and measurement accuracy of gas concentration inversion methods, reduced sensitivity and reliability, and unsatisfactory traditional methods. Achieve the effect of avoiding absorption interference effect, high sensitivity and high precision gas analysis, and improving system sensitivity

Active Publication Date: 2016-01-27
ANHUI UNIVERSITY
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Problems solved by technology

The former discloses a trace gas detection device and method based on direct absorption spectroscopy of mid-infrared quantum cascade lasers. This method uses pulsed quantum cascade lasers as a light source and uses direct absorption spectroscopy alone. and optical noise interference, limited sensitivity, gas concentration inversion method reliability and low measurement accuracy; the latter discloses a trace gas detection method and device based on mid-infrared spectroscopy with a long optical path open optical path combined with wavelength modulation technology , this method uses a continuous quantum cascade laser as a light source and uses wavelength modula

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  • Two quantum cascade laser spectrum-based multicomponent gas simultaneous detection device and method
  • Two quantum cascade laser spectrum-based multicomponent gas simultaneous detection device and method
  • Two quantum cascade laser spectrum-based multicomponent gas simultaneous detection device and method

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[0084] combine figure 1 , which describes the first embodiment of the present invention in detail, but does not limit the claims of the present invention in any way.

[0085] Such as figure 1 As shown, the multi-component gas simultaneous detection device based on two kinds of quantum cascade laser spectra includes an arbitrary wave function generator 1, a room temperature continuous mode mid-infrared quantum cascade laser 4, a focusing and collimation three-dimensional adjustment system 5, and a first reflection Mirror 6, sample absorption cell 7, off-axis parabolic mirror 8, first detector 9, data acquisition unit 10 and computer 11, the mid-infrared quantum cascade laser 4 in the room temperature continuous mode has a temperature control unit 2 and a current control unit 3 .

[0086] When working, the arbitrary wave function generator 1 outputs a periodic signal that only superimposes the modulation signal in any half cycle as the current drive signal of the mid-infrared ...

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Abstract

The present invention relates to the technical field of laser spectrum detection and gas detection, and in particular relates to a two quantum cascade laser spectrum-based multicomponent gas simultaneous detection device and method. An arbitrary waveform function generator outputs a periodic signal which only superposes high-frequency modulation signals in any half period to be used as a laser current signal, a room temperature continuous mode mid-infrared quantum cascade laser is driven by a current control unit, the laser emits a laser signal, the laser signal passes sequentially through a focusing collimating three-dimensional adjustment system, a first mirror, a sample absorption pool and a off-axis parabolic mirror to be reflected to a first detector, the first detector passes the laser signal through a data acquisition unit to convert into an electrical signal and transmit to a computer, and information of the gas to be measured can be obtained by analysis and processing of the electrical signal by the computer. The devices simultaneously utilizes two spectrums for gas detection, and has the advantages of high detection sensitivity, high detection accuracy, no need of external standard gas calibration, simple optical path adjustment, fast response, and stability, and the like.

Description

technical field [0001] The invention relates to the technical fields of laser spectrum detection and gas detection, in particular to a multi-component gas simultaneous detection device and method based on two quantum cascade laser spectra. Background technique [0002] Traditional gas composition detection methods mainly include chemical methods and optical methods. Chemical methods usually require pretreatment of the analyte, the process is complex, time-consuming, easy to destroy the original state of the sample and produce secondary pollutants; optical spectroscopy has the advantages of non-contact, non-destructive, strong selectivity and fast response. Real-time in-situ continuous analysis can be realized, making it widely used in the fields of atmospheric environment monitoring, industrial process control, combustion component detection and respiratory gas diagnosis. [0003] Commonly used optical spectroscopy methods include direct absorption spectroscopy and waveleng...

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Application Information

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IPC IPC(8): G01N21/3504G01N21/01
Inventor 李劲松邓昊俞本立
Owner ANHUI UNIVERSITY
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