Monodispersion Soot Particle Interference on NO2 Concentration Measurement Accuracy Using NDIR

2013 ◽  
Vol 345 ◽  
pp. 251-254
Author(s):  
Yan Jun Zhao ◽  
Shou Guang Cheng ◽  
Bin Qu

NDIR is one of the NO2 concentration measurement methods. The NO2 concentration can be figured out by measuring the attenuation of the infrared light intensity on the characteristic wavelength. But the infrared light intensity is also attenuated by the monodispersion soot particles because of the particles absorption and scattering. So the monodispersion soot particles can impact the NO2 concentration accuracy. The interference of the monodispersion particles is discussed in the paper. Simulation results show that the impact parameters on the NO2 concentration accuracy include the received scattering angle range, particle size and concentration. The solution method is brought out and NO2 concentration measurement accuracy can be improved.

2014 ◽  
Vol 1014 ◽  
pp. 295-298
Author(s):  
Bao Hua Chen ◽  
Yan Jun Zhao ◽  
Chong Hao Wang ◽  
Shou Guang Cheng

SO2 is one of the most important atmosphere pollutants which can be figured out by measuring the attenuation of the visible light intensity on the characteristic wavelength. But the visible light intensity is also attenuated by the monodispersion soot particles because of the particles absorption and scattering. The interference of the monodispersion particles is discussed in the paper. Simulation results show that the impact parameters on the SO2 concentration accuracy include the received scattering angle range, particle size and concentration. According to the study SO2 concentration measurement accuracy can be improved


2012 ◽  
Vol 534 ◽  
pp. 289-292
Author(s):  
Yan Jun Zhao ◽  
Dong Xing Wang ◽  
Yi Chen Lu ◽  
Rui Kun Gong

The non-dispersive infrared absorption spectrum method is one of the important sulfur dioxide concentration measurement method. If the soot particles attach on the protection windows surface, the original measurement light intensity is attenuated because of the absorption and scattering of the soot particle and the sulfur dioxide concentration measurement accuracy is decreased. The protection window pollution question caused by the monodispersion soot particles is discussed in the paper. The numerical simulation results show that the sulfur dioxide concentration measurement accuracy is related to the protection window pollution. The solution method is brought out and the measurement accuracy can be improved.


2014 ◽  
Vol 540 ◽  
pp. 255-258
Author(s):  
Yan Jun Zhao ◽  
Cheng Bin Gao ◽  
Bin Qu

Environment materials play important role in our daily life. It includes so many types. NO2 is one of the most important gaseous pollutants and NO2 concentration measurement system is one part of the CEMS system. There have many NO2 concentration measurement methods and NDIR is used commonly. The received angle of the measurement light is gradually decreases while the distance between soot and the receiver becomes larger; so the true infrared light intensity is smaller than the theoretical infrared light intensity and NO2 concentration is less than the actual concentration. To reduce the soot position influence, soot position influence on NO2 concentration measurement using NDIR is studied. The influence of the different soot position is analyzed. The simulation results show that the different soot position can influent the NO2 concentration accuracy. The solution method on decreasing the soot poison influence is brought out and can improve the NO2 concentration accuracy.


2013 ◽  
Vol 345 ◽  
pp. 255-258
Author(s):  
Yan Jun Zhao ◽  
Shou Guang Cheng ◽  
Bin Qu

NDIR is one of the important NO2 concentration measurement methods. The NO2 concentration can be figured out through measuring the light intensity attenuation. But the scattering and absorption of the multidispersion soot particles can attenuate the light intensity, so the infrared measurement light intensity attenuation is larger and the concentration is increased. The interference on the NO2 concentration caused by the multidispersion soot particles is discussed in the paper. The dissipativity, concentration, average size, size distribution parameters and the scattering light angle range of the multidispersion soot particles can interference the NO2 concentration. The method to reduce the interference is brought out and the NO2 concentration measurement accuracy is improved.


2013 ◽  
Vol 718-720 ◽  
pp. 424-428
Author(s):  
Yan Jun Zhao ◽  
Shou Guang Cheng ◽  
Bin Qu

The non-dispersive infrared absorption method (NDIR) is one of the important sulfur dioxide concentration measurement methods. If the soot particles are in the measurement light path, the original measurement light intensity is attenuated because of the soot particles absorption and scattering and the sulfur dioxide concentration is increasing, so the accuracy of the sulfur dioxide concentration is decreased. The single soot particle interference caused by the dissipative and the non-dissipative soot scattering and absorption is discussed in the paper. The numerical simulation results show that the sulfur dioxide concentration measurement accuracy is related to the soot particle diameter. The solution method is brought out and the measurement accuracy can be improved.


2014 ◽  
Vol 886 ◽  
pp. 228-231
Author(s):  
Yan Jun Zhao ◽  
Cheng Bin Gao

NDIR method is one of the important nitrogen dioxide concentration measurement methods. The original and the transmission light intensity on the nitrogen dioxide attached on the protection windows is attenuated because of the soot scattering and absorption and the received light intensity on the nitrogen dioxide Characteristic absorption wavelength is deviated from the theoretical absorption light intensity, so the nitrogen dioxide concentration measurement accuracy is decreased. The protection windows pollution interference caused by the monodispersion soot is discussed in this paper. The numerical simulation based on the Mie theory results show that the nitrogen dioxide concentration measurement accuracy is related to the soot concentration, soot diameter and so on. The solution method of the windows pollution interference is brought out and the nitrogen dioxide concentration measurement accuracy can be improved.


2013 ◽  
Vol 345 ◽  
pp. 247-250
Author(s):  
Yan Jun Zhao ◽  
Shou Guang Cheng ◽  
Bin Qu

NDIR is one of SO2 concentration measurement methods. SO2 concentration can be figured out through measuring the infrared light intensity changing. The light intensity can be attenuated by the particles, so the SO2 concentration is increased. To solve the particles interference, the multidispersion particles interference mechanism is established. Particles characteristic parameters which interferes the SO2 concentration include the dissipativity, concentration, average size and size distribution parameters. Simulation results give the relationship between the SO2 concentration and particles characteristic parameters. The method to reduce the interference of the SO2 concentration is brought out and the measurement accuracy can be improved.


2014 ◽  
Vol 886 ◽  
pp. 232-235
Author(s):  
Yan Jun Zhao ◽  
Shou Guang Cheng

NDIR method is one of the important sulfur dioxide concentration measurement methods. The original and the transmission light intensity on the sulfur dioxide attached on the protection windows is attenuated because of the soot absorption and scattering and the received light intensity of the sulfur dioxide characteristic absorption wavelength is deviated from the theoretical absorption light intensity, so the sulfur dioxide concentration measurement result is error. The protection window soot pollution interference caused by the multidispersion soot is discussed in this paper. The numerical simulation results based on the Mie theory show that the sulfur dioxide concentration measurement result is related to the multidispersion soot average diameter, soot diameter distribution and soot dissipativity. The solution method of the windows pollution soot interference is brought out and sulfur dioxide concentration measurement accuracy can be improved.


2014 ◽  
Vol 910 ◽  
pp. 198-201
Author(s):  
Yan Jun Zhao ◽  
Cheng Bin Gao ◽  
Bin Qu

In the environment research, Sulfur Dioxide is one of the most important pollutants of the stationary pollutant sources and Sulfur Dioxide emission concentration is the important parameters of EPA pollutant monitoring system in the fomer study. NDIR is the common method on measuring Sulfur Dioxide emission concentration. The monodispersion soot difference position can change the collection acceptance angle of the received system and can influent the infrared light intensity, so Sulfur Dioxide emission concentration error is increasing. To reduce the monodispersion soot position interference, the interference is studied in this paper. The monodispersion soot different angle range infrared light intensity is calculated. Numerical simulation results show that the monodispersion soot difference position can reduce Sulfur Dioxide concentration measurement accuracy. The solution method is brought out and can improve the Sulfur Dioxide concentration accuracy.


2014 ◽  
Vol 886 ◽  
pp. 223-227
Author(s):  
Yan Jun Zhao ◽  
Cheng Bin Gao

NDIR method is one of the important nitrogen dioxide concentration measurement methods. The soot attached on the protection windows, the original and the transmission light intensity on the nitrogen dioxide is attenuated because of the soot absorption and scattering and the received nitrogen dioxide Characteristic absorption wavelength light intensity is deviated from the theoretical absorption light intensity, so the nitrogen dioxide concentration measurement accuracy is decreased. The protection window pollution interference caused by the monodispersion soot is discussed in this paper. The numerical simulation based on the Mie theory results show that the nitrogen dioxide concentration measurement accuracy is related to the soot concentration, soot average diameter, soot diameter distribution and so on. The solution method of the windows monodispersion soot pollution interference is brought out and the nitrogen dioxide concentration measurement accuracy can be improved.


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