Device and method for monitoring concentration of ultralow-emission smoke

A concentration monitoring and measuring device technology, which is used in measuring devices, suspension and porous material analysis, particle suspension analysis, etc. Effects of performance and accuracy requirements

Pending Publication Date: 2019-03-22
UNIV OF SHANGHAI FOR SCI & TECH
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Problems solved by technology

However, due to the uneven particle size distribution in the smoke, the commonly used single angle angle scattering method cannot know the particle size distribution in the smoke, resulting in large measurement errors
The β-ray method uses a sampling tube to collect some particles at intervals in the measurement area, and calculates the concentration of smoke and dust according to the attenuation degree of the β-ray. The measurement r

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  • Device and method for monitoring concentration of ultralow-emission smoke
  • Device and method for monitoring concentration of ultralow-emission smoke
  • Device and method for monitoring concentration of ultralow-emission smoke

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Embodiment Construction

[0018] The idea, specific structure and technical effects of the present invention will be further described below in conjunction with the accompanying drawings, so as to fully understand the purpose, features and effects of the present invention.

[0019] refer to figure 1 , the ultra-low emission smoke concentration monitoring device of the present invention includes an angular scattering measuring device 10 , a β-ray measuring device 20 and a computer 30 .

[0020] Angular scattering measurement device 10 is used to measure the concentration information of particulate matter in real time, including helium-neon laser 11, 3 laser controllers 12, temperature-controlled power supply 13, aerosol generator 14, heating device 15, particulate matter measurement area 16, 3 photoelectric detector 17 and photoelectric converter 18. Among them, the HeNe laser 11 is used to generate laser light, multiple laser controllers 12 are used to adjust the wavelength of different needs, and the...

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Abstract

The invention relates to the field of monitoring of smoke particulate matter, in particular to a device and a method for monitoring concentration of ultralow-emission smoke. The concentration monitoring device comprises an angle scattering measurement device, a beta-ray measurement device and a computer, wherein the angle scattering measurement device comprises a helium-neon laser, a laser controller, a temperature control power supply, an aerosol generator, a heating device, a particulate matter measurement zone, a photodetector and a photoelectric converter; the beta-ray measurement device comprises a beta-ray radiation source, a sampling tube, a beta-ray detector and a vacuum pump; the sampling tube is connected with the particulate matter measurement zone and the vacuum pump; the photoelectric converter and the beta-ray detector are connected with the computer; measurement results are transmitted to the computer, the computer corrects an angle scattering measurement result througha beta-ray measurement result, and corrected real-time concentration information of particulate matter is obtained. Accurate real-time measurement result can be obtained with the monitoring method, and the requirements for timeliness and accuracy of smoke measurement can be met simultaneously.

Description

technical field [0001] The invention relates to the field of monitoring smoke and dust particles, in particular to an ultra-low emission smoke dust concentration monitoring device and a monitoring method. Background technique [0002] The particle concentration of soot is one of the important parameters to characterize the emission of soot pollutants. At present, the weighing method is the general detection method for particle pollutants in the world. Based on the needs of online measurement, real-time sampling smoke concentration analysis methods such as continuous weighing method and ray method, as well as online concentration analysis methods such as charge method and light scattering method have been formed. However, with the improvement of environmental protection requirements and the progress of dust removal technology, the ultra-low emission smoke concentration and particle size have been greatly reduced. If the sampling method is used for measurement, the measuremen...

Claims

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Application Information

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IPC IPC(8): G01N15/06
CPCG01N15/06G01N2015/0693
Inventor 杨斌邓杰郭校绪平力施智雄赵蓉
Owner UNIV OF SHANGHAI FOR SCI & TECH
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