All-weather PM2.5 concentration real-time detection device based on CCD (charge coupled device) lateral scattering

A side-scattering, real-time detection technology, used in measurement devices, suspension and porous material analysis, particle suspension analysis, etc. The effect of operability, simple structure and low cost

Inactive Publication Date: 2018-08-21
HANGZHOU DIANZI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the past, the method of using CCD measurement has high requirements on ambient light, and it cannot be measured during the day, but can only be measured at night when the ambient light is dark. Such measurement does not have the real-time function during the day.
Secondly, the air humidity in the south is high, directly using the CCD to measure the scattered light of the laser in the atmosphere is easily affected by the moisture in the air, resulting in deviations in the results

Method used

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  • All-weather PM2.5 concentration real-time detection device based on CCD (charge coupled device) lateral scattering
  • All-weather PM2.5 concentration real-time detection device based on CCD (charge coupled device) lateral scattering

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Embodiment Construction

[0022] The preferred embodiments of the present invention will be further described below in conjunction with the accompanying drawings.

[0023] Such as figure 1 , 2 As shown, the all-weather PM2.5 concentration real-time detection device based on CCD side scattering in this embodiment includes: a detection dark box 1, a laser emitting unit, a light capturing unit and an air blowing mechanism.

[0024] The detection dark box 1 is a cube with a side length of 1 m. There are two connected cavities in the detection dark box 1, namely the first cavity and the second cavity. The vertical partition 10 is installed in the detection dark box 1. The first cavity and the second cavity The two cavities are separated by a partition 10, and there are several circular air holes 12 on the partition 10, the diameter of the air holes is 3 mm, and the distance between two adjacent air holes is 12 mm. The moisture absorbing material 11 is filled in the first cavity. The moisture-absorbing ma...

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Abstract

The invention discloses an all-weather PM2.5 concentration real-time detection device based on CCD (charge coupled device) lateral scattering. The device comprises a detection dark box, a laser emitting unit, a light capturing unit and a blowing mechanism, wherein a first cavity and a second cavity which are communicated are formed in the detection dark box, and the first cavity is filled with a moisture absorbing material; the blowing mechanism is communicated with the first cavity of the detection dark box; the second cavity of the detection dark box is communicated with the outside; the light capturing unit comprises a CCD and a processor, the CCD captures and collects laser information and transmits the information to the processor through a data line; the laser emitting unit and the CCD are arranged in the second cavity of the detection dark box, and the optical axis of the CCD is perpendicular to the optical axis of the laser emitting unit. All-weather PM2.5 detection is realizedwith a CCD lateral scattering method, and the influence of moisture is avoided.

Description

technical field [0001] The invention belongs to the field of optoelectronic technology, in particular to an all-weather PM2.5 concentration real-time detection device based on CCD side scattering. Background technique [0002] At present, my country's air pollution is still serious, one of the manifestations is soot pollution, and the result is that the concentration of total suspended particulates in the atmosphere exceeds the standard. Inhalable fine particulate matter, as a component of total suspended particulate matter, is very harmful to human health. The smaller the particle diameter, the deeper the part that enters the respiratory tract. Particles with a diameter of 10 microns are usually deposited in the upper respiratory tract, and particles below 2 microns can penetrate deep into the bronchioles and alveoli. After fine particles enter the human body to the alveoli, they will directly affect the ventilation function of the lungs, making the body prone to hypoxia. ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N15/06
CPCG01N15/06G01N2015/0693
Inventor 胡淼李应杰张彦斌冯冰周雪芳曾然杨国伟卢旸毕美华
Owner HANGZHOU DIANZI UNIV
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