Radon daughter pollution recovery correction method in radon measurement of radon daughter electrostatic adsorption

A technology of electrostatic adsorption and radon progeny, applied in the field of nuclear radiation detection, can solve the problems of waiting time, affecting measurement work, and the decay of radon progeny itself.

Pending Publication Date: 2018-01-19
CHENGDU UNIVERSITY OF TECHNOLOGY +1
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Problems solved by technology

But the decay of the radon daughter itself requires waiting time
In actual work, it is often necessary to carry out the measurement work of the next measurement point b

Method used

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  • Radon daughter pollution recovery correction method in radon measurement of radon daughter electrostatic adsorption

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Embodiment Construction

[0016] Embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0017] as attached figure 1 , in order to achieve the purpose of the above invention, the specific steps of the technical solution adopted include: S1. the test system automatically records the current measurement completion time, and automatically saves the current Po218 measured value; S2. closes the high-voltage static electricity, and puts radon and Electrostatic high voltage on the surface of its daughter collection chamber; S3. Start the air pump, and automatically flush radon and its daughter collection chamber with fresh air according to the set flushing time; S4. Turn on the electrostatic high voltage and enter the next measurement work; S5 .After the measurement work is completed, automatically record the difference t1, t2 between the start and end time of the current measurement and the end time of the last measurement; S6. By the formula ...

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Abstract

The invention provides a radon daughter pollution recovery correction method in the radon measurement of radon daughter electrostatic adsorption, and the method specifically comprises the steps: S1, enabling a testing system to automatically record a current measurement completion moment, and automatically storing a current Po218 measurement value; S2, cutting off high-voltage static, releasing radon in a mode of ohmic discharging and the high-voltage static of the surface of a daughter collection cavity; S3, starting a sucking pump, and automatically flushing the radon and the daughter collection cavity through fresh air according to the set flushing time; S4, starting the high-voltage static, and switching to a next measurement operation; S5, automatically recording the differences t1 and t2 between the start and end time of the current moment and the end time of the former measurement; S6, calculating the residual Po218 value B1 of the surface of a detector through a formula (shownin the description), and removing the residual Po218 value B1 in a new measurement value. The method provided by the invention can achieve the quick removal of a Po218 pollution value attached to thedetector, and achieve the purpose of the quick recovery of the detection system after pollution.

Description

technical field [0001] The invention relates to the field of nuclear radiation detection, in particular to a correction method for recovering contamination of detectors by radon progeny in radon gas detection based on the principle of electrostatic accumulation and adsorption by using alpha energy spectrum measurement technology. Background technique [0002] When the radionuclide undergoes α decay, it will produce α rays, which are heavy charged particles with strong ionization ability. When they irradiate the mucous membrane of human tissues, they will cause great harm to the human body. The energy of α-rays produced by the decay of different nuclides is different, and the measurement of α-energy spectrum can realize the measurement of a certain nuclide. At present, the measurement of alpha rays produced by the decay of natural radionuclides is mainly applied to the measurement of radon and thoron. According to statistical research, indoor radon pollution is the second la...

Claims

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Application Information

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IPC IPC(8): G01T7/00
Inventor 丁卫撑阮菊红黄洪全徐尉福李姝彬何田何亮
Owner CHENGDU UNIVERSITY OF TECHNOLOGY
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