Detection system and detection method for measuring beta-ray generated by radioactive gas

A radioactive gas and detection system technology, applied in the field of nuclear radiation detection, can solve the problems of heavy equipment and unfavorable portability, and achieve the effect of ensuring accuracy

Active Publication Date: 2014-12-10
SHANGHAI INST OF APPLIED PHYSICS - CHINESE ACAD OF SCI
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, by using a single detector and a thicker lead shield to improve detection accuracy, the entire instrument will be very heavy, which is not conducive to portability

Method used

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  • Detection system and detection method for measuring beta-ray generated by radioactive gas
  • Detection system and detection method for measuring beta-ray generated by radioactive gas
  • Detection system and detection method for measuring beta-ray generated by radioactive gas

Examples

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Embodiment Construction

[0036] The following examples are only used as exemplary descriptions of the embodiments of the present invention, and their specific structures and manifestations will vary with the processing and mechanical properties of selected devices, which do not limit the scope of the present invention.

[0037] Embodiments of the present invention will be illustrated and described in detail below in conjunction with the accompanying drawings.

[0038] The detection system for measuring beta rays emitted by radioactive gases of the present invention includes a detection device and a detection circuit (not shown) connected to the detection device. figure 1 A schematic diagram of the detection device is given. It can be seen from the diagram that the detection device includes a lead shield 10 , an anti-coincidence detector 2 arranged in the lead shield 10 , and a main detector 1 arranged in the anti-coincidence detector 2 . Among them, the lead shielding cover 10 is used to reduce the i...

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Abstract

The invention provides a detection system for measuring beta-ray generated by a radioactive gas. The detection system comprises a detection device and a detection circuit which are connected, wherein the detection device comprises a main detector, and an anticoincidence detector wrapped at the periphery of the main detector; the main detector comprises a box body, at least one first plastic scintillator, a first glass light guide arranged between one first plastic scintillator and one inner wall of the box body, and a first photomultiplier connected between one first glass light guide and the detection circuit; the anticoincidence detector comprises a second plastic scintillator with a hollow middle for accommodating the main detector, and at least one second photomultiplier connected to the second plastic scintillator through a second glass light guide and connected with the detection circuit. According to the detection system disclosed by the invention, the influence of gamma-ray on the measurement result of beta-ray is greatly reduced in a manner of combining the main detector with the anticoincidence detector, thus the detection system is good in convenience on the premise of ensuring the measurement lower limit of the detection system.

Description

technical field [0001] The invention relates to the field of nuclear radiation detection, in particular to a detection system and method for measuring beta rays produced by radioactive gases. Background technique [0002] During the operation of reactors, the production and processing of radioisotopes, the preparation of nuclear fuel, the reprocessing of nuclear fuel, and the treatment and disposal of radioactive waste, 3 H. 41 Ar, 85 Kr and 133 Xe and other radioactive gases. Among these radionuclides, 85 Kr, 133 Xe and its isotopes are the most important fission products produced during the operation of the reactor, and directly reflect the operating status of the reactor; once the loop leaks, these inert gases will quickly diffuse into the air and pollute the surrounding environment. focus of monitoring. [0003] For the monitoring of radioactive gases, due to 85 Kr, 133 Nuclides such as Xe and its isotopes are β emitters or mainly β decay. Therefore, the monitor...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01T1/203
Inventor 陈明明蔡军夏晓彬黄文博李建伟张志龙
Owner SHANGHAI INST OF APPLIED PHYSICS - CHINESE ACAD OF SCI
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