Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf

Aiming at the shortcomings of isotope radon detection method, which has large workload, long period, and is easily restricted by climate and environmental factors this paper proposes the use of radon generated during the process of migration to the surface to accurately reflects the solid-state leng...

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Main Authors: Chen LIN, Junfeng WANG, Kaili Dong, Xuan LIU
Format: Article
Language:English
Published: Editorial Office of Journal of Taiyuan University of Technology 2023-01-01
Series:Taiyuan Ligong Daxue xuebao
Subjects:
Online Access:https://tyutjournal.tyut.edu.cn/englishpaper/show-2017.html
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author Chen LIN
Junfeng WANG
Kaili Dong
Xuan LIU
author_facet Chen LIN
Junfeng WANG
Kaili Dong
Xuan LIU
author_sort Chen LIN
collection DOAJ
description Aiming at the shortcomings of isotope radon detection method, which has large workload, long period, and is easily restricted by climate and environmental factors this paper proposes the use of radon generated during the process of migration to the surface to accurately reflects the solid-state length of the cumulative value of parent radon over a period of time. Long-lived radon daughter 210Po fire detection method based on radiochemical analysis method to measure 210Po activity concentration to detect hidden mine fire areas. In order to explore the effect and accuracy of the radon progeny 210Po fire detection method in on-site detection, this paper carried out on-site experimental research in Liuwan Coal Mine where the fire source location is known. The radon gas concentration at the measuring point and the activity concentration of its solid long-lived daughter 210Po are measured. By comparing the correlation between radon gas concentration and 210Po activity concentration detection results and its influencing factors, the technology of using radon daughter 210Po to detect the location of coal spontaneous combustion in goaf is demonstrated. The results show that the radon concentration in the near-surface soil layer in the fire area has a strong correlation with the 210Po activity concentration in the overall distribution, but the 210Po activity concentration is less disturbed by external factors, and its distribution can more accurately reflect the underground coal spontaneous combustion fire area. Compared with the isotope radon detection method, the radon progeny 210Po fire detection method has higher detection accuracy, wider application range and higher application value.
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spelling doaj.art-c897e3ee543e4562becdcfe4d70b7faa2024-04-15T09:16:25ZengEditorial Office of Journal of Taiyuan University of TechnologyTaiyuan Ligong Daxue xuebao1007-94322023-01-01541738010.16355/j.cnki.issn1007-9432tyut.2023.01.0091007-9432(2023)01-0073-08Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in GoafChen LIN0Junfeng WANG1Kaili Dong2Xuan LIU3College of Safety and Emergency Management Engineering, Taiyuan University of Technology, Taiyuan 030024, ChinaShanxi Engineering Research Center for Mine Ventilation and Fire Prevention, Taiyuan University of Technology, Taiyuan 030024, ChinaShanxi Engineering Research Center for Mine Ventilation and Fire Prevention, Taiyuan University of Technology, Taiyuan 030024, ChinaCollege of Safety and Emergency Management Engineering, Taiyuan University of Technology, Taiyuan 030024, ChinaAiming at the shortcomings of isotope radon detection method, which has large workload, long period, and is easily restricted by climate and environmental factors this paper proposes the use of radon generated during the process of migration to the surface to accurately reflects the solid-state length of the cumulative value of parent radon over a period of time. Long-lived radon daughter 210Po fire detection method based on radiochemical analysis method to measure 210Po activity concentration to detect hidden mine fire areas. In order to explore the effect and accuracy of the radon progeny 210Po fire detection method in on-site detection, this paper carried out on-site experimental research in Liuwan Coal Mine where the fire source location is known. The radon gas concentration at the measuring point and the activity concentration of its solid long-lived daughter 210Po are measured. By comparing the correlation between radon gas concentration and 210Po activity concentration detection results and its influencing factors, the technology of using radon daughter 210Po to detect the location of coal spontaneous combustion in goaf is demonstrated. The results show that the radon concentration in the near-surface soil layer in the fire area has a strong correlation with the 210Po activity concentration in the overall distribution, but the 210Po activity concentration is less disturbed by external factors, and its distribution can more accurately reflect the underground coal spontaneous combustion fire area. Compared with the isotope radon detection method, the radon progeny 210Po fire detection method has higher detection accuracy, wider application range and higher application value.https://tyutjournal.tyut.edu.cn/englishpaper/show-2017.htmlcoal spontaneous combustionfire source locationsurface detectionradon progeny 210po
spellingShingle Chen LIN
Junfeng WANG
Kaili Dong
Xuan LIU
Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
Taiyuan Ligong Daxue xuebao
coal spontaneous combustion
fire source location
surface detection
radon progeny 210po
title Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
title_full Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
title_fullStr Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
title_full_unstemmed Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
title_short Application of Solid Long-lived Radon Progeny210Po in the Location Detection of Coal Spontaneous Combustion in Goaf
title_sort application of solid long lived radon progeny210po in the location detection of coal spontaneous combustion in goaf
topic coal spontaneous combustion
fire source location
surface detection
radon progeny 210po
url https://tyutjournal.tyut.edu.cn/englishpaper/show-2017.html
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AT kailidong applicationofsolidlonglivedradonprogeny210pointhelocationdetectionofcoalspontaneouscombustioningoaf
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