Muhibul Munim, Rahat Khan, Md Kawsaruzzaman, Kamrun Naher, Umma Tamim, Abubakr M Idris, Md Harunor Rashid Khan, Saad Aldawood, Abu Hekmot Mohammad Saadat, Md Ahosan Habib
{"title":"燃煤砖窑的放射性核素扩散:地质环境过程、潜在风险和管理。","authors":"Muhibul Munim, Rahat Khan, Md Kawsaruzzaman, Kamrun Naher, Umma Tamim, Abubakr M Idris, Md Harunor Rashid Khan, Saad Aldawood, Abu Hekmot Mohammad Saadat, Md Ahosan Habib","doi":"10.1007/s00244-024-01096-4","DOIUrl":null,"url":null,"abstract":"<p><p>In order to investigate the distributions and possible dispersion mechanism(s) of naturally occurring radioactive materials (NORMs: <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup>K) from coal-based brick kilns, a systematic set (n = 60) of coal, ash, surface-soil, and subsurface soil samples were analyzed. High-quality analytical data of U, Th and K obtained from HPGe detector and TRIGA Mark-II research reactor-based neutron activation analysis were converted to the corresponding radioactivities. Average (n = 10) radioactivities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K in coal samples were 15.6, 16.7, and 145.5 Bq.kg<sup>-1</sup>, respectively, where only <sup>40</sup> K surpassed the corresponding global mean value. Average (n = 10) radioactivities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K in ash samples were 62.7, 88.5, and 521 Bq.kg<sup>-1</sup>, respectively, where only <sup>226</sup>Ra was within the established limit. In soil samples, average (n = 40) activities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K were 62.7, 95.1, and 641 Bq.kg<sup>-1</sup>, respectively, which have surpassed the corresponding worldwide mean values. The observed differences in activity levels between soil samples collected near and far from the kilns, as well as between topsoil and subsoil samples, suggest the presence of distinct transport mechanisms for NORMs within the pedosphere. Dispersions of NORMs from the brick kilns to the ambient pedosphere are largely governed by aerodynamic convection and hydrodynamic leaching. These mechanisms are also influenced by geochemical mobility and relative solubility of NORMs, as well as factors such as rainfall patterns and wind-flow direction. Radiological indices invoke long-term carcinogenic-risks, whereas aerodynamic convection of finer particles (coal fly ash) from chimneys can cause significant health hazards to the nearby dwellers. Scientific processes as well as public awareness are essential to mitigate the risks.</p>","PeriodicalId":8377,"journal":{"name":"Archives of Environmental Contamination and Toxicology","volume":" ","pages":""},"PeriodicalIF":3.7000,"publicationDate":"2024-10-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Radionuclides' Dispersion from Coal-Fired Brick Kilns: Geo-Environmental Processes, Potential Risks and Management.\",\"authors\":\"Muhibul Munim, Rahat Khan, Md Kawsaruzzaman, Kamrun Naher, Umma Tamim, Abubakr M Idris, Md Harunor Rashid Khan, Saad Aldawood, Abu Hekmot Mohammad Saadat, Md Ahosan Habib\",\"doi\":\"10.1007/s00244-024-01096-4\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>In order to investigate the distributions and possible dispersion mechanism(s) of naturally occurring radioactive materials (NORMs: <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup>K) from coal-based brick kilns, a systematic set (n = 60) of coal, ash, surface-soil, and subsurface soil samples were analyzed. High-quality analytical data of U, Th and K obtained from HPGe detector and TRIGA Mark-II research reactor-based neutron activation analysis were converted to the corresponding radioactivities. Average (n = 10) radioactivities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K in coal samples were 15.6, 16.7, and 145.5 Bq.kg<sup>-1</sup>, respectively, where only <sup>40</sup> K surpassed the corresponding global mean value. Average (n = 10) radioactivities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K in ash samples were 62.7, 88.5, and 521 Bq.kg<sup>-1</sup>, respectively, where only <sup>226</sup>Ra was within the established limit. In soil samples, average (n = 40) activities of <sup>226</sup>Ra, <sup>232</sup>Th, and <sup>40</sup> K were 62.7, 95.1, and 641 Bq.kg<sup>-1</sup>, respectively, which have surpassed the corresponding worldwide mean values. The observed differences in activity levels between soil samples collected near and far from the kilns, as well as between topsoil and subsoil samples, suggest the presence of distinct transport mechanisms for NORMs within the pedosphere. Dispersions of NORMs from the brick kilns to the ambient pedosphere are largely governed by aerodynamic convection and hydrodynamic leaching. These mechanisms are also influenced by geochemical mobility and relative solubility of NORMs, as well as factors such as rainfall patterns and wind-flow direction. Radiological indices invoke long-term carcinogenic-risks, whereas aerodynamic convection of finer particles (coal fly ash) from chimneys can cause significant health hazards to the nearby dwellers. 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Radionuclides' Dispersion from Coal-Fired Brick Kilns: Geo-Environmental Processes, Potential Risks and Management.
In order to investigate the distributions and possible dispersion mechanism(s) of naturally occurring radioactive materials (NORMs: 226Ra, 232Th, and 40K) from coal-based brick kilns, a systematic set (n = 60) of coal, ash, surface-soil, and subsurface soil samples were analyzed. High-quality analytical data of U, Th and K obtained from HPGe detector and TRIGA Mark-II research reactor-based neutron activation analysis were converted to the corresponding radioactivities. Average (n = 10) radioactivities of 226Ra, 232Th, and 40 K in coal samples were 15.6, 16.7, and 145.5 Bq.kg-1, respectively, where only 40 K surpassed the corresponding global mean value. Average (n = 10) radioactivities of 226Ra, 232Th, and 40 K in ash samples were 62.7, 88.5, and 521 Bq.kg-1, respectively, where only 226Ra was within the established limit. In soil samples, average (n = 40) activities of 226Ra, 232Th, and 40 K were 62.7, 95.1, and 641 Bq.kg-1, respectively, which have surpassed the corresponding worldwide mean values. The observed differences in activity levels between soil samples collected near and far from the kilns, as well as between topsoil and subsoil samples, suggest the presence of distinct transport mechanisms for NORMs within the pedosphere. Dispersions of NORMs from the brick kilns to the ambient pedosphere are largely governed by aerodynamic convection and hydrodynamic leaching. These mechanisms are also influenced by geochemical mobility and relative solubility of NORMs, as well as factors such as rainfall patterns and wind-flow direction. Radiological indices invoke long-term carcinogenic-risks, whereas aerodynamic convection of finer particles (coal fly ash) from chimneys can cause significant health hazards to the nearby dwellers. Scientific processes as well as public awareness are essential to mitigate the risks.
期刊介绍:
Archives of Environmental Contamination and Toxicology provides a place for the publication of timely, detailed, and definitive scientific studies pertaining to the source, transport, fate and / or effects of contaminants in the environment. The journal will consider submissions dealing with new analytical and toxicological techniques that advance our understanding of the source, transport, fate and / or effects of contaminants in the environment. AECT will now consider mini-reviews (where length including references is less than 5,000 words), which highlight case studies, a geographic topic of interest, or a timely subject of debate. AECT will also consider Special Issues on subjects of broad interest. The journal strongly encourages authors to ensure that their submission places a strong emphasis on ecosystem processes; submissions limited to technical aspects of such areas as toxicity testing for single chemicals, wastewater effluent characterization, human occupation exposure, or agricultural phytotoxicity are unlikely to be considered.