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Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China

The exploitation of mineral resources may cause the environmental release of radionuclides and their introduction in the human trophic chain, affecting public health in the short and long term. A case study of the environmental radiation impact from coal mining and germanium processing was carried o...

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Autores principales: Wang, Chenxiao, Wu, Qifan, Pan, Ziqiang, Liu, Senlin, Cao, Zhonggang, Yu, Yilin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000407/
https://www.ncbi.nlm.nih.gov/pubmed/35408510
http://dx.doi.org/10.3390/molecules27072112
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author Wang, Chenxiao
Wu, Qifan
Pan, Ziqiang
Liu, Senlin
Cao, Zhonggang
Yu, Yilin
author_facet Wang, Chenxiao
Wu, Qifan
Pan, Ziqiang
Liu, Senlin
Cao, Zhonggang
Yu, Yilin
author_sort Wang, Chenxiao
collection PubMed
description The exploitation of mineral resources may cause the environmental release of radionuclides and their introduction in the human trophic chain, affecting public health in the short and long term. A case study of the environmental radiation impact from coal mining and germanium processing was carried out in southwest China. The coal mines contain germanium and uranium and have been exploited for more than 40 years. The farmlands around the site of the coal mining and germanium processing have been contaminated by the solid waste and mine water to some extent since then. Samples of crops were collected from contaminated farmlands in the research area. The research area covers a radius of 5 km, in which there are two coal mines. (210)Pb and (210)Po were analyzed as the key radionuclides during the monitoring program. The average activity concentrations of (210)Pb and (210)Po in the crops were 1.38 and 1.32 Bq/kg in cereals, 4.07 and 2.19 Bq/kg in leafy vegetables and 1.63 and 1.32 Bq/kg in root vegetables. The annual effective doses due to the ingestion of (210)Pb and (210)Po in consumed crops were estimated for adult residents living in the research area. The average annual effective dose was 0.336 mSv/a, the minimum was 0.171 mSv/a and the maximum was 0.948 mSv/a. The results show that the crops grown on contaminated farmland contained an enhanced level of radioactivity concentration. The ingestion doses of local residents in the research area were significantly higher than the average level of 0.112 mSv/a in China, and the world average level of 0.042 mSv/a through (210)Pb and (210)Po in crop intake, respectively.
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spelling pubmed-90004072022-04-12 Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China Wang, Chenxiao Wu, Qifan Pan, Ziqiang Liu, Senlin Cao, Zhonggang Yu, Yilin Molecules Article The exploitation of mineral resources may cause the environmental release of radionuclides and their introduction in the human trophic chain, affecting public health in the short and long term. A case study of the environmental radiation impact from coal mining and germanium processing was carried out in southwest China. The coal mines contain germanium and uranium and have been exploited for more than 40 years. The farmlands around the site of the coal mining and germanium processing have been contaminated by the solid waste and mine water to some extent since then. Samples of crops were collected from contaminated farmlands in the research area. The research area covers a radius of 5 km, in which there are two coal mines. (210)Pb and (210)Po were analyzed as the key radionuclides during the monitoring program. The average activity concentrations of (210)Pb and (210)Po in the crops were 1.38 and 1.32 Bq/kg in cereals, 4.07 and 2.19 Bq/kg in leafy vegetables and 1.63 and 1.32 Bq/kg in root vegetables. The annual effective doses due to the ingestion of (210)Pb and (210)Po in consumed crops were estimated for adult residents living in the research area. The average annual effective dose was 0.336 mSv/a, the minimum was 0.171 mSv/a and the maximum was 0.948 mSv/a. The results show that the crops grown on contaminated farmland contained an enhanced level of radioactivity concentration. The ingestion doses of local residents in the research area were significantly higher than the average level of 0.112 mSv/a in China, and the world average level of 0.042 mSv/a through (210)Pb and (210)Po in crop intake, respectively. MDPI 2022-03-25 /pmc/articles/PMC9000407/ /pubmed/35408510 http://dx.doi.org/10.3390/molecules27072112 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Chenxiao
Wu, Qifan
Pan, Ziqiang
Liu, Senlin
Cao, Zhonggang
Yu, Yilin
Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title_full Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title_fullStr Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title_full_unstemmed Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title_short Estimation of the Annual Effective Dose Due to the Ingestion of (210)Pb and (210)Po in Crops from a Site of Coal Mining and Processing in Southwest China
title_sort estimation of the annual effective dose due to the ingestion of (210)pb and (210)po in crops from a site of coal mining and processing in southwest china
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000407/
https://www.ncbi.nlm.nih.gov/pubmed/35408510
http://dx.doi.org/10.3390/molecules27072112
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