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Radiation Effects and Defects in Solids
Incorporating Plasma Science and Plasma Technology
Volume 174, 2019 - Issue 7-8
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Articles

Assessment of natural radionuclides and their radiological hazards in commercial granite produced in Xinjiang, China

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Pages 624-635 | Received 24 Sep 2018, Accepted 05 Jun 2019, Published online: 24 Jun 2019
 

ABSTRACT

The specific activities of 226Ra, 232Th and 40K of 26 samples of granite produced in Xinjiang of China were measured by a high-purity germanium detector, and their radiological hazards of radium equivalent, external hazard index, internal hazard index, absorbed dose rate, annual effective dose rate, gamma index and alpha index were evaluated. The results indicate that the overall average specific activities of 226Ra, 232Th and 40K obtained in the investigated samples are below the world’s average granite values. The average radium equivalent is within the recommended limit of 370 Bq kg−1. The results obtained further show that the mean values of external hazard index, internal hazard index, absorbed dose rate, annual effective dose rate, gamma index and alpha index are 0.65, 0.77, 111.7 nGy h−1, 0.55 mSv y−1, 0.89 and 0.23, respectively. These mean values established that radiological hazards are also found to be below the international recommended values. The results are compared with granite samples from other countries or China-Taiwan province. It can be noticed that the specific activity values of granite samples produced in China are lower or similar to that of other countries or China-Taiwan province, however there are higher specific activity values for 226Ra and 232Th in individual samples, which need to provide proper radiation monitoring before use considering the long term health effect.

Acknowledgements

The authors thank the radiation environment supervision station of Xinjiang, China for providing facilities and support.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was supported by the National Natural Science Foundation of China [grant number 11575149 and 31760016]; the nuclear & radiation safety project of the ministry of environmental protection, China [grant number JD201638].

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