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1.
Chinese Journal of Radiological Medicine and Protection ; (12): 205-209, 2018.
Artigo em Chinês | WPRIM | ID: wpr-708042

RESUMO

Objective To explore the applicable conditions for using urine plutonium monitoring data to assess personal internal doses,in order to provide references for the occupational health management and the urine plutonium monitoring in nuclear sector.Methods Using some plutonium mixtures from DOE nuclear facilities,as an example,the urine plutonium levels were estimated through simulation calculation at 1 mSv effective dose arising from either acute or chronic inhalation of plutonium compounds,respectively.The results were compared with the typical detection limit of radiochemical separation and α-spectrometry.The feasibility of urine plutonium monitoring for dose assessment of internal radiation exposure was discussed.Results Only for type M plutonium compunds,1 mSv detection limit can be achieved using radiochemical separation and α-spectrometry within 10 d after inhalation.Conclusions Before the monitoring plan of urine plutonium is made,detection limits of monitoring method should be considered.Internal dose could be accessed using workplace air monitoring and working hours when necessary.

2.
Chinese Journal of Radiological Medicine and Protection ; (12): 931-935, 2015.
Artigo em Chinês | WPRIM | ID: wpr-487252

RESUMO

Objective To explore the applicable conditions for using urine uranium monitoring data to assess personal internal doses with a view to providing references for the occupational health management and the urine uranium monitoring in nuclear industry sector.Methods The urine uranium levels were calculated, through simulation calculation set at 1 mSv effective dose arising from either acute or chronic ingestion of uranium compounds.The results were compared with the monitoring values of workers without occupational exposure history.The feasibility of urine uranium monitoring for dose assessment of internal radiation exposure was discussed.Results For special monitoring of acute ingestion, liquid fluorimetry can meet monitoring requirements of Type F uranium compound, Type M low enriched uranium and Type S naturally occurring uranium.For routine monitoring, only Type F low enriched uranium and Type M naturally occurring uranium can be detected at shorter monitoring intervals, But it was not suitable for Type S uranium compounds.Conclusions Background levels and detection limits should be considered when urine uranium is measured for the purpose of assessment or control of exposure to uranium and the interpretation of the results.

3.
Chinese Journal of Radiological Medicine and Protection ; (12): 290-293, 2015.
Artigo em Chinês | WPRIM | ID: wpr-474492

RESUMO

Objective Derived air concentration of Type F uranium compounds are calculated respectively in order to provide reference for the management and evaluation of occupational hazard factors in workplace.Methods The air concentrations in the workplace of Type F uranium compounds were derived respectively through numerical simulationn,from individual dose limits,acute poisoning and chronic chemical damage threshold.Results Under normal operation conditions,the concentration of 5 μg /m3 for Type F uranium compounds in air of workplace can meet the requirements of radiation and chemical hazard control.Open inhalation of 1.1 mg/m3 is acceptable in a short time.Conclusions It is feasible to establish a permissible concentration limit in workplace for Type F uranium compounds.

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