The High Dose Response and Functional Capability of the DT-702/Pd Lithium fluoride Thermoluminescent Dosimeter
Autor: | Matthew D. Grypp, Gregory R. Fairchild, Andrew C. Mueller, Molly D. Talmadge, Anthony S. Williams, Mark M. Murray, M.E. Nelson, Alexander Romanyukha, Tyler M. Lawlor |
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Rok vydání: | 2015 |
Předmět: |
Dosimeter
Materials science Epidemiology business.industry Health Toxicology and Mutagenesis Radiochemistry Functional capability Deep-dose equivalent Lithium fluoride Dose-Response Relationship Radiation Fluorides chemistry.chemical_compound chemistry Radiation Monitoring Lithium Compounds Dosimetry Thermoluminescent Dosimetry Radiology Nuclear Medicine and imaging Irradiation Thermoluminescent dosimeter Nuclear medicine business Dose rate |
Zdroj: | Health Physics. 108:514-519 |
ISSN: | 0017-9078 |
DOI: | 10.1097/hp.0000000000000268 |
Popis: | The United States Navy monitors the dose its radiation workers receive using the DT-702/PD thermoluminescent dosimeter, which consists of the Harshaw 8840 holder and the four-element Harshaw 8841 card. There were two main objectives of this research. In the first objective, the dosimeters were exposed to 100 Gy using electron and x-ray beams and found to respond approximately 30-40% lower than the delivered dose. No significant effect on the under-response was found when dose rate, radiation type, dosimeter position on the phantom, and dosimeter material were varied or when the card was irradiated while enclosed in its holder. Since the current naval policy is to remove from occupational use any thermoluminescent dosimeter with an accumulated deep dose equivalent of 0.05 Sv or greater, the functionality of the dosimeter was also investigated at deep dose equivalents of 0.05, 0.15, and 0.25 Sv using 60Co and 137Cs sources as the second main objective. All dosimeters were annealed following exposure and then exposed to 5.0 mSv from a 90Sr source. In all cases, the dosimeters responded within 3% of the delivered dose, indicating that the dosimeters remained functional as defined by naval dosimetry requirements. However, the anneal time required to clear the thermoluminescent dosimeter's reading was found to increase approximately as the cube root with the delivered dose. |
Databáze: | OpenAIRE |
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