Article ID Journal Published Year Pages File Type
8208816 Applied Radiation and Isotopes 2018 19 Pages PDF
Abstract
After the spectrometry of the irradiated sample, the experimental results of 177Lu production were compared with the simulation results. In addition, Σn,γφ factor from the simulation was extracted by replacing it in the related equations in order to calculate specific activity through a multi-stage approach, and by using different irradiation techniques. The results showed that the simulation technique designed in this study is in agreement with the experimental approach (with a difference of approximately 3%). It was also found that the maximum 177Lu production at the maximum flux and irradiation time allows access to 723.5 mCi/g after 27 cycles. Furthermore, the comparison of irradiation techniques showed that increasing the irradiation time is more effective in 177Lu production efficiency than increasing the number of irradiation cycles. In a way that increasing the irradiation time would postpone the saturation of the productions. On the other hand, it was shown that the choice of an appropriate irradiation technique for 177Lu production can be economically important in term of the effective fuel consumption in the reactor.
Related Topics
Physical Sciences and Engineering Physics and Astronomy Radiation
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