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Content available remote OSL chronostratigraphy for loess deposits from Tyszowce – Poland
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EN
The presented work concerns a loess profile located in Tyszowce, in the eastern part of Poland on the Volyn Upland, close to the Ukrainian border. The investigated loess formation is well preserved and is characterised by clear stratigraphic units providing an opportunity to refine the loess chronostratigraphy in Poland. In the paper, we present luminescence ages of loess from the last glacial cycle in SE Poland (up to about 100 ka) together with seven radiocarbon ages. Twenty-one samples were collected and dated using infrared (post-IR IRSL) and blue light stimulated luminescence dating. Two fractions were used, namely polymineral fine grains (4–11 μm) and medium sized quartz grains (45–63 μm). The obtained luminescence ages show very good agreement of both methods in relation to loess deposits, however for the fossil soil units the post-IR IRSL method yields older ages. Radiocarbon dates also confirm luminescence chronostratigraphy for younger units. Moreover, the luminescence results are supported by detailed analyses of grain size distribution, carbonate content and magnetic susceptibility variations allowing to create a comprehensive picture of chronological evolution of this site.
EN
Objectives While working with cyclotrons used for the production of radiopharmaceuticals, workers can experience significant exposure to the adverse effects of ionizing radiation. The aim of this paper was to determine the typical level of such exposure received by such personnel while servicing cyclotrons. Material and Methods Exposure was assessed using TLD detectors placed in an anthropomorphic phantom, as well as dose meter to determine whole body and eye lens exposure. The phantom was placed in locations receiving the greatest exposure to ionizing radiation during service activities. The time spent by employees during servicing was assessed based on routine visits by service technicians. The obtained results were compared with readings of detectors worn by employees during service activities. Results The highest equivalent doses in the thoracic area were found to be received by the lungs (211.16 μSv/year). In the head and neck area, the highest dose was measured in the eye lens (3410 μSv/year). The effective dose for the whole body was found to be 1154.4 μSv/year, based on the phantom, and 149 μSv per service visit (1192 μSv/year), based on the dose meters carried by the workers. Conclusions Service workers are exposed to significant doses of ionizing radiation, representing a clear radiological protection issue. To reduce exposure to eye lenses, it is recommended to use protective goggles when working with highly-radioactive elements.
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tom z. 3
15--22
PL
W artykule omówiono wydaną w roku ubiegłym przez MAEA publikację zawierającą „MIĘDZYNARODOWE PODSTAWOWE NORMY OCHRONY PRZED PROMIENIOWANIEM I BEZPIECZEŃSTWA ŹRÓDEŁ PROMIENIOWANIA”. Odrębnie scharakteryzowano wymagania dotyczące różnych sytuacji narażenia: planowanego narażenia, wyjątkowego narażenia i istniejącego narażenia. W zakończeniu artykułu, jego autor i współautor poprzednich wydań NORM (1967, 1996), przedstawia swoją opinię na temat omawianej publikacji.
EN
New IAEA publication entitled “Radiation Protection and Safety of Radiadion Sources: International Basic Safety Standards”. (No.GSR PART 3 IAEA) was described in the paper. The main parts of that publication concerning different exposure situations: planned exposure, emergency exposure, existing exposure are discussed separately. In the conclusion author of the article and simultaneously co-author of former editions (1967, 1996) of the BESIC SAFETY REQUIREMENTS presents his own opinion on the described book.
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