Biokinetic aspects of tissue-bound tritium in algae.

S Strack, G Kistner
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Abstract

For the estimate of the radiation exposure of man and for the calculation of the risk of artificial tritium from nuclear power plants, organic tissue-bound tritium is of decisive importance. In model experiments, a tritium incorporation of 61 to 71% was found from tritiated water (HTO) into organic matter of planctonic algae under under reproducible conditions and this was related to the theoretical value. In further experiments the tritium release from these high tritiated algae was of interest. Kept in darkness in tritium-free, non-sterile river water, so that autolytic processes and bacterial decomposition could occur, the concentration of HTO was measured over a period of three weeks. A relatively long half-life of tissue-bound tritium was found under various temperature conditions. Therefore it must be considered that a significant retention of tritium in biological matter has to be taken into account in a natural ecosystem. In streams into which the cooling water of a nuclear reactor is released all conditions are found already for a long turnover and cycling of artificial tritium in living organisms as well as the conditions for a favourable transport of tritium by food chains to man.

藻类中组织结合氚的生物动力学方面。
对于人体辐射暴露的估计和核电站人工氚的危险性计算,有机组织结合氚具有决定性的意义。在模型实验中,在可复制条件下,从氚化水(HTO)中发现氚掺入到植物藻类有机物中的比例为61 ~ 71%,这与理论值有关。在进一步的实验中,这些高氚化藻类释放的氚引起了人们的兴趣。在黑暗中,在无氚、非无菌的河水中,使自溶过程和细菌分解能够发生,HTO的浓度在三周内被测量。发现在不同温度条件下,组织结合氚的半衰期相对较长。因此,必须考虑到在自然生态系统中生物物质中氚的大量保留。在核反应堆冷却水排入的溪流中,已经发现了人工氚在生物体中进行长期循环和循环的所有条件,以及氚通过食物链输送给人类的有利条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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