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Transmutation of stable isotopes and deactivation of radioactive waste in growing biological systems

机译:生长中的生物系统中稳定同位素的mut变和放射性废物的失活

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The report presents the results of qualifying examinations of stable and radioactive isotopes transmutation processes in growing microbiological cultures. It is shown that transmutation of stable isotopes during the process- of growth of microbiological cultures, at optimal conditions in microbiological associations, is 20 times more effective than the same transmutation process in the form of "one-line" (pure) microbiological cultures. In the work, the process of direct, controlled decontamination of highly active intermediate lifetime and long-lived reactor isotopes (reactor waste) through the process of growing microbiological associations has been studied. In the control experiment (flask with active water but without microbiological associations), the "usual" law of nuclear decay applies, and the life-time of Cs137 isotope was about 30 years. The most rapidly increasing decay rate, which occurred with a lifetime τ~*≈310 days (involving an increase in rate, and decrease in lifetime by a factor of 35 times) was observed in the presence of Ca salt in closed flask with active water contained Cs~(137) solution and optimal microbiological association.
机译:该报告介绍了在不断增长的微生物培养物中稳定和放射性同位素is变过程的合格检查结果。结果表明,在微生物培养的最佳条件下,在微生物培养物的生长过程中,稳定同位素的than变比“一线”(纯)微生物培养物形式的相同effective变过程的有效性高20倍。在这项工作中,已经研究了通过不断增长的微生物缔合过程对高活性中间寿​​命和长寿命反应堆同位素(反应堆废物)进行直接,受控净化的过程。在对照实验(装有活性水但没有微生物结合的烧瓶)中,应用了“通常的”核衰变定律,Cs137同位素的寿命约为30年。在装有活性水的密闭烧瓶中,在钙盐存在的情况下,观察到衰减速率增长最快,寿命为τ〜*≈310天(速率增加,寿命降低35倍)。含有Cs〜(137)溶液和最佳微生物结合。

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