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Chapter 13 Experimental Observation and Modeling of Cs-137 Isotope Deactivation and Stable Isotopes Transmutation in Biological Cells

机译:第13章CS-137同位素去激活和稳定同位素嬗变的实验观察和模拟生物细胞中的嬗变

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The report presents the results of combined (Mossbauer and mass-spectroscopy) qualifying examinations of stable isotope transmutation processes in growing microbiological cultures, in the iron-region of atomic masses. It is shown that isotope transmutation during the process of growth of microbiological cultures, at optimal conditions, is 10-20 times more effective than the same transmutation process in the form of "one-line" (clean) microbiological cultures that we have studied previously. In the work, the process of direct, controlled decontamination of highly active long-lived isotopes through the process of growing microbiological systems has been studied. For the first time, an accelerated de-activation rate is observed that is 35 times greater than the controlled deactivation of the Cs~(137) isotope.
机译:该报告提出了稳定同位素嬗变过程中稳定同位素嬗变过程的合并(MOSSBAUER和质谱)的结果,在原子块的铁区域中生长的微生物培养物中的稳定同位素嬗变过程。结果表明,在微生物培养物生长过程中,在最佳条件下,比我们先前研究的“单线”(清洁)微生物培养物形式的相同嬗变过程的生长过程中的同位素嬗变为10-20倍。在工作中,已经研究了通过生长微生物系统的过程的直接控制净化高活性长期同位素的过程。首次,观察到加速的去激活速率,这比CS〜(137)同位素的受控失活35倍。

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