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The behaviour of technetium during microbial reduction in amended soils from Dounreay, UK

机译:Do在英国Dounreay改良土壤中微生物还原过程中的行为

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Radioactive technetium-99 forms during nuclear fission and has been found as a contaminant at sites where nuclear wastes have been processed or stored. Here we describe results from microcosm experiments containing soil samples representative of the UKAEA site at Dounreay to examine the effect of varying solution chemistry on the fate of technetium during microbial reduction. Analysis of a suite of stable element redox indicators demonstrated that microbial activity occurred in a range of microcosm experiments including unamended Dounreay sediments, carbonate buffered sediments, and microcosms amended with ethylenediaminetetraacetic acid (EDTA) a complexing ligand used in nuclear fuel cycle operations. During the development of anoxia mediated by indigenous microbial populations, TcO_4~- was removed from solution in experiments. In all cases, the removal of TcO_4~- from solution occurred during active microbial Fe(Ⅲ)-reduction when Fe(Ⅱ) was growing into the microcosms. Tc removal was most likely via reduction of TcO_4~- to poorly soluble Tc(Ⅳ) which is retained on the sediments. The potential stability of Tc associated with the soil to remobilisation via complexation with EDTA was examined as reduced Tc-labelled sediments were contacted with a de-oxygenated EDTA solution. No remobilisation of Tc(Ⅳ) in the presence of EDTA was observed.
机译:放射性tech 99在核裂变过程中形成,并在处理或储存核废物的场所被发现为污染物。在这里,我们描述了微观实验的结果,该实验包含代表Dounreay的UKAEA站点的土壤样品,以检查微生物还原过程中溶液化学变化对tech命运的影响。对一组稳定元素氧化还原指标的分析表明,微生物活性发生在一系列微观实验中,包括未经修正的Dounreay沉积物,碳酸盐缓冲的沉积物以及用乙二胺四乙酸(EDTA)修饰的微观世界,该乙二胺四乙酸(EDTA)是核燃料循环操作中使用的络合配体。在由土著微生物种群介导的缺氧发展过程中,实验中从溶液中去除了TcO_4〜-。在所有情况下,当Fe(Ⅱ)成长为微观世界时,在活性微生物Fe(Ⅲ)还原过程中都会从溶液中去除TcO_4〜-。 Tc的去除很可能是通过将TcO_4〜-还原为难溶的Tc(Ⅳ)从而将其保留在沉积物中。通过还原的Tc标记的沉积物与脱氧的EDTA溶液接触,检查了与土壤相关的Tc的潜在稳定性,该土壤通过与EDTA络合而迁移。在EDTA存在下未观察到Tc(Ⅳ)的迁移。

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