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Potential impact of Andrassy bentonite microbial diversity in the long-term performance of a deep nuclear waste repository

机译:Andrassy Bentonite微生物多样性对深核废物库的长期性能影响

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Copper and steel canning and bentonite buffer are normally forseen as the primary containment component of a deep nuclear waste repository. Distribution of microbes in subsurface environments have been found to be extensive and directly or indirectly may exert influence on waste canister corrosion and the mobility of radionuclides. The understanding of clays and microbial interaction with radionuclides will be useful in predicting the microbial impacts on the performance of the waste repositories. The present work characterizes the culture-dependent microbial diversity of Andrassy bentonite recovered from Tawau clay deposits. The evaluation of microbial populations shows the presence of a number of cultivable microbes (e.g. Staphylococcus, Micrococcus, Achromobacter, Bacillus, Paecilomyces, Trichoderma, and Fusarium). Additionally, a pigmented yeast strain Rhodotorula mucilaginosa was also recovered from the formation. Both Bacillus and Rhodotorula mucilaginosa have high tolerance towards U radiation and toxicity. The presence of Rhodotorula mucilaginosa in Andrassy bentonite might be able to change the speciation of radionuclides (e.g. uranium) in a future deep repository. However, concern over the presence of Fe (III) reduction microbes such as Bacillus also found in the formation could lead to corrosion of copper steel canister and affect the overall performance of the containment system.
机译:铜和钢罐和膨润土缓冲液通常是深度核废料库的主要壳体组成部分。已发现地下环境中微生物的分布广泛,直接或间接地对废物罐腐蚀和放射性核素的迁移率进行广泛或间接地。对粘土和微生物相互作用与放射性核素的理解可用于预测对废物储存库性能的微生物影响。目前的作品表征了从塔瓦粘土沉积物中恢复的胚乳膨润土的培养依赖性微生物多样性。微生物种群的评价显示出许多可栽培微生物的存在(例如金葡萄球菌,微胶囊,肺杆菌,芽孢杆菌,博士霉菌,richoderma和镰刀菌)。另外,从地层中也回收了色素酵母菌菌株鼻霉菌菌。 Bacillus和rhodotorula mucilaginosa都对U辐射和毒性具有很高的耐受性。在Andrassy Bentonite的rhodotorula粘液蛋白酶的存在可能能够在未来的深度储存库中改变放射性核素(例如铀)的辐射核素(例如铀)的形态。然而,对Fe(III)减少微生物的存在的担忧也可能导致铜管罐的腐蚀,并影响遏制系统的整体性能。

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