Rachel C Beaver, Claire S Tully, W Jeffrey Binns, James J Noël, Josh D Neufeld
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引用次数: 0
Abstract
Aims: Deep geological repositories (DGR) for belowground storage of used nuclear fuel rely on highly compacted bentonite to limit growth of microorganisms, including those that can contribute to microbiologically influenced corrosion, like sulfate-reducing bacteria (SRB). This study examined how a range of bentonite dry densities (1.25-1.60 g cm-3) affected microbial community abundance and composition in bentonite incubated in pressure vessels for 1, 4, or 12 months under anoxic conditions.
Results: Culturable heterotroph abundance increased in some lower-density (i.e., 1.25 and 1.40 g cm-3) samples after 1 month, consistent with previous experiments. Unlike previous studies, outer layer bentonite samples had higher abundances of culturable SRB than the starting material. SRB-associated sequences were more prevalent in swabs from pressure vessel surfaces than in bentonite, suggesting interface-associated SRB growth.
Conclusions: Although culturable SRB increased for several outer layer pressure vessel samples, abundances remained relatively low and did not increase beyond the values measured at the 1-month timepoint. Overall, a minimum dry density of 1.45 g cm-3 limited microbial growth in inner layer bentonite samples.
目的:用于地下储存乏燃料的深层地质储存库(DGR)依靠高度压实的膨润土来限制微生物的生长,包括那些可能导致微生物影响腐蚀的微生物,如硫酸盐还原细菌(SRB)。本研究考察了膨润土干密度范围(1.25-1.60 g cm-3)如何影响膨润土在缺氧条件下在压力容器中培养1个月、4个月或12个月的微生物群落丰度和组成。结果:1个月后,部分低密度样品(即1.25和1.40 g cm-3)的可培养异养菌丰度增加,与前期实验一致。与以前的研究不同,外层膨润土样品比起始材料具有更高的可培养SRB丰度。SRB相关序列在压力容器表面的拭子中比在膨润土中更普遍,表明界面相关SRB生长。结论:虽然几个外层压力容器样品的可培养SRB增加,但丰度仍然相对较低,并且没有超过一个月时间点的测量值。总体而言,1.45 g cm-3的最小干密度限制了内层膨润土样品的微生物生长。
期刊介绍:
Journal of & Letters in Applied Microbiology are two of the flagship research journals of the Society for Applied Microbiology (SfAM). For more than 75 years they have been publishing top quality research and reviews in the broad field of applied microbiology. The journals are provided to all SfAM members as well as having a global online readership totalling more than 500,000 downloads per year in more than 200 countries. Submitting authors can expect fast decision and publication times, averaging 33 days to first decision and 34 days from acceptance to online publication. There are no page charges.