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膨润土中微生物的生存能力和增殖:温度影响大,压力影响小,对放射性废物地质处置有意义。

Survivability and proliferation of microorganisms in bentonite with implication to radioactive waste geological disposal: strong effect of temperature and negligible effect of pressure.

机构信息

Institute for Nanomaterials, Advanced Technologies and Innovation, Technical University of Liberec, Bendlova 7, 460 01, Liberec, Czech Republic.

Disposal processes and safety, ÚJV Řež, a. s., Hlavní 130, 250 68, Husinec, Czech Republic.

出版信息

World J Microbiol Biotechnol. 2023 Dec 10;40(1):41. doi: 10.1007/s11274-023-03849-0.

Abstract

As bentonite hosts a diverse spectrum of indigenous microorganisms with the potential to influence the long-term stability of deep geological repositories, it is essential to understand the factors influencing microbial activity under repository conditions. Here, we focus on two factors, i.e., temperature and swelling pressure, using a suspension of Cerny Vrch bentonite to boost microbial activity and evaluate microbial response. Suspensions were exposed either to different pressures (10, 12 and 15 MPa; to simulate the effect of swelling pressure) or elevated temperatures (60, 70, 80 and 90 °C; to simulate the effect of cannister heating) for four weeks. Each treatment was followed by a period of anaerobic incubation at atmospheric pressure/laboratory temperature to assess microbial recovery after treatment. Microbial load and community structure were then estimated using molecular-genetic methods, with presence of living cells confirmed through microscopic analysis. Our study demonstrated that discrete application of pressure did not influence on overall microbial activity or proliferation, implying that pressure evolution during bentonite swelling is not the critical factor responsible for microbial suppression in saturated bentonites. However, pressure treatment caused significant shifts in microbial community structure. We also demonstrated that microbial activity decreased with increasing temperature, and that heat treatment strongly influenced bentonite microbial community structure, with several thermophilic taxa identified. A temperature of 90 °C proved to be limiting for microbial activity and proliferation in all bentonite suspensions. Our study emphasizes the crucial role of a deep understanding of microbial activity under repository-relevant conditions in identifying possible strategies to mitigate the microbial potential within the deep geological repository and increase its long-term stability and safety.

摘要

膨润土中存在着丰富多样的土著微生物,这些微生物有可能影响深部地质处置库的长期稳定性,因此,了解在处置库条件下影响微生物活性的因素至关重要。在这里,我们重点关注两个因素,即温度和膨胀压力,使用 Cerny Vrch 膨润土悬浮液来提高微生物活性并评估微生物的响应。悬浮液分别暴露于不同的压力(10、12 和 15 MPa;模拟膨胀压力的影响)或升高的温度(60、70、80 和 90°C;模拟容器加热的影响)下四周。每种处理都随后进行了一段在大气压力/实验室温度下的厌氧孵育期,以评估处理后的微生物恢复情况。然后使用分子遗传学方法估计微生物负荷和群落结构,并通过显微镜分析确认活细胞的存在。我们的研究表明,压力的离散应用不会影响整体微生物活性或增殖,这意味着膨润土膨胀过程中的压力演化不是导致饱和膨润土中微生物抑制的关键因素。然而,压力处理会导致微生物群落结构发生显著变化。我们还证明,微生物活性随温度升高而降低,并且热处理会强烈影响膨润土微生物群落结构,鉴定出了几个嗜热类群。90°C 的温度被证明对所有膨润土悬浮液中的微生物活性和增殖都是限制因素。我们的研究强调了在确定可能的策略以减轻深部地质处置库内微生物潜力并提高其长期稳定性和安全性方面,深入了解与处置库相关条件下微生物活性的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97a4/10710388/98a3bdf25ae4/11274_2023_3849_Fig1_HTML.jpg

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