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微生物活动对放射性废物处置的影响:生物腐蚀过程的长期预测。

Impact of microbial activity on the radioactive waste disposal: long term prediction of biocorrosion processes.

机构信息

CEA, DEN, DTN/SMTM/LMTE, F-13108 St Paul lez Durance, France.

CEA, DEN, DTN/SMTM/LMTE, F-13108 St Paul lez Durance, France.

出版信息

Bioelectrochemistry. 2014 Jun;97:162-8. doi: 10.1016/j.bioelechem.2013.10.001. Epub 2013 Oct 11.

Abstract

This study emphasizes different experimental approaches and provides perspectives to apprehend biocorrosion phenomena in the specific disposal environment by investigating microbial activity with regard to the modification of corrosion rate, which in turn can have an impact on the safety of radioactive waste geological disposal. It is found that iron-reducing bacteria are able to use corrosion products such as iron oxides and "dihydrogen" as new energy sources, especially in the disposal environment which contains low amounts of organic matter. Moreover, in the case of sulphate-reducing bacteria, the results show that mixed aerobic and anaerobic conditions are the most hazardous for stainless steel materials, a situation which is likely to occur in the early stage of a geological disposal. Finally, an integrated methodological approach is applied to validate the understanding of the complex processes and to design experiments aiming at the acquisition of kinetic data used in long term predictive modelling of biocorrosion processes.

摘要

本研究强调了不同的实验方法,并通过研究微生物活性对腐蚀速率的影响,提供了理解特定处置环境中生物腐蚀现象的视角,而这反过来又会影响放射性废物地质处置的安全性。研究发现,铁还原菌能够利用腐蚀产物(如氧化铁和“氢气”)作为新的能源,特别是在含有低浓度有机物的处置环境中。此外,对于硫酸盐还原菌,结果表明,混合有氧和厌氧条件对不锈钢材料最具危害性,这种情况可能发生在地质处置的早期阶段。最后,采用综合方法学方法来验证对复杂过程的理解,并设计旨在获取用于生物腐蚀过程长期预测模型的动力学数据的实验。

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