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1.
Bioelectrochemistry ; 97: 162-8, 2014 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-24177136

RESUMO

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.


Assuntos
Desulfovibrio/fisiologia , Resíduos Radioativos/análise , Shewanella/fisiologia , Corrosão , Ferro/análise , Ferro/metabolismo , Modelos Biológicos , Oxirredução , Sulfatos/análise , Sulfatos/metabolismo
2.
Bioelectrochemistry ; 97: 76-88, 2014 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-24169516

RESUMO

Influence of sulfidogenic bacteria, from a North Sea seawater injection system, on the corrosion of S235JR carbon steel was studied in a flow bioreactor; operating anaerobically for 100days with either inoculated or filtrated seawater. Deposits formed on steel placed in reactors contained magnesium and calcium minerals plus iron sulfide. The dominant biofilm-forming organism was an anaerobic bacterium, genus Caminicella, known to produce hydrogen sulfide and carbon dioxide. Open Circuit Potentials (OCP) of steel in the reactors was, for nearly the entire test duration, in the range -80045), suggested pitting on steel samples within the inoculated environment. However, the actual degree of corrosion could neither be directly correlated with the electrochemical data and nor with the steel corrosion in the filtrated seawater environment. Further laboratory tests are thought to clarify the noticed apparent discrepancies.


Assuntos
Biofilmes/crescimento & desenvolvimento , Carbono/química , Corrosão , Bacilos Gram-Negativos Anaeróbios Retos, Helicoidais e Curvos/fisiologia , Água do Mar/microbiologia , Aço/química , Reatores Biológicos , Desenho de Equipamento , Mar do Norte , Sulfetos/metabolismo
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