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首页> 外文期刊>Corrosion Engineering, Science and Technology >Tournemire argillite/carbon steel evolution under bacterial influence after 10 years of in situ interaction
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Tournemire argillite/carbon steel evolution under bacterial influence after 10 years of in situ interaction

机译:在细菌作用下原位相互作用10年后的Tournemire硅藻土/碳钢演变

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摘要

The purpose of the present study was to characterise the physicochemical evolution of argillite/carbon steel coupons after 10 years of interaction inside the Tournemire Underground Research Laboratory (France). Carbon steel coupons were introduced in boreholes drilled in the geological formation in contact with the argillite, and were overcored 10 years later to study the interfaces. The iron release by steel corrosion induced mineralogical dissolutions (Ca phases) and precipitations (iron oxides and hydroxides), leading to a partial clogging of the argillite porosity. A sulphur enrichment was observed in the corrosion area, linked to a potential microbial activity. The biodiversities differed depending on the steel type, indicating the influence of iron-clay interactions. This analysis has shown the presence of bacteria known for their involvement in corrosion processes and isolates able to develop at elevated temperatures.
机译:本研究的目的是表征在Tournemire地下研究实验室(法国)内部相互作用10年后,硅藻土/碳钢试样块的物理化学演变。碳钢试样块被引入到与泥锌矿接触的地质构造中的钻孔中,并在10年后被压实以研究界面。钢腐蚀引起的铁释放引起矿物溶解(Ca相)和沉淀(氧化铁和氢氧化物),从而导致部分堵塞了泥锌矿孔隙。在腐蚀区域观察到硫富集,这与潜在的微生物活性有关。生物多样性随钢的类型而异,表明了铁-粘土相互作用的影响。该分析表明存在着以腐蚀过程和能够在高温下生长的分离菌为名的细菌。

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