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Iron cycling at corroding carbon steel surfaces

机译:铁在腐蚀碳钢表面时循环

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Surfaces of carbon steel (CS) exposed to mixed cultures of iron-oxidizing bacteria (FeOB) and dissimilatory iron-reducing bacteria (FeRB) in seawater media under aerobic conditions were rougher than surfaces of CS exposed to pure cultures of either type of microorganism. The roughened surface, demonstrated by profilometry, is an indication of loss of metal from the surface. In the presence of CS, aerobically grown FeOB produced tight, twisted helical stalks encrusted with iron oxides. When CS was exposed anaerobically in the presence of FeRB, some surface oxides were removed. However, when the same FeOB and FeRB were grown together in an aerobic medium, FeOB stalks were less encrusted with iron oxides and appeared less tightly coiled. These observations suggest that iron oxides on the stalks were reduced and solubilized by the FeRB. Roughened surfaces of CS and denuded stalks were replicated with three culture combinations of different species of FeOB and FeRB under three experimental conditions. Measurements of electrochemical polarization resistance established different rates of corrosion of CS in aerobic and anaerobic media, but could not differentiate rate differences between sterile controls and inoculated exposures for a given bulk concentration of dissolved oxygen. Similarly, total iron in the electrolyte could not be used to differentiate treatments. The experiments demonstrate the potential for iron cycling (oxidation and reduction) on corroding CS in aerobic seawater media.
机译:在有氧条件下,海水介质中暴露于铁氧化细菌(FeOB)和异化还原铁细菌(FeRB)混合培养的碳钢(CS)表面比暴露于两种微生物的纯培养物的CS表面更粗糙。通过轮廓测定法证明的粗糙表面表明金属从表面上流失。在CS存在下,需氧生长的FeOB产生紧密,扭曲的缠绕有氧化铁的螺旋茎。当在FeRB存在下厌氧暴露CS时,一些表面氧化物被去除。但是,当相同的FeOB和FeRB在有氧培养基中一起生长时,FeOB茎很少被氧化铁包裹,看起来不紧密盘绕。这些观察结果表明,FeRB可以减少并溶解茎上的氧化铁。在三种实验条件下,用不同种类的FeOB和FeRB的三种培养组合复制CS的粗糙表面和裸露的茎。电化学极化电阻的测量建立了好氧和厌氧介质中CS的不同腐蚀速率,但是对于给定的整体溶解氧浓度,不能区分无菌对照和接种暴露之间的速率差异。同样,电解质中的总铁不能用于区分处理方法。实验证明了在好氧海水介质中铁循环(氧化和还原)对腐蚀CS的潜力。

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