首页> 外文会议>5th International Symposium on the Industrial Applications of the Moessbauer Effect Aug 13-18, 2000 Virginia Beach, Virginia >Green Rusts and Their Relationship to Iron Corrosion; a Key Role in Microbially Influenced Corrosion
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Green Rusts and Their Relationship to Iron Corrosion; a Key Role in Microbially Influenced Corrosion

机译:绿锈及其与铁腐蚀的关系;在微生物影响的腐蚀中起关键作用

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Moessbauer spectroscopy (MS) has often been used to characterise double-layered hydrox-ysalts usually named green rusts (GR) and to follow their Fe(Ⅱ)/Fe(Ⅲ) ratio during the oxidation process of Fe(OH)_2 in the presence of aggressive anions such as Cl~-, SO_4~(2-), CO_3~(2-),.... They are intermediate compounds between the initial metal Fe(0) via the Fe(Ⅱ) and the final Fe(Ⅲ) (oxy-hydr)oxides constituting the usual rusts. E―pH Pourbaix diagrams of iron for predicting the aqueous corrosion conditions of iron-based materials are determined by monitoring the electrode potential E_h, and pH vs. time. The crystal structure of GRs, in any case constituted of layers of [Fe_(1-x~(Ⅱ)Fe_x~(Ⅲ) (OH)_2]~(x+) that alternate with interlayers [(x)A~(n-)· (mx)H_2O]~(x-) made of A~(n-) anions and water molecules, are presented. Several examples of the role of GRs are discussed, from chloride pitting of concrete reinforcing bars to bacterial corrosion of cast iron in water pipes or steel sheet piles in harbours. The efficiency of corrosion inhibitors like phosphate and their relationship to the oxidation of GRs are presented from basic MS studies. But most importantly, the evidence by MS of the dissimilatory reduction of a common ferric oxyhydroxide, γ-FeOOH lepidocrocite, into a GR by the action of a bacterium, Shewanella putrefaciens, opens the path through which microbially influenced corrosion (MIC) operates. A cycling of aerobic and anaerobic conditions is necessary where GRs but also magnetite play likely the key role.
机译:Moessbauer光谱(MS)经常用于表征通常称为绿锈(GR)的双层羟基盐酸盐,并在Fe(OH)_2在氧化过程中遵循其Fe(Ⅱ)/ Fe(Ⅲ)比。存在侵蚀性阴离子,例如Cl〜-,SO_4〜(2-),CO_3〜(2-),...。它们是初始金属Fe(0)通过Fe(Ⅱ)与最终Fe之间的中间化合物(III)(羟基)氧化物构成常见的锈蚀。通过监测电极电势E_h以及pH与时间的关系,可以确定用于预测铁基材料的水腐蚀条件的铁的E-pH的Pourbaix图。 GRs的晶体结构在任何情况下均由[Fe_(1-x〜(Ⅱ)Fe_x〜(Ⅲ)(OH)_2]〜(x +)与中间层[(x / n)A〜(介绍了由A〜(n-)阴离子和水分子组成的n-)·(mx / n)H_2O]〜(x-),并讨论了GRs作用的几个例子,从混凝土钢筋的氯离子腐蚀到MS的基础研究显示了水管或港口钢板桩中铸铁的细菌腐蚀,磷酸盐等腐蚀抑制剂的效率及其与GRs氧化的关系,但最重要的是,MS证明了异化还原在细菌希瓦氏菌(Shewanella putrefaciens)的作用下,普通的羟基氧化铁γ-FeOOH鳞云母变成GR,为微生物影响腐蚀(MIC)的运行开辟了道路。在GR和磁铁矿都需要有氧和厌氧条件的循环可能扮演关键角色。

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