首页> 外文会议>International Symposium on Water-Rock Interaction(WRI-11) vol.2; 20040627-0702; Saratoga Springs,NY(US) >Mechanisms of Fe~Ⅱ sequestration following dissimilatory iron reduction of structurally diverse Fe~Ⅲ (hydr)oxides
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Mechanisms of Fe~Ⅱ sequestration following dissimilatory iron reduction of structurally diverse Fe~Ⅲ (hydr)oxides

机译:不同结构的Fe〜Ⅲ(氢)氧化物异化铁还原后Fe〜Ⅱ的螯合机理

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The structural order of ferric (hydr)oxides may have an appreciable impact on the extent and rate of dissimilatory Fe~Ⅲ reduction. Here we compare the reductive biomineralization and Fe~Ⅱ sequestration mechanisms of 2-line ferrihydrite, goethite, and hematite. While 83% of Fe~Ⅱ produced following ferrihydrite reduction is retained within the solid-phase, merely 17% is retained by goethite and hematite. Iron(Ⅱ) sequestration ranges from magnetite precipitation and crystal growth on ferrihydrite to localized spinel-like domains within surface hydrated layers on goethite and hematite. The lower solubility of goethite and hematite relative to ferrihydrite, resulting in lower Fe_(aq)~Ⅲ activity and bacterially-generated Fe_(aq)~Ⅱ concentrations, may hinder magnetite precipitation beyond mere surface reorganization into nm-sized spinel-like domains. A decline in microbial reduction rates correlates with the initial phase disorder and termination of Fe~Ⅱ sequestration. As such, sustained microbial reduction of 2-line ferrihydrite, goethite, and hematite appears to be controlled, in large part, by changes in available reactive (higher energy) surface sites.
机译:三氧化二铁的结构顺序可能对异化Fe〜Ⅲ还原的程度和速率产生显着影响。在此,我们比较了两线水铁矿,针铁矿和赤铁矿的还原生物矿化和Fe〜Ⅱ螯合机理。铁水合物还原后产生的Fe〜Ⅱ的83%保留在固相中,而针铁矿和赤铁矿仅保留17%。铁(Ⅱ)的固存范围从磁铁矿在水铁矿上的沉淀和晶体生长到针铁矿和赤铁矿的表面水合层内的局部尖晶石状畴。针铁矿和赤铁矿相对于水铁矿的溶解度较低,导致较低的Fe_(aq)〜Ⅲ活性和细菌产生的Fe_(aq)〜Ⅱ浓度,可能会阻碍磁铁矿的沉淀,而不仅仅是表面重组成纳米大小的尖晶石状区域。微生物还原速率的下降与Fe〜Ⅱ螯合的初始阶段紊乱和终止有关。这样,两线铁水铁矿,针铁矿和赤铁矿的持续微生物还原似乎在很大程度上受到可利用的反应性(较高能量)表面位置变化的控制。

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