Univ. Orléans, CNRS, BRGM, ISTO, UMR 7327 , F-45071 Orléans , France.
BRGM , 3 Avenue Claude Guillemin , 45060 Orléans , France.
Environ Sci Technol. 2020 Jan 21;54(2):851-861. doi: 10.1021/acs.est.9b05632. Epub 2020 Jan 2.
Fougerite is a naturally occurring green rust, that is, a layered double hydroxide (LDH) containing iron (Fe). Fougerite was identified in natural settings such as hydromorphic soils. It is one of the few inorganic materials with large anion adsorption capacity that stems from the presence of isomorphic substitutions of Fe by Fe in its layers. The importance of anion adsorption in the interlayer of LDH has often been highlighted, but we are still missing a mechanistic understanding and a thermodynamic framework to predict the anion uptake by green rust. We combined laboratory and in operando synchrotron X-ray diffraction and scattering experiments with geochemical modeling to contribute to filling this gap. We showed that the overall exchange process in green rusts having nanometer and micrometer sizes can be seen as a simple anion exchange mechanism without dissolution-recrystallization or interstratification processes. A thermodynamic model of ion exchange, based on the Rothmund and Kornfeld convention, made it possible to predict the interlayer composition in a large range of conditions. This multiscale characterization can serve as a starting point for the building of robust and mechanistic geochemical models that will allow predicting the role of green rust on the geochemical cycle of ions, including nutrients, in soils.
纤铁矿是一种天然存在的绿色水铁矿,即含有铁(Fe)的层状双氢氧化物(LDH)。纤铁矿在水成土壤等自然环境中被发现。它是少数具有较大阴离子吸附能力的无机材料之一,这源于其层状结构中 Fe 被 Fe 同晶取代。LDH 层间阴离子吸附的重要性经常被强调,但我们仍然缺乏对绿色水铁矿阴离子吸收的机制理解和热力学框架。我们结合实验室和同步辐射 X 射线衍射和散射实验以及地球化学模拟,为填补这一空白做出了贡献。我们表明,纳米级和微米级绿色水铁矿的整体交换过程可以看作是一种简单的阴离子交换机制,而没有溶解-再结晶或层间插层过程。基于 Rothmund 和 Kornfeld 公约的离子交换热力学模型使得在大范围条件下预测层间组成成为可能。这种多尺度特征可以作为构建稳健的和机制性的地球化学模型的起点,该模型将允许预测绿色水铁矿在土壤中离子,包括营养物的地球化学循环中的作用。