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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Role of phosphate species during the formation and transformation of the Fe(II–III) hydroxycarbonate green rust
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Role of phosphate species during the formation and transformation of the Fe(II–III) hydroxycarbonate green rust

机译:磷酸盐种类在羟基碳酸铁(II–III)绿锈形成和转变中的作用

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摘要

The Fe(II–III) hydroxycarbonate green rust, GR(CO_3~(2-)), can be prepared by oxidation of aerated aqueous suspensions of Fe(II) hydroxide. The effects of phosphate species on the formation and transformation of GR(CO_3~(2-)) were then studied by adding Na_2HPO_4 before the precipitation of the initial Fe(II) hydroxide or once GR(CO_3~(2-)) was obtained. The final products of the oxidation processes were characterized by X-ray diffraction (XRD) and Raman spectroscopy. When Na_2HPO_4 was added to a suspension of well crystallized GR(CO_3~(2-)), various effects were observed depending on the Na_2HPO_4 concentration. (i) The formation of α-FeOOH was inhibited. (ii) Nanophase lepidocrocite was the main final product for the lowest phosphate concentrations (0.001 M, that is Fe/P = 120). (iii) “Ferric GR(CO_3~(2-))”, a Fe(III) oxyhydroxycarbonate keeping a layered structure similar to that of GR(CO_3~(2-)), was the only final product when [Na2HPO4] was increased. When phosphate species were present together with Fe~2+, OH~and HCO3~ ions before precipitation, the crystallization and growth of GR(CO_3~(2-)) particles were inhibited. The intermediate Fe(II–III) product was characterized for the first time. It is amorphous and may consist of nanoparticles showing a local ordering of atoms similar to that of GR(CO_3~(2-)), isolated from each other by adsorbed phosphate species. Its oxidation led to ferrihydrite. The effects of phosphate species may also depend on the type of GR considered
机译:Fe(II–III)羟基碳酸盐绿锈GR(CO_3〜(2-))可通过氧化Fe(II)的充气水悬浮液来制备。然后在沉淀最初的Fe(II)氢氧化物之前或一旦获得GR(CO_3〜(2-)),加入Na_2HPO_4,研究磷酸盐对GR(CO_3〜(2-))的形成和转化的影响。 。氧化过程的最终产物通过X射线衍射(XRD)和拉曼光谱进行表征。将Na_2HPO_4添加到结晶良好的GR(CO_3〜(2-))的悬浮液中时,根据Na_2HPO_4的浓度,会观察到各种效果。 (i)抑制了α-FeO​​OH的形成。 (ii)纳米级纤铁矿是最低磷酸盐浓度(0.001 M,即Fe / P = 120)的主要最终产物。 (iii)“铁质GR(CO_3〜(2-))”是保持类似于GR(CO_3〜(2-))的层状结构的Fe(III)羟基碳酸盐,是[Na2HPO4]为增加。当沉淀前磷酸盐和Fe〜2 +,OH〜和HCO3〜离子同时存在时,GR(CO_3〜(2-))粒子的结晶和生长受到抑制。中间体Fe(II-III)产物是首次表征。它是无定形的,可以由纳米粒子组成,这些纳米粒子显示出与GR(CO_3〜(2-))相似的原子局部排序,并通过吸附的磷酸盐物质相互隔离。其氧化导致水铁矿。磷酸盐种类的影响也可能取决于所考虑的GR类型

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