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Characterization of Different Solid Particles Transformed from Green Rust in Aqueous Solution - Using XRD, Moessbauer Spectroscopy, and XANES

机译:水溶液中由绿锈转变的不同固体颗粒的表征-使用XRD,Moessbauer光谱和XANES

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摘要

The X-ray diffraction method and Moessbauer spectroscopy were used for characterizing solid particles transformed from hydroxysulfate GR2(SO_4~(2-)) by oxidation in aqueous solution. The results revealed that different ferric oxyhydroxides (α-FeOOH and γ-FeOOH) and magnetite (Fe_3O_4) were formed through the precipitation of ferrous and ferric ions dissolved from GR2(SO_4~(2-)) in aqueous solution. The X-ray absorption spectroscopy along with Mossbauer spectroscopy was also used for analyzing the chemical state of iron in GR2(SO_4~(2-)). The molar ratio of ferrous to ferric ions [Fe(II)]/[Fe(III)] in GR2(SO_4~(2-)) was shown to be nearly two during the transformation from GR2(SO_4~(2-)). Moreover, the oxidation-reduction potential (ORP) and pH of the GR suspension were measured to examine formation conditions of the different ferric oxyhydroxides and magnetite. The results showed that formation conditions of magnetite in the aqueous solution were different from those of the ferric oxyhydroxides, indicating that reaction conditions in aqueous solution strongly influence the formation of different ferric oxyhydroxides and magnetite.
机译:采用X射线衍射法和Moessbauer光谱法对羟基硫酸盐GR2(SO_4〜(2-))在水溶液中的氧化转化为固体颗粒进行表征。结果表明,从GR2(SO_4〜(2-))溶解的亚铁和三价铁离子的沉淀形成了不同的羟基氧化铁(α-FeO​​OH和γ-FeOOH)和磁铁矿(Fe_3O_4)。 X射线吸收光谱法和莫斯鲍尔光谱法还用于分析GR2(SO_4〜(2-))中铁的化学态。从GR2(SO_4〜(2-))转化过程中,GR2(SO_4〜(2-))中亚铁离子与铁离子的摩尔比[Fe(II)] / [Fe(III)]接近于2。 。此外,测量GR悬浮液的氧化还原电位(ORP)和pH以检查不同的羟基氧化铁和磁铁矿的形成条件。结果表明,磁铁矿在水溶液中的形成条件与羟基氧化铁的形成条件不同,表明水溶液中的反应条件对不同的羟基氧化铁和磁铁矿的形成产生强烈影响。

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