首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Effect of phosphate, silicate, and Ca on the morphology, structure and elemental composition of Fe(III)-precipitates formed in aerated Fe(II) and As(III) containing water
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Effect of phosphate, silicate, and Ca on the morphology, structure and elemental composition of Fe(III)-precipitates formed in aerated Fe(II) and As(III) containing water

机译:磷酸盐,硅酸盐和钙对充气水中Fe(II)和As(III)形成的Fe(III)沉淀物的形态,结构和元素组成的影响

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摘要

We investigated Fe(III)-precipitates formed from Fe(II) oxidation in water at pH 7 as a function of dissolved Fe(II), As(III), phosphate, and silicate in the absence and presence of Ca. We used transmission electron microscopy (TEM), including selected area electron diffraction (SAED) and energy dispersive X-ray spectroscopy (EDX) to characterize the morphology, structure and elemental composition of the precipitates. Results from our companion X-ray absorption spectroscopy (XAS) study suggested that the oxidation of Fe(II) leads to the sequential formation of distinct polymeric units in the following order: Fe(III)-phosphate oligomers in the presence of phosphate, silicate-rich hydrous ferric oxide (HFO-Si) at high Si/Fe (>0.5) or 2-line ferrihydrite (2L-Fh) at lower Si/Fe (~0.1-0.5), and lepidocrocite (Lp) in the absence of phosphate at low Si/Fe (<0.1). Results from this study show that the size of the polymeric units increased along the same sequence and that the aggregation of these polymeric units resulted in spherical particles with characteristic surface textures changing from smooth to coarse. The diameter of the spherical particles increased from 15 to 380. nm as the molar ratio (P. +. Si. +. As)/Fe(II) in the starting solution decreased and larger spherical particles precipitated from Ca-containing than from Ca-free solutions. These trends suggested that the size of the spherical particles was controlled by the charge of the polymeric units. Spherical particles coagulated into flocs whose size was larger in the presence than in the absence of Ca. Further observations pointed to the importance of Fe(II) oxidation and polymerization versus polymer aggregation and floc formation kinetics in controlling the spatial arrangement of the different polymeric units within Fe(III)-precipitates. The resulting structural and compositional heterogeneity of short-range-ordered Fe(III)-precipitates likely affects their colloidal stability and their chemical reactivity and needs to be considered when addressing the fate of co-transformed trace elements such as arsenic.
机译:我们研究了在不存在和存在Ca的情况下,水中Fe(II)在pH 7下氧化形成的Fe(III)沉淀物与溶解的Fe(II),As(III),磷酸盐和硅酸盐的关系。我们使用透射电子显微镜(TEM),包括选择区域电子衍射(SAED)和能量色散X射线光谱(EDX)来表征沉淀物的形态,结构和元素组成。我们伴随的X射线吸收光谱(XAS)研究的结果表明,Fe(II)的氧化导致依次形成不同的聚合物单元,顺序如下:在磷酸盐,硅酸盐存在下的Fe(III)-磷酸盐低聚物高Si / Fe(> 0.5)时富含富氧水合三氧化二铁(HFO-Si),而低Si / Fe(〜0.1-0.5)时具有2线亚铁水合物(2L-Fh),而在不存在硅铁矿的情况下有纤铁矿(Lp) Si / Fe(<0.1)时的磷酸盐。这项研究的结果表明,聚合物单元的大小沿相同顺序增加,并且这些聚合物单元的聚集导致具有特征表面纹理的球形颗粒从光滑变为粗糙。随着起始溶液中摩尔比(P. +。Si。+ As)/ Fe(II)的减少,球形颗粒的直径从15增加到380. nm,并且从含Ca沉淀的球形颗粒比从Ca沉淀的大免费的解决方案。这些趋势表明球形颗粒的尺寸由聚合物单元的电荷控制。球形颗粒凝结成絮状物,存在时比不存在Ca时大。进一步的观察指出,在控制Fe(III)沉淀物中不同聚合物单元的空间排列中,Fe(II)氧化和聚合相对于聚合物聚集和絮凝形成动力学的重要性。短程排列的Fe(III)沉淀物的结构和组成异质性可能会影响其胶体稳定性和化学反应性,因此在解决共转化痕量元素(如砷)的命运时需要加以考虑。

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