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首页> 外文期刊>Journal of Hazardous Materials >Removal of arsenic from water using granular ferric hydroxide: Macroscopic and microscopic studies
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Removal of arsenic from water using granular ferric hydroxide: Macroscopic and microscopic studies

机译:使用颗粒状氢氧化铁去除水中的砷:宏观和微观研究

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Removal of arsenate from water using granular ferric hydroxide (GFH) was investigated under different pH and As(V) loading conditions, using batch equilibrium adsorption, FTIR, and EXAFS methods. The arsenate adsorption envelopes on GFH exhibited broad adsorption maxima when the initial As(V) concentration was less than 500mg/L at sorbent concentration of 10g/L. As the initial As(V) concentration increased to 500, 1000 or 2000 mg/L for the same sorbent concentration, distinct adsorption maxima appeared and shifted to lower pH. Acidimetric-alkalimetric titration and arsenic adsorption isotherm data indicated that the surface of GFH is high heterogeneous. FTIR spectra revealed that complexes of two different structures, bidentate and monodentate, were formed upon the adsorption of arsenate on GFH, and bidentate complexes were only observed at pH values greater than 6. The EXAFS analyses confirmed that arsenate form bidentate binuclear complexes with GFH at pH 7.4 as evidenced by an average Fe-As(V) bond distance of 3.32 A.
机译:使用间歇平衡吸附,FTIR和EXAFS方法研究了在不同pH和As(V)负载条件下使用颗粒状氢氧化铁(GFH)从水中去除砷酸盐的方法。当吸附剂浓度为10g / L时,初始As(V)浓度小于500mg / L时,GFH上的砷酸盐吸附包膜显示出较宽的吸附最大值。在相同的吸附剂浓度下,当初始As(V)浓度增加到500、1000或2000 mg / L时,出现了明显的吸附最大值,并转移到较低的pH值。酸碱滴定和砷吸附等温线数据表明,GFH表面高度不均一。 FTIR光谱表明,砷酸盐在GFH上的吸附形成了两种不同结构的双齿和单齿复合物,并且仅在pH值大于6时才观察到双齿复合物。EXAFS分析证实,砷酸盐与GFH形成双齿双核复合物。 pH值7.4由平均Fe-As(V)键距为3.32 A证明。

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