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Adsorptive removal of arsenic from water by an iron-zirconium binary oxide adsorbent

机译:铁-锆二元氧化物吸附剂吸附去除水中的砷

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Arsenate and arsenite may exist simultaneously in groundwater and have led to a greater risk to human health. In this study, an iron-zirconium (Fe-Zr) binary oxide adsorbent for both arsenate and arsenite removal was prepared by a coprecipitation method. The adsorbent was amorphous with a specific surface area of 339m~2/g. It was effective for both As(V) and As(III) removal; the maximum adsorption capacities were 46.1 and 120.0mg/g at pH 7.0, respectively, much higher than for many reported adsorbents. Both As(V) and As(III) adsorption occurred rapidly and achieved equilibrium within 25h, which were well fitted by the pseudo-second-order equation. Competitive anions hindered the sorption according to the sequence PO_4~(3-)>SiO_3~(2-)>CO_3~(2-)>SO_4~(2-). The ionic strength effect experiment, measurement of zeta potential, and FTIR study indicate that As(V) forms inner-sphere surface complexes, while As(III) forms both inner- and outer-sphere surface complexes at the water/Fe-Zr binary oxide interface. The high uptake capability and good stability of the Fe-Zr binary oxide make it a potentially attractive adsorbent for the removal of both As(V) and As(III) from water.
机译:砷和砷可能同时存在于地下水中,并给人类健康带来更大的风险。在这项研究中,通过共沉淀法制备了用于去除砷酸盐和亚砷酸盐的铁-锆(Fe-Zr)二元氧化物吸附剂。吸附剂为无定形,比表面积为339m〜2 / g。它对去除As(V)和As(III)均有效。在pH 7.0下,最大吸附容量分别为46.1和120.0mg / g,远高于许多报道的吸附剂。 As(V)和As(III)的吸附均迅速发生,并在25h内达到平衡,这与拟二阶方程拟合良好。竞争性阴离子按照PO_4〜(3-)> SiO_3〜(2-)> CO_3〜(2-)> SO_4〜(2-)的顺序阻碍吸附。离子强度效应实验,ζ电位测量和FTIR研究表明,As(V)在水/ Fe-Zr二元体系中形成内球表面配合物,而As(III)在内表面和外球表面均形成配合物氧化物界面。 Fe-Zr二元氧化物的高吸收能力和良好的稳定性使其成为从水中去除As(V)和As(III)的潜在有吸引力的吸附剂。

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