Key Laboratory of Coastal Environment Processes, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Laishan District, Yantai, China.
J Colloid Interface Sci. 2011 Jun 1;358(1):230-7. doi: 10.1016/j.jcis.2011.01.013. Epub 2011 Jan 21.
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 339 m(2)/g. It was effective for both As(V) and As(III) removal; the maximum adsorption capacities were 46.1 and 120.0 mg/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 25 h, 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.
砷酸盐和亚砷酸盐可能同时存在于地下水中,这给人类健康带来了更大的风险。在这项研究中,采用共沉淀法制备了一种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。该吸附剂为无定形,比表面积为 339 m(2)/g。它对 As(V)和 As(III)的去除都很有效;在 pH 7.0 时,最大吸附容量分别为 46.1 和 120.0 mg/g,远高于许多报道的吸附剂。As(V)和 As(III)的吸附都很快,在 25 小时内达到平衡,这很好地符合伪二级方程。竞争阴离子根据 PO(4)(3-)>SiO(3)(2-)>CO(3)(2-)>SO(4)(2-)的顺序阻碍了吸附。离子强度效应实验、动电电位测量和 FTIR 研究表明,As(V)在水/Fe-Zr 二元氧化物界面形成内圈表面络合物,而 As(III)则形成内圈和外圈表面络合物。Fe-Zr 二元氧化物的高吸附能力和良好的稳定性使其成为一种很有吸引力的吸附剂,可用于从水中去除 As(V)和 As(III)。