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沸石负载纳米 Fe-Mn 二元氧化物对地下水中砷的吸附/氧化。

Adsorption/Oxidation of arsenic in groundwater by nanoscale Fe-Mn binary oxides loaded on zeolite.

出版信息

Water Environ Res. 2014 Feb;86(2):147-55. doi: 10.2175/106143013x13807328849170.

Abstract

Nanoscale Fe-Mn binary oxides loaded on zeolite (NIMZ) is synthesized and characterized. The as-synthesized adsorbent is amorphous with 126 m2/g surface area; it is effective for the adsorption of both As(III) and As(V) in synthetic groundwater. It has high adsorption capacities of 296.23 and 201.10 mg/g for As(III) and As(V), respectively. For the adsorption of 2 mg/L arsenic, the aqueous concentration quickly decreases to less than 10 /microg/L within 30 min. During the adsorption of As(III), the in-aqueous measurement of As(V) shows a low concentration in the initial stage and disappears afterward. The fraction of As(V) on NIMZ gradually increases with time, proving the oxidation of As(III). The adsorption of As(III) and As(V) decreases with increasing pH. The anions of SiO3(2-), H2PO4(-), and HCO3(-) significantly compete with arsenic for the adsorption sites. The innersphere surface complexes are formed by As(III) or As(V) with the hydroxyl groups on the surface of NIMZ.

摘要

纳米级 Fe-Mn 二元氧化物负载沸石(NIMZ)被合成并进行了表征。所合成的吸附剂为无定形,比表面积为 126 m2/g;它对合成地下水中的 As(III)和 As(V)均具有高效的吸附性能。其对 As(III)和 As(V)的吸附容量分别高达 296.23 和 201.10 mg/g。对于 2 mg/L 砷的吸附,在 30 分钟内水相中浓度迅速降至 10 /microg/L 以下。在 As(III)的吸附过程中,水相中 As(V)的测量值在初始阶段呈现出低浓度,随后消失。NIMZ 上的 As(V)比例随时间逐渐增加,证明了 As(III)的氧化。As(III)和 As(V)的吸附随 pH 值的增加而降低。SiO3(2-)、H2PO4(-)和 HCO3(-)阴离子会与砷竞争吸附位点。As(III)或 As(V)与 NIMZ 表面的羟基形成内球表面络合物。

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