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Synthesis and characterization of nanostructure hydrous iron–titanium binary mixed oxide for arsenic sorption

机译:纳米结构水-铁钛二元混合氧化物的吸附与表征

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Synthesis of nanostructure hydrous iron–titanium binary mixed oxide (NHITBMO) had been reported by a simple method, and characterized by the X-ray diffraction (XRD), thermal analysis, transmission electron microscope (TEM), F?urier Transform Infrared (FTIR), surface area, and zero surface charge pH (pHzpc). The synthetic oxide was hydrated and microcrystalline with 77.8 m2 g?1 BET surface area. The particle size (nm) calculated using XRD peak table and TEM image was ~10–13 and 6–8, respectively. The pHzpc value was 6.0 (±0.05) for the oxide. The NHITBMO showed pH dependent good sorption affinity for arsenic from the aqueous solution and, the Langmuir monolayer capacity (mg g?1) was 80.0 and 14.6, respectively, for the As(III) and As(V). The pseudo-second order equation described the room temperature arsenic sorption kinetic data well. The minimum dose required was 1.6 g NHITBMO per L of water (Astotal = 0.24 mg L?1) to reduce the arsenic level below 0.01 mg L?1 in batch treatment process.
机译:已有报道用一种简单的方法合成了纳米水铁钛二元混合氧化物(NHITBMO),并通过X射线衍射(XRD),热分析,透射电子显微镜(TEM),傅立叶变换红外光谱(FTIR)进行了表征。 ),表面积和零表面电荷pH(pHzpc)。合成的水合氧化物经过水合和微晶形成,BET表面积为77.8 m2 g?1 。使用XRD峰表和TEM图像计算得出的粒径(nm)分别为〜10-13和6-8。氧化物的pHzpc 值为6.0(±0.05)。 NHITBMO对水溶液中的砷具有pH依赖性的良好吸附亲和力,Langmuir的As(III)和As(V)的单层容量(mg g?1 )分别为80.0和14.6。拟二阶方程很好地描述了室温下砷的吸附动力学数据。每批水需要的最低剂量为1.6 g NHITBMO(Astotal = 0.24 mg L?1 ),以在分批处理过程中将砷含量降低至0.01 mg L?1 以下。

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