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首页> 外文期刊>Chemical engineering journal >The preparation and characterization of a three-dimensional titanium dioxide nanostructure with high surface hydroxyl group density and high performance in water treatment
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The preparation and characterization of a three-dimensional titanium dioxide nanostructure with high surface hydroxyl group density and high performance in water treatment

机译:高表面羟基密度高水处理性能的三维二氧化钛纳米结构的制备与表征

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摘要

A three-dimensional (3D) titanium dioxide nanostructure consisting of a nanoparticle core and needlelike surface was fabricated. The effects of Ti~(4+) concentration, stirring methods and stirring time for TiO2 preparation were discussed with results from transmission and scanning electron microscopy; meanwhile, the TiO2 growth mechanism was illustrated by morphology evolution and crystallization of titanium dioxide spheres. The spherical diameter could be easily controlled by altering the concentration of precursor using a mechanical stirring method. X-ray photoelectron spectroscopy, Fourier transform infrared spectrometry and thermogravimetric analysis were used to confirm the composition of titanium dioxide spheres rich with hydroxyl groups. The product showed excellent ability for arsenic(V) and chromium(VI) removal and could be separated using sedimentation. Most of the ions could be removed in less than 1 h, and TiO2 had maximum adsorption capacities of 59.7 mg g~(-1) for arsenic(V) and 21.92 mg g~(-1) for chro-mium(VI). The high performance of self-assembled 3D titanium dioxide in water treatment was due to (1) its large hydroxyl group density and high specific surface area and (2) its 3D nanostructure consisting of a nanoparticle core and needlelike surface.
机译:制备了由纳米颗粒核和针状表面组成的三维(3D)二氧化钛纳米结构。通过透射电镜和扫描电镜观察了Ti〜(4+)浓度,搅拌方式和搅拌时间对TiO2制备的影响。同时,通过二氧化钛球体的形貌演化和结晶来说明TiO2的生长机理。通过使用机械搅拌方法改变前体的浓度,可以容易地控制球形直径。用X射线光电子能谱,傅里叶变换红外光谱和热重分析法确定了富含羟基的二氧化钛球的组成。该产品显示出优异的除砷(V)和铬(VI)能力,可以使用沉淀法分离。大多数离子在不到1小时的时间内即可被去除,TiO2对砷(V)的最大吸附容量为59.7 mg g〜(-1),对铬(VI)的最大吸附容量为21.92 mg g〜(-1)。自组装3D二氧化钛在水处理中的高性能归因于(1)高羟基密度和高比表面积,以及(2)其3D纳米结构由纳米粒子核和针状表面组成。

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