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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Effect of silica/titania ratio on enhanced photooxidation of industrial hazardous materials by microwave treated mesoporous SBA-15/TiO2 nanocomposites
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Effect of silica/titania ratio on enhanced photooxidation of industrial hazardous materials by microwave treated mesoporous SBA-15/TiO2 nanocomposites

机译:二氧化硅/二氧化钛比例对微波处理中孔SBA-15 / TiO2纳米复合材料增强工业有害材料光氧化的影响

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摘要

In this study microwave assisted technique has been adopted for the synthesis of different weight ratios of TiO2 dispersed on Santa barbara amorphous-15 (SBA-15) support. Morphological study revealed TiO2 particles (4-10 nm) uniformly distributed on SBA-15 while increases in SBA-15 content results in higher specific surface area (524-237 m(2)/g). The diffraction intensity of 101 plane of anatase polymorph was seen increasing with increase in TiO2 ratio. All the photocatalysts were having a mesoporous nature and follow the Langmuir IV isotherm, SBA-15 posses the highest pore volume (0.93 cm(3) g(-1)) which consistently decreased with TiO2 content and was lowest (0.50 cm(3) g(-1)) in case of 5 wt% of TiO2 followed by P25 (0.45 cm(3) g(-1)) while pore diameter increased after TiO2 incorporation due to pore strain. The photocatalytic activity of the nanocomposites were analysed for the photodegradation of alizarin dye and pentachlorophenol under UV light irradiation. The reaction kinetics suggested the highest efficiency (98 % for alizarin and 94 % for PCP) of 5 wt% TiO2 compared to other photocatalysts, these nanocomposites were reused for several cycles, which is most important for heterogeneous photocatalytic degradation reaction.
机译:在这项研究中,采用了微波辅助技术来合成分散在圣塔芭芭拉无定形15(SBA-15)载体上的不同重量比的TiO2。形态学研究表明,TiO2颗粒(4-10 nm)均匀分布在SBA-15上,而SBA-15含量的增加导致较高的比表面积(524-237 m(2)/ g)。锐钛型多晶型物101平面的衍射强度随TiO2比的增加而增加。所有的光催化剂都具有介孔性质,并且遵循Langmuir IV等温线,SBA-15具有最高的孔体积(0.93 cm(3)g(-1)),该孔体积随TiO2含量的增加而不断降低,而最低(0.50 cm(3)) g(-1))在5%的TiO2随后是P25(0.45 cm(3)g(-1))的情况下,而TiO2掺入后由于孔径应变导致孔径增加。分析了纳米复合材料的光催化活性,研究了茜素染料和五氯苯酚在紫外光下的光降解性能。反应动力学表明,与其他光催化剂相比,含5 wt%TiO2的效率最高(对于茜素而言为98%,对于PCP为94%),这些纳米复合材料可重复使用多个循环,这对于非均相光催化降解反应最为重要。

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