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氢氧根离子在TiO_2薄膜电极上的吸附行为和光氧化动力学 被引量:2
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作者 曹江林 冷文华 +1 位作者 张鉴清 曹楚南 《物理化学学报》 SCIE CAS CSCD 北大核心 2004年第7期735-739,共5页
在醇的水溶液中,应用电化学方法研究了OH-在TiO2薄膜电极上的吸附行为和光氧化动力学.实验结果表明,OH-在TiO2表面的吸附模型符合Langmuir等温吸附方程式,其光氧化动力学行为能用Lang-muir-Hinshelwood动力学方程来描述.在光强足够大时... 在醇的水溶液中,应用电化学方法研究了OH-在TiO2薄膜电极上的吸附行为和光氧化动力学.实验结果表明,OH-在TiO2表面的吸附模型符合Langmuir等温吸附方程式,其光氧化动力学行为能用Lang-muir-Hinshelwood动力学方程来描述.在光强足够大时,光电流和OH-在TiO2表面的吸附浓度成正比,这表明,光生空穴仅氧化吸附于TiO2表面的OH-,同时吸附的水分子则不能被氧化.在醇浓度足够高的溶液中,自由基OH和电子之间的复合反应几乎不发生,这时整个光氧化反应的速控步骤是光生自由基OH的生成. 展开更多
关键词 OH^-离子 TIO2薄膜 光氧化动力学 Langmuir等温吸附方程式
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Photo oxidation of DBT using carbon nanotube titania composite as visible light active photo catalyst 被引量:1
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作者 BARMALA Molood BEHNOOD Mohammad OMIDKHAH Mohammad Reza 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1642-1650,共9页
Sulfur removal from liquid fuels has increased in importance in recent years. Although hydrodesulfurization is the usual method for removing sulfur, the elimination of thiophene compounds using this process is difficu... Sulfur removal from liquid fuels has increased in importance in recent years. Although hydrodesulfurization is the usual method for removing sulfur, the elimination of thiophene compounds using this process is difficult. Photocatalysis is an alternative method being developed for thiophene removal at ambient conditions. Among semiconductors, titania has shown good potential as a photo-catalyst; however, quick recombination of electron holes hinders its commercial use. One way to decrease the recombination rate is to combine carbon nanotubes with a semiconductor. In this work, multiwall carbon nanotube (MWCNT) / titania composites were prepared with different mass ratios of MWCNT to titania using tetraethyl orthotitanate (TEOT) and titanium tetra isopropoxide (TTIP) as precursors of titania. Dibenzothiophene (DBT) photocatalytic removal from n-hexane was measured in both the presence and absence of oxygen. The results indicated that the best removal occurred when the MWCNT to titania ratio was 1. When the ratio exceeded this number, DBT removal efficiency decreased due to light scattering. Also, the composites prepared by TEOT exhibited better efficiency in DBT removal. The research findings suggested that the obtained composite was a visible light active photocatalyst and exhibited better performance in the presence of oxygen. Kinetics of photocatalytic DBT removal was a first-order reaction with removal rate constant 0.7 h–1 obtained at optimum conditions. 展开更多
关键词 advanced oxidation processes carbon nanotube PHOTOCATALYSIS UV kinetics SEMICONDUCTOR sol-gel process
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