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Nano-Titania Photocatalyst Loaded on W-MCM-41 Support and Its Highly Efficient Degradation of Methylene Blue

机译:纳米二氧化钛光催化剂负载,其高效降解亚甲基蓝色

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Most of the azo dyes produced in textile, printing, paper manufacturing, pulp processing and pharmaceutical industries contain different organic contaminants. These dyes can enter the body through ingestion and the high content in living systems can prove to be carcinogenic. Therefore photocatalytic degradation of such toxic organic compounds in water, in the presence of semiconductor powders has received much attention over the last two decades. Nanocrystalline titanium dioxide, TiO_(2), is a well studied and commonly used material for photocatalytic applications. However, the control of particle size, monodispersity, large catalytic surface for sufficient adsorption of organic pollutants, recovery and recycle of TiO_(2) nanoparticles are challenging tasks. Hence in the present study, titania was introduced into the nanopores (2 - 10 nm size) of MCM-41 to produce stable nanoparticles of uniform size and shape. Further, in order to lengthen the life time of the excited electrons/holes during photoreaction, tungsten atoms were incorporated in to the MCM-41 silica matrix in addition to titania loading.
机译:在纺织,印刷,纸张制造,纸浆加工和制药行业中生产的大多数偶氮染料含有不同的有机污染物。这些染料可以通过摄取进入身体,生活系统中的高含量可以证明是致癌性的。因此,在水中的光催化降解这种有毒有机化合物,在半导体粉末的存在下在过去二十年中受到了很多关注。纳米晶二氧化钛,TiO_(2)是用于光催化应用的良好且常用的材料。然而,控制粒度,单反叠性,大催化表面足以充分吸附有机污染物,回收和再循环TiO_(2)纳米粒子是挑战的任务。因此,在本研究中,将二氧化钛引入MCM-41的纳米孔(2-10nm大小)中,以产生均匀尺寸和形状的稳定纳米颗粒。此外,为了在光反应期间延长激发电子/孔的寿命,除了二氧化钛负载之外还将钨原子掺入MCM-41二氧化硅基质中。

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