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Development of hydrogen production by liquid phase plasma process of water with Ni-TiO_2/carbon nanotube photocatalysts

机译:Ni-TiO_2 /碳纳米管光催化剂在水的液相等离子体法制氢中的应用

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Hydrogen evolution by water photocatalysis using liquid phase plasma system was disserted over metal-loaded TiO2 photocatalysts. Carbon nanotube was applied as a support for the metal-loaded TiO2 nanocrystallites. Photocatalytic activities of the photocatalysts were estimated for hydrogen production from water. Hydrogen was produced from the photodecomposition of water by liquid phase plasma irradiation. The rate of hydrogen evolution was improved by the metal loading on the TiO2 surface. TiO2 nanocrystallites were incorporated above 40 wt% onto the carbon nanotube support. The carbon nanotubes could be applied as a useful photocatalytic support for the fixation of TiO2. Hydrogen evolution was enhanced by the Ni loading on the TiO2 nanocrystallites supported on the carbon nanotube. Hydrogen evolution was increased apparently with addition of the alcohols which contributes as a kind of sacrificial reagent promoting the photocatalysis.
机译:在负载金属的TiO2光催化剂上分散了使用液相等离子体系统进行水光催化制氢的能力。将碳纳米管用作负载金属的TiO2纳米微晶的载体。估计光催化剂的光催化活性可用于从水中生产氢气。通过液相等离子辐射由水的光分解产生氢气。氢的释放速率因TiO2表面上的金属负载而提高。将TiO 2纳米微晶以大于40wt%的量掺入到碳纳米管载体上。碳纳米管可用作固定TiO2的有用的光催化载体。通过负载在碳纳米管上的TiO2纳米微晶上的镍负载,氢的释放得以增强。加入醇显然增加了氢的释放,而醇是一种促进光催化的牺牲试剂。

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