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Development of Nano-Porous Alumina Catalyst Support by Anodic Oxidation of Thermally and Kinetically Sprayed Aluminum Coatings

机译:通过阳极氧化热和动力学喷涂铝涂层的纳米多孔氧化铝催化剂催化剂的研制

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In order to minimize environmental burden, green technologies should be important in the 21st century. High-performance catalyst layer would make significant contribution through reforming of hydrocarbon fuels, removal of toxic molecules such as CO and NH_3 from exhaust gas, reduction of nitrogen oxide (NO_x) formation in combustion, and efficient conversion of chemical energy to thermal energy in small scales. Among various kinds of catalyst support, nano-porous alumina (Al_2O_3) developed with anodic oxidation of aluminum (Al) layers attracts much attention due to its extremely-large specific area, easy controllability of porosity and coating thickness, and large bond strength with the substrate. In our previous studies, we have developed a micro-scale catalytic combustor with a palladium (Pd)/nano-porous Al_2O_3 catalyst layer, aiming at micro thermophotovoltaic power generation system, which could realize higher energy density than Li-ion batteries. In this paper, we use kinetic- and plasma-spraying for the deposition of Al, and examine the effect of the Al deposition methods on the nano-pore density. It is found that a large number of dislocations in the kinetically sprayed Al particle provide much higher nano-pore density by anodic oxidation. It is also found that nano-porous Al_2O_3 layer kinetically sprayed and anodized has better characteristics as the catalyst support.
机译:为了尽量减少对环境的负担,绿色技术应该是在21世纪非常重要的。高性能催化剂层将通过烃类燃料,除去毒性分子,例如从废气中,在燃烧还原氮氧化物的(NO_x的)的形成,和化学能的有效转换成热能以小CO和NH_3的重整作出显著贡献秤。在各种的催化剂载体,纳米多孔氧化铝(Al_2O_3的)与铝的阳极氧化显影(Al)的层备受关注,因为它非常-大的比表面积,孔隙率和涂层厚度的容易控制性,并与大的粘结强度基质。在我们以往的研究中,我们已经开发了钯(Pd)/纳米多孔Al2O3催化剂层微尺度催化燃烧器,瞄准微热光伏发电系统,该系统可以实现比锂离子电池更高的能量密度。在本文中,我们使用kinetic-和等离子喷涂Al的沉积,并检查对纳米孔密度铝沉积方法的效果。据发现,在动力学上的Al喷粒子的大量位错的通过阳极氧化提供高得多的纳米孔密度。还发现的是动力学喷雾和阳极化的纳米多孔Al_2O_3的层具有更好的特性的催化剂载体。

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