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The use of carbon nanotubes with and without nitrogen doping as support for ruthenium catalysts in the ammonia decomposition reaction

机译:具有和不具有氮掺杂的碳纳米管在氨分解反应中用作钌催化剂的载体

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摘要

Ru catalysts were supported on two different carbon materials, multiwall carbon nanotubes and bamboo-like carbon nanotubes doped with nitrogen, which were synthesized by catalytic chemical vapour deposition of C2H2/H2/N2 or C2H2/NH3/H2/N2, respectively, over Fe/SiO2 catalyst. All the carbon supports and/or the prepared Ru catalysts were characterized by several techniques including transmission electron microscopy, X-ray photoelec-tron spectroscopy, N2 adsorption isotherms and CO chemisorption. The Ru catalysts were tested in the catalytic ammonia decomposition reaction. High yields towards hydrogen production were achieved. Carbon nanotubes were heated in an inert atmosphere at temperatures up to 1773 K in order to study the effects of such support treatments on the ammonia decomposition reaction. The elimination of acidic groups from the surfaces, prior to catalyst preparation, and/or the surface graphirization of the materials produced a higher catalytic activity during the reaction. The catalytic activity of Ru particles was significantly improved when supported on carbon nanotubes doped with nitrogen.
机译:Ru催化剂负载在两种不同的碳材料上,多壁碳纳米管和掺杂氮的竹状碳纳米管,分别通过在Fe上催化化学气相沉积C2H2 / H2 / N2或C2H2 / NH3 / H2 / N2合成/ SiO2催化剂。所有碳载体和/或制备的Ru催化剂均通过几种技术进行了表征,包括透射电子显微镜,X射线光电子能谱,N2吸附等温线和CO化学吸附。在催化氨分解反应中测试了Ru催化剂。实现了高产率的制氢。为了研究这种载体处理对氨分解反应的影响,将碳纳米管在惰性气氛中加热到1773K。在制备催化剂之前,从表面消除酸性基团和/或材料的表面石墨化在反应期间产生较高的催化活性。当负载在氮掺杂的碳纳米管上时,Ru颗粒的催化活性显着提高。

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