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Catalytic Decomposition of Natural Gas to CO/CO2-Free Hydrogen Production and Carbon Nanomaterials Using MgO-Supported Monometallic Iron Family Catalysts

机译:MgO负载单金属铁族催化剂催化天然气分解为无CO / CO2产氢和碳纳米材料

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Monometallic Fe, Co, and Ni/MgO catalysts with 50 wt.% metal loadings were prepared and examined for natural gas decomposition to nanocarbonaceous materials, particularly multiwalled carbon nanotubes (MWCNTs) and co-valuable hydrogen. The catalytic testing was carried out in a fixed-bed horizontal reactor at 700 degrees C under atmospheric pressure. The fresh and/or used catalysts were characterized using XRD, TPR, HRTEM, SEM, TG/DTA, Raman spectroscopy, and BET surface measurements. The resulting data showed that the 50%Co/MgO catalyst displayed higher catalytic decomposition activity of natural gas to COx- free hydrogen production (similar to 88%), higher yield of MWCNTs, and excellent stability up to 10 h time-on-stream. On the other hand, the Ni-containing catalyst showed lower catalytic activity toward hydrogen and CNTs production, principally due to the formation of rock-salt MgxNi(1-x)O solid solution as observed from XRD and TPR data. Accordingly, the concentration of Ni particles required for natural gas feed was extremely low. The d orbital of Ni was presumed to be occupied during the formation of the solid solution, which inhibits the solublization or adsorption of hydrocarbons on Ni particles. The MWCNTs obtained over Ni-based catalyst had narrow and homogeneous diameters (similar to 11-13 nm). However, the Fe/MgO catalyst exhibited intermediate activity between those of Ni and Co=MgO catalysts toward hydrogen production (similar to 44%). This catalyst produced mixtures of carbon nanofibers and nanotubes.
机译:制备了具有50%(重量)金属负载的单金属Fe,Co和Ni / MgO催化剂,并检查了天然气分解为纳米碳质材料(特别是多壁碳纳米管(MWCNT))和可共同估价的氢的能力。催化试验在固定床卧式反应器中在大气压下于700℃下进行。使用XRD,TPR,HRTEM,SEM,TG / DTA,拉曼光谱和BET表面测量对新鲜和/或用过的催化剂进行表征。所得数据表明,50%Co / MgO催化剂显示出天然气对无COx氢气产生的催化分解活性更高(约88%),MWCNT的产率更高以及在长达10小时的运行时间下具有出色的稳定性。另一方面,含镍催化剂对氢和碳纳米管的生产表现出较低的催化活性,这主要是由于从XRD和TPR数据观察到形成了岩盐MgxNi(1-x)O固溶体。因此,天然气进料所需的Ni颗粒的浓度极低。据推测,Ni的d轨道在固溶体的形成过程中被占据,这抑制了烃在Ni颗粒上的溶解或吸附。在Ni基催化剂上获得的MWCNT具有窄且均匀的直径(类似于11-13nm)。但是,Fe / MgO催化剂在制氢方面表现出介于Ni和Co = MgO催化剂之间的中间活性(约44%)。该催化剂产生了碳纳米纤维和纳米管的混合物。

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