首页> 外文期刊>Journal of Catalysis >CO2 METHANATION UNDER TRANSIENT AND STEADY-STATE CONDITIONS OVER RH/CEO2 AND CEO2-PROMOTED RH/SIO2 - THE ROLE OF SURFACE AND BULK CERIA
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CO2 METHANATION UNDER TRANSIENT AND STEADY-STATE CONDITIONS OVER RH/CEO2 AND CEO2-PROMOTED RH/SIO2 - THE ROLE OF SURFACE AND BULK CERIA

机译:RH / CEO2和CEO2促进的RH / SIO2处于瞬态和稳态条件下的CO2转化-表面和大体积铈的作用

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A series of Rh/SiO2 samples promoted with CeO2 have been prepared and used as catalyst in CO2 methanation. Their behaviour has been compared to that of unpromoted Rh/SiO2 and Rh/CeO2 catalysts. The activity has been monitored under transient and steady-state conditions and the catalysts have been characterized using quantitative temperature programmed reduction, chemisorption, X-ray diffraction, and transmission electron microscopy. By impregnation of amorphous silica with Ce(NO3)(3). 6H(2)O followed by calcination at 923 K, aggregates of CeO2 particles with size ranging from 35 to 150 nm (depending on initial cerium loading) form on the surface. These large agglomerates are constituted by individual, smaller (5-15 nm), crystalline CeO2 particles. Redispersion of CeO2 in the presence of Ha at 773 K is observed in all samples. The presence of Rh, deposited by impregnation from RhCl3.3H(2)O solutions, accelerates the process. The reducibility of ceria is strongly enhanced by deposition on silica: complete reduction to Ce2O3 is observed for CeO2-supported samples at temperatures lower than 1100 K, while a maximum of 50% reduction (corresponding to CeO1.75) is observed far unsupported CeO2 in the range of temperature 295-1400 K. The activity of the virgin catalyst, as tested under unsteady-state conditions, is positively influenced by the reduction temperature and CeO2 crystallite size. We suggest that the observed enhancement of catalytic activity is linked to the presence of bulk. vacancies created on ceria after reduction at high temperatures. Annihilation of these oxygen vacancies by oxygen from CO2, under reaction conditions, restores the normal catalytic behaviour. (C) 1995 Academic Press, Inc. [References: 61]
机译:制备了一系列用CeO2促进的Rh / SiO2样品,并将其用作CO2甲烷化的催化剂。他们的行为已与未助催化的Rh / SiO2和Rh / CeO2催化剂进行了比较。在瞬态和稳态条件下对活性进行了监测,并使用定量程序升温还原,化学吸附,X射线衍射和透射电子显微镜对催化剂进行了表征。通过用Ce(NO3)(3)浸渍无定形二氧化硅。 6H(2)O,然后在923 K煅烧,在表面上形成尺寸范围为35至150 nm(取决于初始铈含量)的CeO2颗粒聚集体。这些大的团聚物由单个的较小的(5-15 nm)结晶CeO2颗粒组成。在所有样品中均观察到在773 K下存在Ha时CeO2的再分散。 Rh的存在,通过从RhCl3.3H(2)O溶液中浸渍来沉积,从而加速了这一过程。通过在二氧化硅上沉积,二氧化铈的还原性得到了极大的增强:在低于1100 K的温度下,负载CeO2的样品可完全还原为Ce2O3,而在未负载CeO2的情况下最多可还原50%(相当于CeO1.75)。温度范围为295-1400K。在非稳态条件下测试的原始催化剂的活性受到还原温度和CeO2晶粒尺寸的积极影响。我们建议观察到的催化活性增强与大量存在有关。高温还原后在二氧化铈上产生的空位。在反应条件下,CO2中的氧会消灭这些氧空位,从而恢复正常的催化性能。 (C)1995 Academic Press,Inc. [参考:61]

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