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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Carbon-based ruthenium catalyst for ammonia synthesis - Role of the barium and caesium promoters and carbon support
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Carbon-based ruthenium catalyst for ammonia synthesis - Role of the barium and caesium promoters and carbon support

机译:用于氨合成的碳基钌催化剂-钡和铯促进剂和碳载体的作用

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摘要

A series of ruthenium catalysts deposited on graphitized carbon and promoted with barium, caesium or both Ba and Cs have been studied in ammonia synthesis. Under experimental conditions (90 bar, H-2:N-2 = 3:1, 400 degreesC, 10% NH3), the reaction rate over the co-promoted catalyst (9.1 wt.% Ru in Ru + C) was found to be higher than those over singly promoted specimens, the overall effect from Ba + Cs in Ba-Cs-Ru/C being almost as high as the sum of individual effects from Ba (Ba-Ru/C) and Cs (Cs-Ru/C), respectively. The co-promoted Ru catalysts, especially that of high ruthenium loading (23.1 wt.% Ru) were shown to be significantly more active in NH3 synthesis than the conventional fused iron catalyst (KMI, H. Topsoe). The oxygen chemisorption studies have shown that the amounts Of O-2 taken up by the Cs-containing samples (Cs-Ru/C, Cs-Ba-Ru/C) are considerably larger than those for Ru/C and Ba-Ru/C, thus indicating caesium to be in a highly reduced, most likely zero valent form, when operating under ammonia synthesis conditions. It is suggested that barium ((Ba + O)(adlayer)) is located on the ruthenium surface and it acts as a structural or electronic promoter. Caesium (Cs-0) is suggested to be localised on the carbon surface: the Cs promotion occurs at contact points between Ru and the Cs atoms adsorbed on carbon ("hot ring promotion"-electronic). (C) 2003 Elsevier Science B.V. All rights reserved. [References: 48]
机译:在氨合成中,已经研究了一系列沉积在石墨化碳上并由钡,铯或钡和铯共同促进的钌催化剂。在实验条件下(90 bar,H-2:N-2 = 3:1,400°C,NH3含量为10%),发现在共助催化剂(Ru + C中9.1 wt。%Ru)上的反应速率为高于单提标本,Ba-Cs-Ru / C中Ba + Cs的整体效应几乎与Ba(Ba-Ru / C)和Cs(Cs-Ru / C)。与常规的熔融铁催化剂(KMI,H.Topsoe)相比,共促进的Ru催化剂,特别是高钌负载量的Ru(23.1wt。%Ru)在NH 3合成中显示出明显更高的活性。氧化学吸附研究表明,含Cs样品(Cs-Ru / C,Cs-Ba-Ru / C)所吸收的O-2量比Ru / C和Ba-Ru / C,因此表明当在氨合成条件下操作时,铯处于高度还原的,最可能为零价的形式。建议钡((Ba + O)(adlayer))位于钌表面,它起结构或电子促进剂的作用。建议将铯(Cs-0)定位在碳表面上:Cs促进发生在Ru与吸附在碳上的Cs原子之间的接触点上(“热环促进”-电子)。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:48]

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