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New Approaches to the Preparation of Highly Efficient Chromium-Containing Oxide Catalysts for the Water Gas Shift Reaction

机译:制备用于水煤气变换反应的高效含铬氧化物催化剂的新方法

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It was found experimentally that the solutions of Cr3+ nitrate and the nitrates of other metals that are the constituents of Cr-containing catalysts can be prepared by dissolving a corresponding metal (for example, cast iron and electrolytic copper) in a solution of chromic anhydride and nitric acid to reach the quantitative reduction of Cr6+ without the formation of nitrogen oxides. Analogously, the oxidation of Fe2+ cations to Fe3+ coupled with the reduction of hexavalent chromium can be performed. The precipitation of Fe3+, Cr3+, and Cu2+ ions at a ratio of Fe : Cr = 9 and a concentration of Cu2+ to 20 at % can result in the formation of a partially hydrated oxide with the hydrohematite structure-a dispersed and highly defective oxide structure with a high specific surface area more than 300 m(2)/g and a higher thermal stability, as com pared with the goethite phase (alpha-FeOOH). The dehydration of hydrohematite occurred at a noticeable rate at temperatures higher than 400 degrees C. Hydrohematite promoted with copper cations exhibited high activity below 400 degrees C; this can decrease the starting temperature of the adiabatic high-temperature WGSR to 300 degrees C or below.
机译:通过实验发现,可以通过将相应的金属(例如铸铁和电解铜)溶解在铬酸酐和二氧化铬的溶液中来制备Cr3 +硝酸盐和作为含Cr催化剂组成的其他金属的硝酸盐的溶液。硝酸达到Cr6 +的定量还原而不会形成氮氧化物。类似地,可以执行Fe 2+阳离子氧化为Fe 3+以及还原六价铬的操作。以Fe:Cr = 9的比例沉淀Fe3 +,Cr3 +和Cu2 +离子,且Cu2 +浓度为20 at%时,会形成具有水赤铁矿结构的部分水合氧化物-分散且缺陷严重的氧化物结构与针铁矿相(α-FeO​​OH)相比,具有超过300 m(2)/ g的高比表面积和更高的热稳定性。在高于400摄氏度的温度下,赤铁矿的脱水率显着增加。在400摄氏度以下,由铜阳离子促进的赤铁矿表现出高活性;这可以将绝热高温WGSR的起始温度降低至300℃或更低。

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