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首页> 外文期刊>Journal of Catalysis >Reaction and surface characterization study of higher alcohol synthesis catalysts - VII. Cs- and Pd-promoted 1 : 1 Zn/Cr spinel
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Reaction and surface characterization study of higher alcohol synthesis catalysts - VII. Cs- and Pd-promoted 1 : 1 Zn/Cr spinel

机译:高级醇合成催化剂的反应和表面表征研究-VII。 Cs和Pd促进的1:1 Zn / Cr尖晶石

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A 1:1 Zn/Cr spinel catalyst promoted with 5.9 wt% Pd and 1, 3, or 5 wt% Cs has been tested for methanol and isobutanol synthesis using a 1:1 H-2:CO syngas feedstream. The reactor was operated at two different temperatures (400 and 440 degrees C) and two different pressures (1000 and 1500 psig). The higher temperature and pressure settings result in the highest isobutanol production rates over most of the catalysts examined. As the amount of Cs promotor is increased at 440 degrees C and 1500 psig, the total alcohol production rate increases and the methanol-to-isobutanol ratio decreases. A maximum isobutanol production rate of 142 g/kg-h and a methanol-to-isobutanol mole ratio of 1.0 are attained using the 5.0 wt% Cs/5.9 wt% Pd-promoted Zn/Cr catalyst. Furthermore, the addition of 3 and 5 wt% Cs results in an increase in the selectivity to total alcohols. The addition of Pd to these catalysts enhances both the total alcohol production rate and isobutanol production rate compared to Cs-promoted Zn/Cr catalysts which do not contain Pd. Surface characterization studies using X-ray photoelectron spectroscopy (XPS) and ion scattering spectroscopy (ISS) were performed on the 5 wt% Cs/5.9 wt% Pd-promoted catalyst. The XPS and ISS data reveal that the fresh catalyst surface consists primarily of ZnO, ZnCr2O4, Cs2O and a small amount of PdO2. Since the catalysts are typically reduced before testing in the reactor, the catalyst sample was again characterized after a reductive pretreatment in 1 x 10(-7) Torr of H-2 at 300 degrees C for 4 h. This pretreatment results in removal of the carbon contamination, thereby exposing underlying ZnO, Cs, and Pd. Characterization studies were also performed on a 5 wt% Cs/5.9 wt% Pd-promoted catalyst which had been removed from the reactor after 5 days of testing. The XPS data indicate that the near-surface region remains enriched in Cs and Pd and that the PdO2 present on the pretreated catalyst is converted to PdO during reaction. Apparently, the reaction process results in agglomeration of the ZnO film present on the reduced catalyst, which is the active catalytic phase in higher alcohol synthesis (HAS). (C) 1998 Academic Press. [References: 22]
机译:已使用1:1 H-2:CO合成气进料流测试了以5.9 wt%Pd和1、3或5 wt%Cs促进的1:1 Zn / Cr尖晶石催化剂的甲醇和异丁醇合成。反应器在两个不同的温度(400和440摄氏度)和两个不同的压力(1000和1500 psig)下运行。较高的温度和压力设置会导致大多数所检查的催化剂具有最高的异丁醇生产率。随着Cs促进剂的量在440摄氏度和1500 psig下增加,总酒精生产率提高,甲醇与异丁醇之比降低。使用5.0 wt%Cs / 5.9 wt%Pd促进的Zn / Cr催化剂可实现142 g / kg-h的最大异丁醇生产率和1.0的甲醇与异丁醇摩尔比。此外,添加3和5重量%的Cs导致对总醇的选择性增加。与不含Pd的Cs-促进的Zn / Cr催化剂相比,向这些催化剂中添加Pd可提高总醇生产率和异丁醇生产率。在5 wt%Cs / 5.9 wt%Pd促进的催化剂上进行了使用X射线光电子能谱(XPS)和离子散射光谱(ISS)进行的表面表征研究。 XPS和ISS数据显示,新鲜催化剂表面主要由ZnO,ZnCr2O4,Cs2O和少量PdO2组成。由于通常在反应器中进行测试之前将催化剂还原,因此在1 x 10(-7)托H-2中于300摄氏度下进行还原性预处理4小时后,再次对催化剂样品进行了表征。这种预处理可消除碳污染,从而暴露出下面的ZnO,Cs和Pd。还对5 wt%Cs / 5.9 wt%Pd促进的催化剂进行了表征研究,该催化剂在测试5天后已从反应器中移除。 XPS数据表明,近表面区域仍然富含Cs和Pd,并且存在于预处理催化剂上的PdO2在反应过程中转化为PdO。显然,反应过程导致存在于还原的催化剂上的ZnO膜结块,这是高级醇合成(HAS)中的活性催化相。 (C)1998年学术出版社。 [参考:22]

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