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首页> 外文期刊>Reaction kinetics,mechanisms and catalysis >Rod-like and mushroom-like Co3O4-CeO2 catalysts derived from Ce-1,3,5-benzene tricarboxylic acid for CO preferential oxidation: effects of compositions and morphology
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Rod-like and mushroom-like Co3O4-CeO2 catalysts derived from Ce-1,3,5-benzene tricarboxylic acid for CO preferential oxidation: effects of compositions and morphology

机译:用于Ce-1,3,5-苯三羧酸的棒状和蘑菇状CO3O4-CeO2催化剂用于CE-1,3,5-苯三羧酸,用于共同氧化:组合物和形态的作用

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Rod-like and mushroom-like Co3O4-CeO2 catalysts were synthesized using CeBTC MOFs as self-sacrifice templates. The two kinds of Co3O4-CeO2 catalysts with different shapes were characterized by SEM, TEM, N-2 physical-sorption, XRD, TPR, Raman, XPS. The effects of compositions and morphology on the catalytic activity were investigated. The catalytic activities of Co3O4-CeO2 are correlated with the results of SEM, TEM, N-2 physical-sorption, XRD, TPR, Raman, XPS to give insights into the catalytic sites. The results indicate the obtained Co3O4-CeO2 catalysts exhibit rod-like and mushroom-like, replicating the morphology of CeBTC templates. The catalytic activities of Co3O4-CeO2 were arranged in this sequence: Co1Ce > Co6Ce > Co2Ce > Co4Ce > Co8Ce, regardless their different catalyst morphology. The mushroom-like catalysts are superior to the rod-like ones due to their high surface areas and small Co3O4 crystal sizes. The sequence of catalytic activity versus Co/Ce ratio are coincidence with the order of Co-Ce synergistic interaction and Co3+/Co deduced from results of XRD, TPR, Raman, XPS. This evidence revealed that the Co-Ce synergistic interaction and Co3+ ions are responsible for the high activity of Co3O4-CeO2 catalysts. The highest CO conversion of 99% catalyst was achieved over M-Co1Ce catalyst with 12.5% CO2 and 15% H2O at 215 degrees C, 20,000 mL g(-1) h(-1). In addition, CO conversion of M-Co1Ce catalyst maintained more than 99% for 54 h in the atmosphere of simulated reformate at 20,000 mL g(-1) h(-1), suggesting the M-Co1Ce catalyst demonstrates potential in practice application.
机译:使用CeBTC MOF作为自我牺牲模板合成棒状和蘑菇状CO3O4-CEO2催化剂。具有不同形状的两种CO3O4-CEO2催化剂的特征是SEM,TEM,N-2物理吸附,XRD,TPR,拉曼,XPS。研究了组合物和形态对催化活性的影响。 CO3O4-CEO2的催化活性与SEM,TEM,N-2物理吸附,XRD,TPR,拉曼,XPS相关的结果相关,以便在催化位点进行见解。结果表明所得CO3O4-CEO2催化剂表现出棒状和蘑菇状,复制CEBTC模板的形态。 Co3O4-CeO2的催化活性以该顺序排列:CO1CE> CO6CE> CO2CE> CO8CE> CO8CE,无论其不同的催化剂形态。由于其高表面积和小的CO3O4晶体尺寸,蘑菇状催化剂优于棒状的催化剂。催化活性与CO / Ce比的序列与来自XRD,TPR,拉曼,XPS的结果中推导的Co-Ce协同相互作用和CO3 + / Co的顺序吻合。该证据表明,CO-CE协同相互作用和CO3 +离子负责CO3O4-CEO2催化剂的高活性。在215℃,215℃,20,000ml G(-1)H(-1)中,在M-CO1CE催化剂上实现99%催化剂的最高CO转化率。此外,在20,000mL g(-1)H(-1)的模拟重整物的气氛中,M-CO1CE催化剂的CO转化为54小时,在20,000mL G(-1)H(-1)的气氛中,表明M-CO1CE催化剂在实践中表现出潜力。

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