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前驱体干燥法对非晶态Ni-B/γ-Al_2O_3催化剂性能的影响 被引量:12

Effect of Desiccation of the Catalyst Precursor on the Performance of Amorphous Ni-B/γ-Al_2O_3 Catalyst
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摘要 Amorphous Ni B/γ Al 2O 3 catalyst 1 is prepared with chemical reduction by KBH 4 solution after wetness impregnation and desiccation at 70 ℃ first and then at 110 ℃ for thorough water removal. Its higher catalytic activity than amorphous Ni B/γ Al 2O 3 catalyst 2, prepared by conventional one step desiccation procedure at 110 ℃, is identified in liquid phase benzene hydrogenation to cyclohexane. Both catalysts are characterized by XRD and SEM, Ni B/γ Al 2O 3 catalyst 1 has a higher active specific surface area and dispersion degree, which can be assigned to more effective distribution of nickel salt over the support during desiccation, thus resulting in its superior activity in benzene hydrogenation. Amorphous Ni B/γ Al 2O 3 catalyst 1 is prepared with chemical reduction by KBH 4 solution after wetness impregnation and desiccation at 70 ℃ first and then at 110 ℃ for thorough water removal. Its higher catalytic activity than amorphous Ni B/γ Al 2O 3 catalyst 2, prepared by conventional one step desiccation procedure at 110 ℃, is identified in liquid phase benzene hydrogenation to cyclohexane. Both catalysts are characterized by XRD and SEM, Ni B/γ Al 2O 3 catalyst 1 has a higher active specific surface area and dispersion degree, which can be assigned to more effective distribution of nickel salt over the support during desiccation, thus resulting in its superior activity in benzene hydrogenation.
机构地区 复旦大学化学系
出处 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2001年第6期1022-1024,共3页 Chemical Journal of Chinese Universities
基金 国家自然科学基金! (批准号 :2 9792 0 78) 上海市新材料研究中心! (批准号 :98JC1 4 0 1 9) 中国石油化工集团公司资助
关键词 硼合金 Γ-氧化铝 负载型催化剂 前驱体 干燥法 环己烷 催化性能 分散度 加氢 非晶态合金 Ni B/γ Al 2O 3 catalyst Amorphous alloy Benzene hydrogenation Dispersion degree
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参考文献8

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