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合成氨工业催化剂的一种新型前躯体—维氏体 被引量:3
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作者 N. Pernicone F. Ferrero +6 位作者 I. Rossetti L. Forni P. Canton P. Riello G. Fagherazzi M. Signoretto F. Pinna 《浙江工业大学学报》 CAS 2004年第2期123-130,共8页
关于合成氨铁系催化剂最佳氧化态前躯体相矛盾的实验结果推动了当前以维氏体和磁铁矿为母体的催化剂的比较研究。测定了两种催化剂的许多物理性质(密度、孔结构、晶相、还原速率、金属表面、磨耗量)和催化性能(动力学常数、耐热性)。证... 关于合成氨铁系催化剂最佳氧化态前躯体相矛盾的实验结果推动了当前以维氏体和磁铁矿为母体的催化剂的比较研究。测定了两种催化剂的许多物理性质(密度、孔结构、晶相、还原速率、金属表面、磨耗量)和催化性能(动力学常数、耐热性)。证明了以维氏体为母体的催化剂具有更高的活性,尤其是在低温下,除了在高转化率情况下之外,可以达到Ru/C催化剂的性能。本文讨论了以维氏体为母体的催化剂具有这种特性的可能原因,并且建议有必要对合成氨铁系催化剂现有统一的理论知识进行重新考虑。 展开更多
关键词 合成氨工业 维氏体催化剂 磁铁矿催化剂 前躯 动力学常数 还原速率
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混合法制备铁钌复合催化剂的研究 被引量:1
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作者 程田红 李蕾 +1 位作者 韩文锋 刘化章 《工业催化》 CAS 2016年第6期35-40,共6页
以维氏体铁催化剂为载体,以十二羰基三钌为钌的前驱体,采用固相混合法制备系列铁钌复合催化剂,考察十二羰基三钌的分解温度、热分解气氛以及钌负载量对催化剂活性的影响。采用扫描电子显微镜和热重分析等考察催化剂的表面性质与催化活... 以维氏体铁催化剂为载体,以十二羰基三钌为钌的前驱体,采用固相混合法制备系列铁钌复合催化剂,考察十二羰基三钌的分解温度、热分解气氛以及钌负载量对催化剂活性的影响。采用扫描电子显微镜和热重分析等考察催化剂的表面性质与催化活性关系。结果表明,采用固相混合法得到的铁钌复合催化剂用于氨合成反应活性得到提高,在氮气气氛中,十二羰基三钌分解温度为120℃,钌负载质量分数为0.6%时,催化剂活性较好。 展开更多
关键词 催化剂工程 氨合成 固相混合法 十二羰基三钌 维氏体催化剂
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Analysis on Ammonia Synthesis over Wustite-Based Iron Catalyst
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作者 李小年 刘化章 +1 位作者 岑亚青 胡樟能 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2003年第1期19-26,共8页
Wustite-based catalyst for ammonia synthesis exhibits extremely high activity and easy to reduction under a wide range of conditions. The reaction kinetics of ammonia synthesis can be illustrated perfectly by both the... Wustite-based catalyst for ammonia synthesis exhibits extremely high activity and easy to reduction under a wide range of conditions. The reaction kinetics of ammonia synthesis can be illustrated perfectly by both the classical Temkin-Pyzhev and modified Temkin equations with optimized a of 0.5. The pre-exponent factors and activation energies at the pressures of 8.0 and 15.0MPa are respectively k0 = 1.09 x 1015, 7.35 X 1014Pa0.5.s-1, and E = 156.6, 155.5kJ-mol-1 derived from the classical Temkin-Phyzhev equation, as well as k0 = 2.45 X 1014, 1.83 X 1014Pa0.5s-1, and E = 147.7, 147.2kJ-mol-1 derived from the modified Temkin equation. Although the degree of reduction under isothermal condition is primarily dependent upon temperature, low pressure seems to be imperative for reduction under high temperature and low space velocity to be considered as a high activity catalyst. The reduction behavior with dry feed gas can be illustrated perfectly by the shrinking-sphere-particle model, by which the reduction-rate constants of 4248exp (-71680/KT) and 644exp (-87260/RT) were obtained for the powder (0.045-0.054mm) and irregular shape (nominal diameter 3.17 mm) catalysts respectively. The significant effect of particle size on reduction rate was observed, therefore, it is important to take into account the influence of particle size on reduction for the optimization of reduction process in industry. 展开更多
关键词 wustite-based catalyst ammonia synthesis catalytic activity reduction behavior kinetics
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