1 Hagen, S., Barfod, R., Fehrmann, R., Jacobsen, C.J.H., Teunissen, H.T., Chorkendorff, I.B., “Ammonia synthesis with barium-promoted iron-cobalt alloys supported on carbon”, J. Catal., 214, 327-335 (2003). 2 Nielsen, A., Ammonia:Catalysis and Manufacture, Springer, Berlin, 103 (1995). 3 Dahl, S., Logadottir, A., Jacobsen, C.J.H., Norskov, J.K., “Electronic factors in catalysis:the volcano curve and the effect of promotion in catalytic ammonia synthesis”, Appl. Catal. A, 222, 19-29 (2001). 4 Rosowski, F., Hornoung, A., Hinrichsen, O., Herein, D., Muhler, M., Ertl, G., “Ruthenium catalysts for ammonia synthesis at high pressures:Preparation, characterization, and power-law kinetics”, Appl. Catal. A, 151, 443-460 (1997). 5 Jacobsen, C.J.H., “Boron nitride:A novel support for ruthenium-based ammonia synthesis catalysts”, J. Catal., 200, 1-3 (2001). 6 Hinrichsen, O., Rosowski, F., Hornung, A., Muhler, M., Ertl, G., “The kinetics of ammonia synthesis over Ru-based catalysts”, J. Catal., 165, 33-44 (1997). 7 Siporin, S.E., Davis, R.J. “Use of kinetic models to explore the role of base promoters on Ru/MgO ammonia synthesis catalysts”, J. Catal., 225, 359-368 (2004). 8 Rossetti, I., Pernicone, N., Ferrero, F., Forni, L., “Kinetic study of ammonia synthesis on a promoted Ru/C catalyst”, Ind. Eng. Chem. Res., 45, 4150-4155 (2006). 9 Seetharamulu, P., Siva Kumar, V., Padmasri, A.H., David Raju, B., Rama Rao, K.S., “A highly active nano-Ru catalyst supported on novel Mg-Al hydrotalcite precursor for the synthesis of ammonia”, J. Mol. Catal. A Chem., 263, 253-258 (2007). 10 Liang, C.H., Wei, Z.B., Xin, Q., Li, C., “Ammonia synthesis over Ru/C catalysts with different carbon supports promoted by barium and potassium compounds”, Appl. Catal. A, 208, 193-201 (2001). 11 Forni, L., Molinari, D., Rossetti, I., Pernicone, N., “Carbon-supported promoted Ru catalyst for ammonia synthesis”, Appl. Catal. A, 185, 269-275 (1999). 12 McClaine, B.C., Davis, R.J., “Importance of product readsorption during isotopic transient analysis of ammonia synthesis on Ba-promoted Ru/BaX catalyst”, J. Catal., 211, 379-386 (2002). 13 Rarog-pilecka, W., Miskiewicz, E., Szmigiel, D., Kowalczyk, Z., “structure sensitivity of ammonia synthesis over promoted ruthenium catalysts supported on graphitized carbon”, J. Catal., 231, 11-19 (2002). 14 Strait, R.B., “Grassroots success with KAAP”, Nitrogen Methanol., 238, 37 (1999). 15 Zhu, H.L., Li, Z.B., Jing, S., Wu, X.L., Meng, X.B., Jia, Y., “Ammonia synthesis technology”, CN Pat., 1229058 (1999). 16 Barnett, D.J., Strait, R., “Pseudoisothermal ammonia process”, US Pat., 7435401 (2004). 17 Liu, H.Z., Li, X.N., “Effect of precursor phase composition of ammonia synthesis catalyst on reduction performance”, J. Chem. Ind. Eng. (China), 48 (3), 355-362 (1997). (in Chinese) 18 Han, W.F., Liu, H.Z., Zhu, H., “Effect of activated carbon on the dispersion of Ru and K over supported Ru-based catalyst for ammonia synthesis”, Catal. Commun., 8, 351-354 (2007). 1 9 Li, X.N., Chen, Y.Q., Liu, H.Z., “Explanation of the high activity and easy reduction of Fe1-xO based catalyst for ammonia synthesis”, Chin. J. Catal., 20 (5), 570-572 (1999). (in Chinese) 20 Pernicone, N., Ferrero, F., Rossetti, I., Forni, L., Canton, P., Riello, P., Fagherazzi, G., Signoretto, M., Pinna, F., “Wustite as a new precursor of industrial ammonia synthesis catalysts”, Appl. Cata. A Gen., 251, 121-129 (2003). 21 Izumi, Y., Iwata, Y., Aika, K., “Catalysis on ruthenium clusters supported on CeO2 or Ni-doped CeO2 :Adsorption behavior of H 2 and ammonia synthesis”, J. Phys. Chem., 100, 9421-9428 (1996). 22 Zheng, W.Q., Zhang, J., Xu, H.Y., Li, W.Z., “NH 3 decomposition kinetics on supported Ru clusters:Morphology and particle size effect”, Catal. Lett., 119, 311-318 (2007). 23 Song, Z., Cai, T, Hanson, J.C., Rodriguez, J.A., Hrbek, J., “Structure and reactivity of Ru nanoparticles supported on modified graphite surfaces:A study of the model catalysts for ammonia synthesis”, J. Am. Chem. Soc., 126, 8576-8584 (2004). 24 Liu, H.Z., Li, X.N., Hu, Z.N., Chen, Y.Q., Fu, G.P., “Optimal operation conditions of ammonia synthesis and catalytic activity for A301 catalyst”, Chin. Chem. Reac. Eng. Technol., 17 (1), 28-34 (2001). (in Chinese) |