• Ei tuloksia

Table 1.3.1 Catalyst classification as a function of catalytic activity temperature

domain 25

Table 3.3.1 Problem description of the target case 79

Table 3.3.2 Problem description of the retrieved cases 80 Table 3.3.3 Weights of importance corresponding to the target case features 81 Table 3.3.4 Problem description of the retrieved case 81 Table 3.3.5 Representation of supplementary comments in retrieved case 82 Table 4.3.3.1 Values of the main operating parameters used in the simulations 108 Table 6.1 The calculated values of the kinetic parameters of the adsorption,

desorption, and reduction reaction 148

References

[1] Kurvits T and Marta T, Canada. Environ. Pollut., 102, p.187, (1998) [2] Fawler D, Fertilising the atmosphere with fixed nitrogen, the roles of fossil

combustion and agriculture. Institute of Terrestrial Ecology, Edinburgh Research Station. The 22ndMacaulay Lecture, May 14th, (1998)

(http://library.wur.nl/wda/dissertations/dis3871.pdf)

[3] US EPA, National air pollutant emission trends, 1900–1998. Environmental Protection Agency, Office of Air Quality Planning and Standards, Research Triangle Park, NC, USA, EPA-454/R-00-002, March (2000)

(http://www.epa.gov/ttn/chief/publications.html)

[4] Bradford M, Grover R and Paul P, Chem. Eng. Prog., 98, p. 42 (2002)

[5] Princiota T.F., Stationary source NOx control technology overview. Proceedings of the US-Dutch International Symposium on Nitrogen oxides, Maastricht, The Nederlands. Elsevier (1982)

[6] Davis W. T., Pakrasi A., Buonicore A. J., Air pollution engineering manual, Van Nostrand Reinhold, New York, (1992)

[7] Bradford M, Grover R and Paul P, Chem. Eng. Prog., 98, p.38 (2002) [8] Javed T.M., Irfan N., Gibbs B.M., J. Environ. Manag., in press, (2006) [9] Wang CB, Yeh TF and Lin HK, J. Hazard Mater, 92, p. 241, (2002)

[10] Broqvist P., Gronbeck H., Friedell E., Panas I., Catal. Today, 96(1-2), p. 71, (2004) [11] Pham EK and Chang SG, Nature, 369, p. 139–141 (1994)

[12] ChuH, ChienTW and TwuBW, J. Hazard Mater, 84, p. 241 (2001)

[13] Jethani K.R., Suchak N.J., Joshi J.B., Gas Sep. & Purific., 4(1), p. 8, (1990)

[14] Rosenberg H.S., Curran L.M., Slack A.V., Ando J., Oxley H.J., Prog. Energy and Comb. Sci., 6(3), p. 287, (1980)

[15] Jin Y., Veiga M. C., Kennes C., J. Chem. Technol. Biotechnol., 80, p. 483 (2005) [16] Manconi I., van der Maas P., Lens P.N.L, Nitric oxide, 15(1), p. 40, (2006) [17] YanP, FujiwaraM, ZhouY and IshidaM, J. Electrost., 51–52, p. 266, (2001) [18] Sun M.Y., Nam In-Sik, Chem. Eng. J., 85(1), p. 87-97, (2002)

[19] Yan P., Fujiwara M., Zhou Y., Ishida M., J. Electrost., 51–52, p. 266 (2001) [20] Sultana A., Habermacher D.D., Kirschhock C.E.A., Martens J.A., Appl. Catal. B:

Environ., 48(1), p. 65-76, (2004)

[21] Shelef M., Otto K., Gandhi H., Atmos. Environ., 3(2), p. 107, (1967) [22] Kummer J.T., Prog. Energy Combust. Sci., 6(2), p. 177, (1980) [23] H. Bosch, F. Jansen, Catal. Today, 2(3), p. 369, (1988)

[24] P. Forzatti, L. Lietti, Heterogen. Chem. Rev., 3, p. 33, (1996)

[25] G. Busca, L. Lietti, G. Ramis, F. Berti, Appl. Catal. B, 18, p. 1, (1998) [26] B. Witchtelova, Z. Sobaik, J. Dedecek, Appl. Catal. B, 41, p. 97, (2003)

[27] J. G. M. Brandin, L. A. H. Anderson, C. U. Odenbrand, Catal. Today, 4, p. 187, (1989)

[28] J. R. Klovsky, P. B. Koradia, C. T. Lim, Ind. Eng. Chem. Prod. Res. Dev., 19, p.

218, (1990)

[29] S. W. Ham, H. Choi, I. S. Nam, Y. G. Kim, Catal. Today, 11, p. 611, (1992) [30] A. Corma, V. Fornes, E. Palomares, Appl. Catal. B, 11, p. 233, (1997) [31] J. Eng, C. Bartholomew, J. Catal., 171, p. 14, (1997)

[32] M. H. Kim, U. C. Hwang, I. S. Nam, Y. G. Kim, Catal. Today, 44, p. 57, (1998) [33] S. Kieger, G. Delahay, B. Coq, Appl. Catal. B, 25, p.1, (2000)

[34] R. O. Long, R. T. Yang, J. Catal., 207, p. 274, (2002)

[35] Y. Nishikawa, T. Maeshima, T. Itoh, S. Kamiyama, US Patent 5041272 (1991) [36] I. S. Nam, J. W. Eldridge, J. R. Kittrell, Ind. Eng. Chem. Proc. Res. Dev., 25, p. 192,

(1986)

[37] S. W. Ham, H. Choi, I. S. Nam, Y. G. Kim, Ind. Eng. Chem. Res., 34, p. 1616, (1995)

[38] G. G. Park, H. J. Chae, I. S. Nam, J. W. Choung, K. H. Choi, Micropor. Mesopor.

Mater., 48, p. 337, (2001)

[39] L. Ren, T. Zhang, D. Liang, C. Xu, J. Tang, L. Lin, Appl. Catal. B, 35, p. 317, (2002)

[40] J. Shibata, Y. Takada, A. Shichi, S. Satokawa, A. Satsuma, T. Hattori, Appl. Catal.

B, 54, p. 137, (2004)

[41] J. Shibata, Y. Takada, A. Shichi, S. Satokawa, A. Satsuma, T. Hattori, J. Catal., 222, p. 368, (2004)

[42] C. Shi, M. Cheng, Z. Qu, X. Yang, X. Bao, Appl. Catal. B, 36, 173, (2002) [43] A. Danner; K. K. Unger, Chem.-Ing. Techn., 62, p. 487, (1990)

[44] J. C. Jansen, W. Nugroho, H. van Bekkum, Proc., 9th Intern. Zeolite Conf. (von Ballmoos, R.; Higgins, J.B.;Treacy,M.M. J., Eds.), Montreal, p. 247, (1992) [45] Iwamoto M, Hamada H. Catal. Today; 17, p. 94, (1991)

[46] Li Y, Armor JN. Appl. Catal. B, 2, p. 239, (1993)

[47] Inaba M, Kintaichi Y, Haneda M, Hamada H., Catal. Lett.; 39, p. 269. (1996) [48] Hamada H, Kintaichi Y, Inaba M,Tabata M,Yoshinari T, Tsuchida H. Catal. Today;

29, p. 53, (1996)

[49] Li Y, Slager TL, Armor JN., J. Catal.; 150, p. 388, (1994)

[50] Inomata, M., A. Miyamoto, and Y. Murakami, J. Catal., 62, p. 140 (1980) [51] Topsoe, N. Y., J. Catal., 128, p. 499 (1991)

[52] Topsoe, N. Y., Science, 265, p. 1217 (1994)

[53] Duffy, B. L.. H. E. Curry-Hyde, N. W. Cant, and P. F. Nelson, J. Phys. Chem., 98, p.

7153 (1994a)

[54] Duffy, B. L.. H. E. Curry-Hyde, N. W. Cant, and P. F. Nelson, Catal. Lett., 28, p.

167 (1994b)

[55] Ozkan, U. S., Y. Cai. and M. W. Kumthekar, J. Catal., 149, p. 390 (1994) [56] Topsoe, N. Y., H. Topsoe, and J. A. Dumesic, J. Catal., 151, p. 266 (1995a) [57] Topsoe, N.Y., Dumesic, J.A., Topsoe, H., J. Catal, 151, p. 241, (1995b)

[58] Lietti, L., P. Forzatti, and F. Bregani, Ind. Eng. Chem. Res., 35, p. 3884, (1996) [59] Hu, S. L., and T. M. Apple, J. Catal.,158, p. 199, (1996)

[60] Pinaeva, L. G., A. P. Suknev, A. A. Budneva, E. A. Paukshtis, and B. S.

Balzhinimaev, J. Mol. Catal. A Chem., 112, p. 115, (1996) [61] Ramis, G.. L. Yi, and G. Busca, Catal. Today, 28, p. 373, (1996)

[62] Dumesic, J. A,. N. Y. Topsoe, H. Topsoe, Y. Chen, and T. Slabiak, J. Catal., 163, p.

409, (1996)

[63] Gilardoni, F., J. Weber, and A. Baiker, J. Phys. Chem. A, 101, p. 6069 (1997b) [64] Kumthekar, M. W., and U. S. Ozkan, Appl. Cafal. A: General, 151, p. 289, (1997) [65] Beeckman, J. W.. and L. L. Hegedus, Ind. Eng. Chem. Rex, 30, p. 969, (1991) [66] Tronconi, E., and P. Forzatti, AIChE J., 38, p. 201, (1992)

[67] Heinisch, R.. A. Rogowski, and E. Schiitt, Chem. Ing. Tech., 64, p. 1038, (1992) [68] Tronconi, E., Catal. Today, 34, p. 421, (1997)

[69] Bosch, H., Janssen, F., Catal. Today, 2, p. 369, (1988)

[70]. Odriozola, J.A., Heinemann, H., Somorjai, G.A.., Garcia de la Banda, J. F., Pereira, P., J. Catal., 119, p. 71, (1989)

[71] Went, G.T., Leu, L.J., Rosin, R.R., Bell, A.T., J. Catal., 134, p. 492, (1992) [72] Topsoe, N.Y., Topsoe, H., Catal. Today, 2, p. 77, (1991)

[73] Miyamoto, A., Yamazaki, Y., Hattori, T., Inomata, M., Murakami, Y., J. Catal., 74, p. 144, (1982)

[74] Gasior, M., Haber, J.,Machej, T., Czeppe, T., J. Mol. Catal., 43, p. 359, (1988) [75] Takagi, M., Kawai, T., Soma, M., Onishi, T., Tamuru, K., J. Catal., 57, p. 528

(1979)

[76] Takagi, M., Kawai, T., Soma, M., Onishi, T., Tamuru, K., J. Catal., 57, p. 528 (1977)

[77] Inomata, M., Miyamoto, A., Murakami, Y., J. Catal., 62, p. 140, (1980)

[78] Miyamoto, A., Kobayashi, K., Inomata, M., Murakami, Y., J. Phys. Chem., 86, p.

2945, (1982)

[79] Bosch, H., Janssen, F.J.J.G., Oldenziel, J. R. H., Appl. Catal., 25, p. 239, (1986) [80] Janssen, F. J. J. G., van der Kerkhof, F. M. G., Bosch, H., Ross, J. R.H., J. Phys.

Chem., 91, p. 5921, (1987)

[81] Ramis, G., Busca, G., Lorenzelli, V., Forzatti, P., Appl. Catal., 64, p. 243, (1990) [82] Chen, J. P., Yang, R. T., J. Catal., 125, p. 411, (1990)

[83] Topsoe, N. Y., J. Catal., 128, p. 499, (1991)

[84] Dumesic, J. A., Topsoe, N. Y., Slabiak, T., Morsing, P., Clausen, B. S., Tornqvist, E., Topsoe, H., Proceedings, 10th International Congress on Catalysis, Budapest, 1992, p. 1325, Akademiai Kiado, Budapest, (1993)

[85] Dumesic, J. A., Topsøe, N.-Y., Topsøe, H., Chen, Y., Slabiaky, T., J. Catal., 163, p.

409, (1996)

[86] Nomura, M., Asakura, K., Kaminaya, U., Matsushita, T., Kohara, K., and Kuroda, H., Bull. Chem. Soc. Jpn., 55, p. 3911, (1982)

[87] Chen, J. P., Yang, R. T., Buzanowiski, M. A., and Cichanowicz, J. E., Ind. Eng.

Chem. Res., 29, p. 1431, (1990)

[88] Odriozola, J. A., Heinemann, H., Sormorjai, G. A., Banda, J. F., and Pereira, P., J.

Catal., 119, p. 71, (1989).

[89] Bodke, A.S., Bharadwaj, S.S., Schmidt, L.D., J. Catal., 179, p. 138, (1998).

[90] Hohn, K.L., Schmidt, L.D., Appl. Catal. A: Gen., 211, p. 53, (2001) [91] Basini, L., Guarinoni, A., Aragno, A., Catal. Today, 190, p. 284, (2000)

[92] Basini, L., Aasberg-Petersen, K.K., Guarinoni, A., Ostberg M., Catal. Today, 64, p.

9, (2001)

[93] Bizzi, M., Basini, L., Saracco, G., Specchia, V., Ind. Eng. Chem. Res., 42, p. 62, (2003)

[94] Bizzi, M., Saracco, G., Schwiedernoch, R., Deutschmann, O., AIChE J., 50, p.

1289, (2004)

[95] Maestri, M., Beretta, A., Groppi, G., Tronconi, E., Forzatti, P., Catal. Today, 105 p. 709, (2005)

[96] Cybulski, A., Moulijn, J. A., Catal. Rev.-Sci. Eng., 36(2), p. 179, (1994) [97] Cybulski, A., Moulijn, J. A., Structured catalysts and reactors. New York: M.

Dekker, (1998)

[98] Eigenberger, G. (1992), Fixed-bed reactors, In Ullmann's encyclopedia of industrial chemistry, vol. B4 (p. 199). Weinheim: VCH Publs.

[99] Eigenberger, G. Reaction engineering. In: G. Ertl, H. Knozinger, & J. Weitkamp (Eds.), Handbook of heterogeneous catalysis, vol. 3 (p. 1399-1425). Weinheim:

Wiley-VCH, (1997)

[100] Cybulski, A., Moulijn, J. A., Chem. Eng. Sci., 49, p. 19, (1994) [101] Groppi, G., Tronconi, E., AIChE J., 42, p. 2382, (1996)

[102] Groppi, G., Tronconi, E.. Kinetika i Kataliz, 39, p. 701, (1998)

[103] Groppi, G., Cristiani, C., Valentini, M., Tronconi E.. Development of novel structured catalytic reactors for highly exothermic reactions. In: A. Corma, F. V.

Melo, S. Mendioroz, & J. L. G. Fierro (Eds.), Proceedings of 12th International congress on catalysis, Granada, Spain, Studies in surface science and catalysis, vol.

130 (p. 2747). Amsterdam: Elsevier, (2000)

[104] 12. Enrico Tronconi, Gianpiero Groppi, Chem. Eng. Sci., 55, p. 6021, (2000) [105] Groppi, G., Tronconi, E., Chem. Eng. Sci., 55, p. 2161, (2000)

[106] Groppi, G., Cristiani, C., Valentini, M., Tronconi E. Development of novel structured catalytic reactors for highly exothermic reactions. In: A. Corma, F. V.

Melo, S. Mendioroz, & J. L. G. Fierro (Eds.), Proceedings of 12th International congress on catalysis, Granada, Spain, Studies in surface science and catalysis, vol.

130 (p. 2747). Amsterdam: Elsevier (2000)

[107] Cottrell, F. G., U. S. Patent 2, 171, p. 733, (1938).

[108] Matros, Y. H., & Bunimovich, G. A.. Catal. Rev.-Sci. Eng., 38, p. 1, (1996).

[109] Kolios, G., Frauhammer, J., & Eigenberger, G., Chem. Eng. Sci., 55, p. 5945, (2000)

[110] Agar, D. W., & Ruppel, W., Chem. Eng. Sci., 43, p. 2073, (1988)

[111] Kallrath, J., Schreick, A., Brokmueller, B., Agar, D. W., Watzenberger, O., Falle, S. A. E. G., & Gidding, J. R., Comp. Chem. Eng., 18, p. 331, (1994)

[112] Falle, S. A. E. G., Kallrath, J., Brokmueller, B., Schreick, A., Gidding, J. R., Agar, D. W., & Watzenberger, O., Chem. Eng. Communic., 135, 185-211, (1994)

[113] Noskov, A., Bobrova, L., Bunimovich, G., Goldman, O., Zagoriuko A., & Matros, Y., Catal. Today, 27, p. 315, (1996)

[114] Synder, J. D., & Subramanian, B., Chem. Eng. Sci., 53, p. 727, (1998) [115]Yeong, J., & Luss, D., Chem. Eng. Sci., 58, p. 1095, (2003)

[116] Brinkmann, M., Barresi, A. A., Vanni, M., & Baldi, G. Catal. Today, 47, p. 263, (1999)

[117] Velardi, S. A., & Barresi, A. A., Chem. Eng. Sci., 57, p. 2995, (2002)

[118] Fissore, D., Barresi, A. A., & Baldi, G., Ind. & Eng. Chem. Res., 42, p. 2489, (2003)

[119] Fissore D, Barresi AA, Botar-Jid CC., Chem. Eng. Sci.,61, p. 3409, (2006) [120] Vanden Bussche, K. M., & Froment, G. F., Can. J. of Chem. Eng., 74(5), p. 729,

(1996)

[121] Broughton, D. B., U.S. Patent No. 2, 985, 589, (1961) [122] Humprey, J. L., Chem. Eng. Prog., 91, p. 31, (1995)

[123] Rosset, A. J., R. W. Neuzil, and D. B. Broughton, ‘‘Industrial Applications of Preparative Chromatography,’’ NATO ASI Percolation Processes: Theory and Applications, A. E. Rodrigues and D. Tondeur, eds., Sithoff and Noordhoff, Alphen aan den Rijn, p. 249, (1981)

[124] Johnson, J. A., ‘‘Sorbex: Continuing Innovation in Liquid Phase Adsorption,’’

NATO ASI Adsorption: Science and Technology, A. E. Rodrigues et al., eds., Kluwer, Amsterdam, p. 383, (1989)

[125] Johnson, J. A., and R. G. Kabza, ‘‘Sorbex: Industrial-Scale Adsorptive

Separation,’’ Preparative and Production Scale Chromatography, G. Ganetsos and P. E. Barker, eds., Dekker, New York, p. 257, (1993)

[126] Keller, G. E., Chem. Eng. Prog., 91, p. 56, (1995)

[127] Ruthven, D. M., C. B. Ching, Chem. Eng. Sci., 44, p. 1011, (1989)

[128] Storti, G., M. Masi, S. Carra, M. Morbidelli, Chem. Eng. Sci., 44, p. 1329, (1989) [129] Ernst, U. P. and J. T. Hsu, Ind. Eng. Chem. Res., 28, p. 1211, (1989)

[130] Zhong, G., and G. Guiochon, Chem. Eng. Sci., 51, p. 4307, (1996)

[131] Strube, J., U. Altenhoner, M. Meurer, H. Schmidt-Traub, and M. Schulte, J.

Chromatogr. A, 769, p. 81, (1997)

[132] Pais, L. S., J. M. Loureiro, A. E. Rodrigues, AIChE J., 44, p. 561, (1998) [133] Haynes, T. N., & Caram, H. S., Chem. Eng. Sci., 49(24B), p. 5465, (1994)

[134] Brinkmann, M., Barresi, A. A., Vanni, M., & Baldi, G., Catal. Today, 47(1–4), p.

263, (1999)

[135] Boreskov, G.K., Matros, Yu.Sh., Kiselev, O.V., Kinet. Katal., 20, p. 636, (1979) [136] Boreskov, G.K., Bunimovic, G.A., Matros, Yu.Sh., Ivanov, A.A., Kinet. Katal.,

23, p. 402, (1982)

[137] Boreskov, G. K., & Matros, Y. S., Catal. Rev. Sci. and Eng., 25(4), p. 551, (1983) [138] Matros, Yu.Sh. and Bunimovich, G.A., Catal. Rev.-Sci. Eng., 39, 1-68, (1996) [139] Frauhammer, J., Eigenberger, G., Hippel, L.v. and Arntz, D., Chem. Eng. Sci., 54,

p. 3661, (1999)

[140] Dünnebier, G., Weirich, I. and Klatt, K.-U., Chem. Eng. Sci., 53, p. 2537, (1998) [141] Alpay, E., Kenney, C.N. and Scott, D.M., Chem. Eng. Sci., 48, p. 3173, (1993) [142] Seiler, H. and Emig, G. Reduction-oxidation-cycling in a fixed bed reactor with

periodic flow reversal. In Froment, G.F. and Waugh, K.C. (Eds). Dynamics of surfaces and reaction kinetics in heterogeneous catalysis. Elsevier, Amsterdam, The Netherlands, p. 479-488, (1997)

[143] Gilmore R., Catastrophe Theory for scientists and Engineers, Wiley, New-York, (1981)

[144] Matros, Y. S., Chem. Eng. Sci., 45, p. 2097, (1990)

[145] Boreskov, G.K. and Matros, Yu.Sh., Catal. Rev.-Sci. Eng., 25, p. 551, (1983) [146] Eigenberger, G. and Nieken, U., Int. J. Chem. Eng., 34, p. 4, (1994)

[147] Nieken, U., Kolios, G. and Eigenberger, G., Catal. Today, 20, p. 335, (1994) [148] van de Beld, B. and Westerterp, K. R., (1994), Chem. Eng. Tech., 17, p. 217,

(1994)

[149] Matros, Y. S., Sulphur, 183, p. 23, (1986)

[150] Haynes, T. N., Georgakis, C. and Caram, H. S., Chem. Eng. Sci. 47, p. 2927, (1992)

[151] Snyder, J. D. and Subramaniam, B., Proceedings of the 13th International

Symposium on Chemical Reaction Engineering. Reaction Engineering: Science and Technology, Book of Abstracts, (1994)

[152] Ruthven, D. M., Principles of Adsorption and AdsorptionProcesses. Wiley, New York., (1984)

[153]Yang, R. T., Gas Separation by Adsorption Processes. Butterworths, Boston, (1987) [154] Ray, A., Tonkovich, A. Y., Afis, R. and Carr, R. W., Chem. Eng. Sci., 45, p. 2431,

(1990)

[155] Eigenberger, G., & Nieken, U., Chem. Eng. Sci., 43(8), p. 2109, (1988) [156] Rehacek, J., Kubicek, M. and Marek, M., Chem. Eng. Sci. 47, p. 2897, (1992)

[157] Matros, Yu. Sh., Catalytic Processes under Unsteady State Conditions, Elsevier, Amsterdam (1989). Matros, Yu. Sh., ”Performance of Catalytic Processes under Unsteady Conditions,” Chem. Eng. Sci., 45, p. 2097, (1990)

[158] Nieken, U., Kolios, G. and Eigenberger, G., AIChE J., 41, p. 1915, (1995) [159] Boreskov, G. K., G. A. Bunimovich, Yu. Sh. Matros, 0. V. Kiselev, and I. A.

Zolotarski, Doklady Akademii Nauk SSR, 268, p. 646, (1983)

[160] Ivanov, Y. V, Noskov, A. S., Matros, Y. S. and Buminovich, G. A., Theoret.

Fundam. Chem. Eng., 26, p. 228. (1992)

[161] Haynes T. N., Georgakis C., Caram H. S., The design of reverse flow reactors for catalytic combustion system, Chem. Eng. Sci., 50, p. 401, (1995)

[162] Gawdzik, A. and Rakowski, L., Dynamic properties of the adiabatic tubular reactor with switch flow., Chem. Eng. Sci., 43, p. 3023, (1988)

[163] Gawdzik, A. and Rakowski, L., Comput. Chem. Eng., 13, p. 1165, (1989) [164] Bhatia, S. K., Analysis of catalytic reactor operation with periodic flow reversal.

Chem. Eng. Sci. 46, p. 361, (1991)

[165] Gupta, V. K. and Bhatia, S. K., Comput. Chem. Eng., 15, p. 229, (1991) [166] Eigenberger, G. and Nieken, U., Chem. Eng. Sci., 43, p. 2109, (1988) [167] Matros, Y. S., Chem. Eng. Sci. 45, p. 2097, (1990)

[168] Nieken, U., Kolios, G. and Eigenberger, G, Chem. Eng. Sci., 49(24), p. 5507, (1994)

[169] Nieken, U., Ph.D. thesis, University of Stuttgart, Stuttgart, Germany, (1993) [170] Uppal, A., Ray, W. H. and Poore, A. B., Chem. Eng. Sci., 31, p. 205, (1976) [171] Balakotaiah, V. and Luss, D., Chem. Eng. Sci., 48, p. 1709, (1983)

[172] Salinger, A. G., Aris, R., Derby, J. J., AIChE J. 40, p. 991, (1994) [173] Salinger, A. G., Eigenberger, G., Chem. Eng. Sci., 51, 4903, (1996) [174] Salinger, A. G., Eigenberger, G., Chem. Eng. Sci., 51, 4915, (1996) [175] Keller, H. B., Numerical solutions of bifurcation and nonlinear eigenvalue

problems. In Applications of Bifurcation Theory (Edited by Rabinowitz, P. H.), pp.

159-385. Academic Press, New York, (1977)

[176] Doedel, E. J. and Heinemann, R. F., Chem. Eng. Sci., 38, p. 1493, (1983) [177] Seydel, R. and Hlavacek, V., Chem. Eng. Sci., 42, p. 1281, (1987)

[178] Seydel, R. and Hlavacek, V., Chem. Eng. Sci., 42, p. 2927, (1987)

[179] Kevrekidis, I. G., Aris, R. and Schmidt, L. D., Chem. Eng. Sci., 41, p. 1263, (1986) [180] Kevrekidis, I. G., Aris, R. and Schmidt, L. D., Chem. Eng. Sci., 41, p. 1549, (1986) [181] Gogolides, E., Sawin, H. H. and Brown, R. A., Chem. Eng. Sci., 47, p. 3839, (1992) [182] Croft, D. T. and Levan, M. D., Chem. Eng. Sci., 49, p. 1821, (1994)

[183]Croft, D. T. and Levan, M. D., Chem. Eng. Sci., 49, p. 1831, (1994) [184] Chumakova, N. A,, Matros, Yu. Sh., Teoreticheskie Osno y Khimicheskoi

Tekhnologii, 25, p. 369, (1991)

[185]Nieken, U., G. Kolios, and G. Eigenberger, Catal. Today, 20, p. 355, (1994) [186] Sapundzhiev, C., Chaouki, J., Guy, C., Klvana, D., Chem. Eng. Commun., p. 125,

(1993)

[187] Snyder, J. D., Subramaniam, B., Chem. Eng. Sci., 48, p. 4051, (1993) [188] Nieken, U., G. Kolios, and G. Eigenberger, AIChE J., 41, p. 1915, (1995) [189] Khinast, J., Luss, D., AIChE J., 44, p. 2034, (1997)

[190] Rehacek, J., Kubicek, M., Marek, M., Computer Chem. Eng., 22, p. 283, (1998) [191] Iooss, G., Joseph, D. D., Elementary Stability and Bifurcation Theory, 2nd ed.,

Springer, New York, (1990)

[192] Khinast J., Gurumoorthy A., and Luss D., Complex Dynamic Features of a Cooled Reverse-Flow Reactor, AIChE J., 44(5), p. 1128, (1998)

[193] Sheintuch, M., Shvartsman, S., Chem. Eng. Sci., 49, p. 5315, (1994) [194] Sheintuch, M., Nekhamkina, O., AIChE J. , 45(2), p. 398, (1999) [195] Sheintuch, M., Chem. Eng. Sci., 44, p. 1081, (1989)

[196] Middya, U., Luss, D., Sheintuch, M., J. Chem. Phys., 100, p. 3568, (1994) [197] Ströhlein G., Assunção Y., Dube N., Bardow A., Mazzotti M., Morbidelli M.,

Chem. Eng. Sci., 61(16), p. 5296, (2006)

[198] Paredes G., Mazzotti M., J. of Chromatography A, in press, online 22 December (2006)

[199] Tamaru K., Catalysis: Science and Technology, Springer-Verlsg, Berlin, p. 87-183, (1983)

[200] Vajda S., Robitz H., J. Phys Chem., 92, p. 701, (1988) [201] Vajda S., Robitz H., J. Phys Chem., 98, p. 5265, (1988)

[202] Tamaru K., Adv. Catal., 15, p. 65, (1964) [203] Mirodatos C., Catal. Today, 9, p. 83, (1991)

[204] Kobayashi H., Kobayashi M., Catal. Rev. – Sci. Eng., 10, p. 139, (1974) [205] Creten G., Lafyatis D.S., Forment G.F., J. Catal., 156, p. 151, (1995)

[206] Gleaves J.T., Ebner J.R., Kuechler T.C., Catal. Rev.- Sci. Eng., 30, p. 49, (1988) [207] Efstathiou A.M., Chafik T., Bianchi D., Bennet C.O., J. Catal., 148, p. 224, (1994) [208] Bakakos M.W., Chuang S.S.C., J. Catal., 151, p. 253, (1995)

[209] Nibbelke R.H., Scheerova J., de Croon M.H.J.M., Marin G.B., J. Catal., 148, p.

224, (1994)

[210] Dekker F.H.M., Klopper G., Bliek A., Kapteijin F., Moulijin J.A., Chem. Eng. Sci., 49, p. 4375, (1995)

[211] Happel J., Walter E., Lecourtier Y., J.Catal., 123, p. 12, (1990)

[212] Dieterich E., Sorescu G., Eigenberger G., Chem. Ing. Tech., 64, p. 136, (1992) [213] Dekker F.H.M., Chem. Eng. Sci., 50, p. 3573, (1995)

[214] Shisseer W.E., Numerical method of lines, Academic Press, San Diego, CA, (1991) [215] Hlavaek, V., & Hofmann, H., Chem. Eng. Sci., 25, p. 173, (1970)

[216] Christofides, P.. Nonlinear and robust control of partial differential equation systems: methods and applications to transport-reaction processes. Boston:

Birkhauser. (2001)

[217] Gay, D. H., & Ray, W. H., Chem. Eng. Sci., 50(10), p. 1519, (1995) [218] Cavin, K. R., & Tandon, C. S., Automatica,13, p. 611, (1977)

[219] Dochain, D., Babary, J. P., & Tali-Maamar, N. Automatica, 28, p. 873, (1992) [220] Omer, M., Automatica, 30, p. 1785, (1994)

[221] Toure, Y., Biston, J., & Gilles, G., Chem. Eng. Sci., 49, p. 61., (1994)

[222] Patwardhan, A. A., Wright, T. G., & Edgar, T. F., Chem. Eng. Sci., 47, p. 721, (1992)

[223] Mandler, A. J., Morari, M., & Seinfeld, J. H., Chem. Eng. Sci., 41, p. 1577, (1986).

[224] Augerinos, P. E., & Papageorgiou, N. S., Osaka Journal of Math., 27, p. 745, (1990)

[225] Christofides, D. P., Chem. Eng. Sci., 53, p. 2949, (1998)

[226] Avramenko Y., Kraslawski A., Comput. Chem. Eng., 30(3), p. 548, (2006) [227] Nakayama T., Tanaka K., J. Chem. Inform. Comput. Sci. 39, p. 819, (1999) [228] Chaput, A. B., Chem. Eng. Progr., p. 57, (1999)

[229] Roda I. R., Poch M., Sanchez-Marre M., Cortes U., Lafuente J., Chem. Eng. Progr., p. 39, (1999)

[230] Sanchez M., Cortes U., Roda I., Poch M., Lafuente J. Microcomputer Civil Eng., 12(4), p. 251, (1997)

[231] King J. M. P., Banares-Alcantara R., Manan Z. A., Environ. Mod. Soft., 14(5), p.

359, (1999)

[232] Kraslawski, A., Lyssov, I., Kudra, T., Borowiak, M., Nystrom, L. Comput. Chem.

Eng., 23 (Suppl.), p. 707, (1999)

[233] Kraslawski, A., Pedrycz, W., Nystrom, L. Fuzzy neural network as instance generator for case-based reasoning system: An example of selection of heat exchange equipment in mixing tanks, Nuural computing and application: vol. 8.

London: Springer, p.106–113, (1999)

[234]Pajula, E., Seuranen, T., & Hurme, M., Synthesis of separation processes by using case-based reasoning, computers and chemical engineering: vol. 25. Elsevier Science B.V, p. 775–782, (2001)

[235] Surma, J., & Braunschweig, B., Appl. Art. Int., 9(4), p.385, (1996) [236] Avramenko, Y., Kraslawski, A., Chem.Eng. Proc., .44(6), p. 609, (2005)

[237] Kraslawski A., Koiranen T., Nyström L., Comput. Chem. Eng., 19 (Suppl.1), p.

821, (1995)

[238] Jeng B.C., Liang T.P., Expert systems with applications, 8(1), p.135, (1995) [239] Barletta, R. AI Expert, 6(8), p. 43, (1992).

[240] Hammond, K.J., Case-based planning: Viewing planning as a memory task.

Boston, MA: Academic Press., (1989)

[241] Kolodner, J.L., AI Magazine, 12(2), p. 52, (1991) [242] Simoudis, E., IEEE Expert, 7, p. 7, (1992)

[243] Slade, S., AI Magazine, 12(1), p. 42, (1991) [244] Stotler, R.H., AI Expert, 7(3), p. 44 (1992)

[245] Schalkoff, R. J., Pattern recognition: Statistical, structural, and neural approach.

John Wiley and Sons Inc., (1992)

[246] Kolodner, J. L. Case-based reasoning. San Mateo, CA: Morgan Kaufmann., (1993) [247] Kolodner, J.L., Proceedings of the case-based reasoning workshop San Mateo, CA:

Morgan Kaufmann., p. 233, (1988)

[248] Wall, R.S., Donahue, D., & Hill, S. Proceedings of the Case-based Reasoning Workshop, San Mateo, CA: Morgan Kaufmann, p. 447, (1988)

[249] Cain, T., Pazzani, M.J., Silverstein, G., Proceedings of the Case-based Reasoning Workshop San Mateo, CA: Morgan Kaufmann., p.191, (1991)

[250] Seifert, C.M. Proceedings of the 1988 AAAI Case-based Reasoning Workshop, Minneapolis, MN., p. 120, (1988)

[251] Maher, M. L., Bala Balachandran, M., & Zhang, D. M. Case-based reasoning in design. Lawrence Erlbaum Associates Inc. (1995)

[252] Balakotaiah V., Dommeti S., Chem. Eng. Sci., 54, p. 1621, (1999) [253] Vortmeyer D., Schaefer R. J., Chem. Eng. Sci., 29, 484, (1974) [254] Gilles E.D., Chem. Eng. Sci., 29(5), p. 1211, (1974)

[255] Baiker A., Epple D., Appl. Catal., 22, 1, p. 55, (1986)

[256] Pinjala, V., Chen, Y. C., Luss, D., AIChE J., 34, 1663, (1988) [257] Kiselev and Matros, Fizika Goreniya Vzryva, 16, p. 25, (1980)

[258] Matros, Yu. Sh., Catalytic processes under unsteady state conditions. Amsterdam:

Elsevier (1989)

[259] Purwono S., Budman H., Hudgins R. R., Silveston P. L., Matros Y. S., Chem. Eng.

Sci., 49, p. 5473, (1994)

[260] Gosiewski, K., & Sztaba, R. (1990). Simplified design of reverse flow

nonstationary reactor for low reactant concentration. In Yu. Sh. Matros, Unsteady state processes in catalysis (p. 629–635). Utrecht-Tokyo: VNU Science Press.

[261] Burghardt A., Berezowski M., Jacobsen E.W., Chem. Eng. Sci., 38(1), p. 19, (1999) [262] Khinast, J., Jeong, Y. O, & Luss, D., Am. Inst. of Chem. Eng. J., 45, p. 2, (1999) [263] Silveston, P. L., Hudgins, R. R., Bogdashev, S., Vernijakovskaja, S., & Matros, Yu.

Sh.. In Yu. Sh. Matros, Unsteady State Processes in Catalysis Utrecht-Tokyo: VNU Science Press., (1990)

[264] Thullie, J., & Burghardt, A., Application of the flow reversal reactor to the methanol synthesis. In Yu. Sh. Matros, Unsteady State Processes in Catalysis (p.

687–692). Utrecht-Tokyo: VNU Science Press., (1990)

[265] Bhatia, S. K. Analysis of catalytic reactor operation with periodic flow reversal.

Chem. Eng. Sci., 46(1), p. 361, (1991)

[266] Sapundzhiev, C., Bunimovich, G. A., Drobishevich, V. I., Grozev, G., Yausheva, L. V., Matros, Yu. Sh., & Elenkov, D., Theor. Fund. Chem. Eng., 22, p. 349, (1988) [267] Young, B., Hildebrandt, D., & Glasser, D., Chem. Eng. Sci., 47, p.1825, (1992) [268] van de Beld, L., & Westerterp, K. R., Am. Inst. of Chem. Eng. J., 42, p. 4, (1996) [269] Vanden Bussche, K. M., Neophytides, S. N., Zolotarski, I. A., & Froment, G. F.,

Chem. Eng. Sci., 48, p. 3335, (1993)

[270] Chaouki J., Gui G., Sapundzhiev C., Kusohorski D., Klvana D., Ind. Eng. Chem.

Res., 33, p. 2957, (1994)

[271] Matros, Yu. Sh., Noskov, A. S., & Chumachenko, V. A., Chem. Eng. Prog., 32, p.

89, (1993)

[272] Cittadini M., Vanni M., Barresi A.A., Baldi., Proceedings of ICheaP-4: The Fourth Italian Conference on Chemical and Process Engineering; Firenze, Italy, (May 2-5), p. 631, (1999)

[273] Bunimovich, G. A., Strots, V. O., & Goldman, O. V., Theory and industrial application of SO2 oxidation reverse-process for sulphuric acid production. In Yu.

Sh. Matros, Unsteady-state processes in catalysis (pp. 7–24). Utrecht-Tokyo: VNU Science Press., (1990)

[274] Rehacek, J., Kubicek, M., & Marek, M., Chem. Eng. Sci., 47, p. 2897, (1992) [275] Gawdzik, A., & Rakowski, L., Comput. Chem. Eng., 13(10), p. 1165, (1989) [276] Gosiewski, K., Chem. Eng. Process., 32, p. 233, (1993)

[277] Sapundzhiev, C., Grozev, G., & Elenkov, D., Chem. Eng. Technol., 13, p. 131, (1990)

[278] Sapundzhiev, C., Grosev, G., & Elenkov, D., Chem. Eng. Technol., 14, p. 209, (1991)

[279] Xiao, W. D., & Yuan, W. K., Chem. Eng. Sci., 49(21), p. 3631, (1994)

[280] Kiselev, O. V., Matros, Yu. Sh., & Chumakova, N. A., Phenomena of heat front propagation in fixed catalyst bed. In Yu. Sh. Matros, Propagation of heat wa6es in heterogeneous media. U.S.S.R: Novosibirsk, (1988)

[281] Gupta, V. K., & Bhatia, S. K., Comput. Chem. Eng., 15(4), p. 229, (1991) [282] Salomons S., Hayes R. E., Poirier M., Sapoundjiev H., Catal. Today, 83, p. 59,

(2003)

[283] Cottrell, F. G., U. S. Patent 2, 171, 733. (1938)

[284] Agar, D. W, & Ruppel, W., Chem. Eng. Sci., 43, p. 2073, (1988) [285] Yong, J., & Luss, D., Chem. Eng. Sci., 58, p. 1095, (2003)

[286] Noskov A., Bobrova L., Bunimovich G., Goldman O., Zagoriuko A., Matros Y., Catal. Today., 27, p. 315, (1996)

[287] Matros Y. S., Unsteady processes in catalytic reactor, Elsevier, Amsterdam, (1985) [288] Barresi A. A., Vanni M., Brinkmann M., Baldi G., Proc. 1st European Congress on

Chemical Engineering, ECCE1, Florence, Italy, 4-7 May 1997, Vol. 1, p. 587.

(1997)

[289] Barresi A. A., Vanni M., Brinkmann, M., Baldi G., AIChE J., 45, p. 1597, (1999) [290] Barresi A. A., Vanni M., Dynamics and control of forced-unsteady-state catalytic

combustors, in Nonlinear dynamics and control in process engineering. Recent advances (G. Continillo, S. Crescitelli, M. Giona Eds.), Springer-Verlag, Milano, p.

73, (2002)

[291] Cittadini M., Vanni M., Barresi A. A., Chem. Eng. Proc., 41, p. 437, (2002) [292] Fissore D., Barresi A. A., Velardi S., Vanni M., Conversion enhancement of

exothermic reactions in unsteady-state ring reactor network. 17th International Symposium on Chemical Reaction Engineering (ISCRE 17), Hong Kong, China, 25-28 August 2002, paper #0508, (2002)

[293] Fissore D., Barresi A. A., Chem. Eng. Technol., 25, p. 21, (2002)

[294] Tronconi, E., Lietti, L., Forzatti, P., & Malloggi, S. Chem. Eng. Sci., 51, p. 2965, (1996)

[295] Barresi A. A., Vanni M., Brinkmann M., Baldi G., Chem. Eng. Technol., 22, p.

237, (1999)

[296] Van de Beld L., Air purification by catalytic oxidation in an adiabatic packed bed reactor with periodic flow reversal. Ph.D. thesis, University of Twente, Enschede, the Netherlands. (1995)

[297] Cittadini M., Vanni M., Barresi A. A., Baldi G., 10th European Symposium on Computer Aided Process Engineering; Computer-Aided Chemical Engineering Series, Vol. 8, Elsevier, Amsterdam, p. 697, (2000)

[298] Matros Y. S., Bunimovich G. A., Noskov A. S., Catal. Today, 17, p. 261, (1993b) [399] Matros Y. S, Chem. Eng. Sci., 50(4), p. 565, (1995)

[300] Sheintuch, M. , Nekhamkina, O., AIChE J., 1, p. 224, (2005)

[301] Fissore, D., Penciu, O. M., Barresi, A.A., Chem. Eng. Sci., in press, (2006) [302] Matros Y. S., Bunimovich G. A., Ind. Eng. Chem. Res., 34, p. 1630, (1995)

[303] Sun Q., Young B., Williams D. F., Glasser D., Hildebrandt D., Can. J. Chem. Eng., 74, p. 760, (1996)

[304] Zufle H., Turek T., Chem. Eng. Proc., 36, p. 341, (1997) [305] Thullie J., Burghadt A., Chem. Eng. Sci., 50, p. 2299, (1995)

[306] Cittadini M., Vanni M., Barresi A. A., Baldi G., Chem. Eng. Proc., 40, p. 255, (2001)

[307] Lietti L, Nova I, Tronconi E, Forzatti P., Catal Today.,45, p. 85, (1998)

[308] Davide Fissore, Diego Garran Tejedor, and Antonello A. Barresi, AIChE J., 52, 9, p. 3146, (2006)

[309] Lietti L, Nova I, Camurri S, Tronconi E, Forzatti P., AIChE J.,43, p. 2559, (1997) [310] Kobayashi H., Kobayashi M., Catal Rev-Sci Eng., 10, p. 139, (1974)

[311] Tronconi E, Lietti L, Forzatti P, Malloggi S., Chem. Eng. Sci., 51, p. 2965, (1996)

ACTA UNIVERSITATIS LAPPEENRANTAENSIS

236. DUFVA, KARI. Development of finite elements for large deformation analysis of multibody systems. 2006. Diss.

237. RITVANEN, JOUNI. Experimental insights into deformation dynamics and intermittency in rapid granular shear flows. 2006. Diss.

238. KERKKÄNEN, KIMMO. Dynamic analysis of belt-drives using the absolute nodal coordinate formulation. 2006. Diss.

239. ELFVENGREN, KALLE. Group support system for managing the front end of innovation:

case applications in business-to-business enterprises. 2006. Diss.

240. IKONEN, LEENA. Distance transforms on gray-level surfaces. 2006. Diss.

241. TENHUNEN, JARKKO. Johdon laskentatoimi kärkiyritysverkostoissa.

Soveltamismahdollisuudet ja yritysten tarpeet. 2006. Diss.

242. KEMPPINEN, JUKKA. Digitaaliongelma. Kirjoitus oikeudesta ja ympäristöstä. 2006.

243. PÖLLÄNEN, KATI. Monitoring of crystallization processes by using infrared spectroscopy and multivariate methods. 2006. Diss.

244. AARNIO, TEIJA. Challenges in packaging waste management: A case study in the fast food industry. 2006. Diss.

245. PANAPANAAN, VIRGILIO M. Exploration of the social dimension of corporate responsibility in a welfare state. 2006. Diss.

246. HEINOLA, JANNE-MATTI. Relative permittivity and loss tangent measurements of PWB materials using ring resonator structures. 2006. Diss.

247. SALMELA, NINA. Washing and dewatering of different starches in pressure filters. 2006.

Diss.

248. SISSONEN, HELI. Information sharing in R&D collaboration – context-dependency and means of governance. 2006. Diss.

249. PURANEN, JUSSI. Induction motor versus permanent magnet synchronous motor in motion control applications: a comparative study. 2006. Diss.

250. PERÄLÄ, KARI. Kassanhallintakäytännöt Suomen kunnissa. 2006. Diss.

251. POUTIAINEN, ILKKA. A modified structural stress method for fatigue assessment of welded structures. 2006. Diss.

252. LIHAVAINEN, VELI-MATTI. A novel approach for assessing the fatigue strength of ultrasonic impact treated welded structures. 2006. Diss.

253. TANG, JIN. Computational analysis and optimization of real gas flow in small centrifugal compressors. 2006. Diss.

254. VEHVILÄINEN, JUHA. Procurement in project implementation. 2006. Diss.

255. MIROLA, TUULI. Impacts of the European integration and the European Union membership on Finnish export industries – Perceptions of export business managers.

2006. Diss.

256. RAUMA, KIMMO. FPGA-based control design for power electronic applications. 2006.

Diss.

257. HIRVONEN, MARKUS. On the analysis and control of a linear synchronous servomotor with a flexible load. 2006. Diss.

258. LIU, JUNHONG. On the differential evolution algorithm and its application to training radial basis function networks. 2006. Diss.

259. LAITINEN, RISTO. Development of LC-MS and extraction methods for the analyses of AKD, ASA, and rosin sizes in paper products. 2006. Diss.

260. KUISMA, PETRI. Seinärakenteen infrapunakontrastin pienentäminen käyttäen ilmajäähdytystä ja säteilysuojausta. 2007. Diss.

261. ELLONEN, HANNA-KAISA. Exploring the strategic impact of technological change – studies on the role of Internet in magazine publishing. 2007. Diss.

262. SOININEN, AURA. Patents in the information and communications technology sector – development trends, problem areas and pressures for change. 2007. Diss.

263. MATTILA, MERITA. Value processing in organizations – individual perceptions in three case companies. 2007. Diss.

264. VARTIAINEN, JARKKO. Measuring irregularities and surface defects from printed patterns. 2007. Diss.

265. VIRKKI-HATAKKA. TERHI. Novel tools for changing chemical engineering practice.

2007. Diss.

266. SEKKI, ANTTI. Successful new venturing process implemented by the founding entrepreneur: A case of Finnish sawmill industry. 2007. Diss.

267. TURKAMA, PETRA. Maximizing benefits in information technology outsourcing. 2007.

Diss.

268. BUTYLINA, SVETLANA. Effect of physico-chemical conditions and operating parameters on flux and retention of different components in ultrafiltration and nanofiltration

fractionation of sweet whey. 2007. Diss.

269. YOUSEFI, HASSAN. On modelling, system identification and control of servo-systems with a flexible load. 2007. Diss.

270. QU, HAIYAN. Towards desired crystalline product properties: In-situ monitoring of batch crystallization. 2007. Diss.

271. JUSSILA, IIRO. Omistajuus asiakasomisteisissa osuuskunnissa. 2007. Diss.

272. 5th Workshop on Applications of Wireless Communications. Edited by Jouni Ikonen, Matti Juutilainen and Jari Porras. 2007.

273. 11th NOLAMP Conference in Laser Processing of Materials Lappeenranta, August 20-22, 2007. Ed. by Veli Kujanpää and Antti Salminen. 2007.

274. 3rd JOIN Conference Lappeenranta, August 21-24, 2007. International Conference on Total Welding Management in Industrial Applications. Ed. by Jukka Martikainen. 2007.

275. SOUKKA, RISTO. Applying the principles of life cycle assessment and costing in process modeling to examine profit-making capability. 2007. Diss.

276. TAIPALE, OSSI. Observations on software testing practice. 2007. Diss.

277. SAKSA, JUHA-MATTI. Organisaatiokenttä vai paikallisyhteisö: OP-ryhmän strategiat institutionaalisten ja kilpailullisten paineiden ristitulessa. 2007. Diss.

278. NEDEOGLO, NATALIA. Investigation of interaction between native and impurity defects in ZnSe. 2007. Diss.

279. KÄRKKÄINEN, ANTTI. Dynamic simulations of rotors during drop on retainer bearings.

2007. Diss.