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MODEL chemical engineering science

Baldyga, J. and Orciuch, W., 2001. Barium sulphate precipitation in a pipe - an experimental study and CFD modelling. Chemical Engineering Science, 56(7), 2435-2444. [Pg.300]

Micromixing effects in the Nicolis-Puhl reaction Numerical bifurcation and stability analysis of the IEM model. Chemical Engineering Science 46, 1829-1847. [Pg.412]

Multiple-scale perturbation analysis and numerical simulation of the unsteady-state IEM model. Chemical Engineering Science 45, 2857-2876. [Pg.413]

Nishimura, Y. and M. Matsubara (1970). Micromixing theory via the two-environment model. Chemical Engineering Science 25, 1785-1797. [Pg.419]

Fournier, M. C., Falk, L. and Villerrmaux, J. (1996). A new parallel competing reaction system for assessing micromixing efficiency— Determination of micromixing time by a simple mixing model. Chemical Engineering Science, 51(23) 5187-5192. [Pg.350]

PagnaneUi, R, Sara, M., Veglio, R, and Lnigi, T. 2003. Heavy metal removal by olive pomace Biosorbent characterization and eqnUibrinm modeling. Chemical Engineering Science, 58 4709-17. [Pg.91]

B.A., Buffham, L.G.Gibilaro and H.W.KropholIer, Network Combing of Complex Flow-Mixing Models, Chemical Engineering Science, 24,7-10 (1969). [Pg.604]

Delnou, E., Lammers, F. A., Kuipers, J. A. M. van Swaau, W. P. M. 1997 Dynamic simulation of dispersed gas-liquid two-phase flow using a discrete bubble model. Chemical Engineering Science 52, 1429-1458. [Pg.464]

Marchisio, D. L. Barresi, A. A. 2009 Investigation of soot formation in turbulent flames with a pseudo-bivariate population balance model. Chemical Engineering Science 64, 294-303. [Pg.474]

Patruno, L. E., Dorao, C. A., Svendsen, H. F. Jakobsen, H. A. 2009 Analysis of breakage kernels for population balance modelling. Chemical Engineering Science 64, 501-508. [Pg.477]

Louwerse DJ, Smilde AK, Multivariate statistical process control of batch processes based on three-way models, Chemical Engineering Science, 2000, 55, 1225-1235. [Pg.361]

The oxidation of bituminous coal— I Development of a mathematical model. Chemical Engineering Science.. ... [Pg.415]

Skold-Jorgensen, S., Rasmussen, P. and Fredenslund, A. (1982) On the concentration dependence of the UNIQUAC/UNIFAC models. Chemical Engineering Science, 37, 99-111. [Pg.569]

Mi, Z., Periodically operated trickle-bed reactor for EAQs hydrogenation experiments and modeling. Chemical Engineering Science, 2005, 50, 6270... [Pg.97]

Al-Juaied, M.A., Lafarga, D. and Varma, A., 2001. Ethylene Epoxidation in a Catalytic Packed-Bed Membrane Reactor Experiments and Model. Chemical Engineering Science, 56(2) 395-402. [Pg.143]

Ktifner, R. and Hofmann, H., 1990. Implementation of Radial Porosity and Velocity Distribution in a Reactor Model for Heterogeneous Catalytic Gas-Phase Reactions (Torus-Model). Chemical Engineering Science, 45(8) 2141-2146. [Pg.146]

Olmos, E., Gentric, C., and Midoux, N. (2003), Numerical description of flow regime transitions in bubble column reactors by a multiple gas phase model, Chemical Engineering Science, 58(10) 2113-2121. [Pg.298]

Warsito, W, and Fan, L.-S. (2003b), ECT imaging of three-phase fluidized bed based on three-phase capacitance model, Chemical Engineering Science, 58 823-832. [Pg.308]

Baur R., Taylor R. and Krishna R. (2001a). Dynamic behaviour of reactive distillation columns described by a nonequilibrium stage model. Chemical Engineering Science 56, 2085-2102. 2.9.1.2, 2.9.1.2, 2.9.3, 4.3... [Pg.232]

Kenig E., Butzmann F., Kucka L. and Gorak A. (2000). Comparison of numerical and analytical solutions of a multicomponent reaction-mass-transfer problem in terms of the film model. Chemical Engineering Science 55, 1483-1496. 2.5... [Pg.237]

Sundmacher K. and Hoffmann U. (1996). Development of a new catalytic distillation process for fuel ethers via a detailed nonequilibrium model. Chemical Engineering Science 51 (10), 2359-2368. 2.9.3... [Pg.243]

Iliuta, I., Diuta, M. C., Larachi, F. (2011). Sorption-enhanced dimethyl ether synthesis— multiscale reactor modeling. Chemical Engineering Science, 66, 2241—2251. [Pg.599]

Marin, P., Hamel, C., Orddnez, S., V. Dlez, F., Tsotsas, E., Seidel-Morgenstem, A. (2010). Analysis of a fluidized bed membrane reactor for butane partial oxidation to maleic anhydride 2D modeling. Chemical Engineering Science, 65, 3538—3548. [Pg.659]

G. S. Yablonsky, D. Constales, S. O. Shekhtman, and J. T. Cleaves, The Y-procedure how to extract the chemical transformation rate from reaction-diffusion data with no assumption on the kinetic model, Chemical Engineering Science, vol. 62, pp. 6754-6767,2007. [Pg.252]

Reverchon, E., and C. Marrone. 1997. Supercritical Extraction of Clove Bud Essential Oil Isolation and Mathematical Modeling. Chemical engineering Science 52 (20) 3421-3428. [Pg.110]

Sparks, D. L., R. Hernandez, and L. A. Estevez. 2008. Evaluation of Density-Based Models for the Solubility of Solids in Supercritical Carbon Dioxide and Formulation of a New Model. Chemical Engineering Science 63 (17) 4292-4301. [Pg.111]

Ciardelli C et al (2004) SCR-DeNOx for diesel engine exhaust aftertreatment unsteady-state kinetic study and monolith reactor modeling. Chemical Engineering Science, 59 5301-5309... [Pg.449]

Chevrel, M.-C., Brun, N., Hoppe, S., Meimaroglou, D., Falk, L., Chapron, D., et al. (2014). In situ monitoring of acrylic acid polymerization in aqueous solution using rheo-Raman technique. Experimental investigation and theoretical modelling. Chemical Engineering Science, 106, 242-252. [Pg.840]

Diakov, V., Blackwell, B. and Varma, A. (2002) Methanol oxidative dehydrogenation in a catalytic packed-bed membrane reactor Experiments and model. Chemical Engineering Science, 57, 1563—1569. [Pg.72]

Casanave, D., Ciavarella, R, Fiaty, K. and Dalmon, J.A. (1999) Zeolite membrane reactor for isobutane dehydrogenation Experimental results and theoretical modelling. Chemical Engineering Science, 54, 2807-2815. [Pg.100]

Ruthven, D. M., Desisto, W. J. and Higgins, S. (2009) Diffusion in a mesoporous silica membrane validity of the Knudsen diffusion model. Chemical Engineering Science, 64,3201-3203. [Pg.333]


See other pages where MODEL chemical engineering science is mentioned: [Pg.325]    [Pg.79]    [Pg.325]   


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