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Results 1 to 25 of 83

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The Fick and Lagrange equations as a basis for the Maxwell-Stefan diffusion equationsMITROVIC, J.International journal of heat and mass transfer. 1997, Vol 40, Num 10, pp 2373-2377, issn 0017-9310Article

On the solutions of Maxwell-Stefan equations for multicomponent film modelBURGHARDT, A.Chemical engineering science. 1984, Vol 39, Num 3, pp 447-453, issn 0009-2509Article

Modeling the occupancy dependence of diffusivities in zeolitesKRISHNA, R; PASCHEK, D; BAUR, R et al.Microporous and mesoporous materials. 2004, Vol 76, Num 1-3, pp 233-246, issn 1387-1811, 14 p.Article

Rigorous dynamic model of a direct methanol fuel cell based on Maxwell-Stefan mass transport equations and a Flory-Huggins activity model : Formulation and experimental validationSCHULTZ, Thorsten; SUNDMACHER, Kai.Journal of power sources. 2005, Vol 145, Num 2, pp 435-462, issn 0378-7753, 28 p.Conference Paper

Prediction of permeation fluxes of small volatile components through starch-based filmsHABEYCH, Edwin; VAN DER GOOT, Atze Jan; BOOM, Remko et al.Carbohydrate polymers. 2007, Vol 68, Num 3, pp 528-536, issn 0144-8617, 9 p.Article

Comparison of various models for transport of binary mixtures through dense polymer membraneIZAK, P; BARTOVSKA, L; FRIESS, K et al.Polymer (Guildford). 2003, Vol 44, Num 9, pp 2679-2687, issn 0032-3861, 9 p.Article

DIE ANWENDUNG DER MAXWELL-STEFAN-FLEICHUNG ZUR BERECHNUNG DER STOFFTRANSPORTEINFLUESSE BEI KOMPLEXEN HETEROGEN-KATALYTISCHEN REAKTIONEN = UTILISATION DE L'EQUATION DE MAXWELL-STEFAN POUR LE CALCUL DES EFFETS DE TRANSFERT DE MATIERE DANS LES REACTIONS CATALYTIQUES HETEROGENES COMPLEXESMAI XUAN KY; SALZER C; SCHREIER M et al.1982; CHEM. TECH.; ISSN 0045-6519; DDR; DA. 1982; VOL. 34; NO 9; PP. 450-453; BIBL. 11 REF.Article

Prediction of Maxwell-Stefan diffusion coefficients in polymer-multicomponent fluid systemsKUBACZKA, Andrzej.Journal of membrane science (Print). 2014, Vol 470, pp 389-398, issn 0376-7388, 10 p.Article

Kondensation von Dampfgemischen = Condensation of steam mixturesMITROVIC, J; GNEITING, R.Brennstoff-Wärme-Kraft. 1996, Vol 48, Num 1-2, pp 78-79, issn 0006-9612, 87 [3 p.]Article

Maxwell―Stefan modeling of the separation of H2 and CO2 at high pressure in an MFI membraneKANGAS, Jani; SANDSTRÖM, Linda; MALINEN, Ilkka et al.Journal of membrane science (Print). 2013, Vol 435, pp 186-206, issn 0376-7388, 21 p.Article

Prediction of the diffusion coefficients in multicomponent liquid refrigerant solutionsTELLO ALONSO, Hector A; RUBIOLO, Amelia C; ZORRILLA, Susana E et al.Journal of food engineering. 2012, Vol 109, Num 3, pp 490-495, issn 0260-8774, 6 p.Article

Multicomponent diffusion in highly asymmetric systems. An extended Maxwell-Stefan model for starkly different-sized, segment-accessible chain moleculesFORNASIERO, Francesco; PRAUSNITZ, John M; RADKE, Clayton J et al.Macromolecules. 2005, Vol 38, Num 4, pp 1364-1370, issn 0024-9297, 7 p.Article

A new method of calculating ternary mass transfer with a non transferring species based on Gilliand's parametric solution of the Maxwell-Stefan equations for the film modelBRÖCKER, S; SCHULZE, W.Chemical engineering communications (Print). 1991, Vol 107, pp 163-172, issn 0098-6445Article

Analysis and extension of the theory of multicomponent fluid diffusionKERKHOF, Piet J. A. M; GEBOERS, Marcel A. M.Chemical engineering science. 2005, Vol 60, Num 12, pp 3129-3167, issn 0009-2509, 39 p.Article

Diffusing with Stefan and MaxwellAMUNDSON, Neal R; PAN, Tsorng-Whay; PAULSEN, Vern I et al.AIChE journal. 2003, Vol 49, Num 4, pp 813-830, issn 0001-1541, 18 p.Article

A predictive mass transfer model for aroma compounds recovery by pervaporationRAISI, Ahmadreza; AROUJALIAN, Abdolreza; KAGHAZCHI, Tahereh et al.Journal of food engineering. 2009, Vol 95, Num 2, pp 305-312, issn 0260-8774, 8 p.Article

Exploring the Maxwell-Stefan description of ion exchangeWESSELINGH, J. A; VONK, P; KRAAIJEVELD, G et al.Chemical engineering journal and the biochemical engineering journal. 1995, Vol 57, Num 2, pp 75-89, issn 0923-0467Article

Multicomponent mass transport in organic solvent nanofiltration with solvent mixturesPOSTEL, Stefanie; WESSEL, Saskia; KEIL, Timm et al.Journal of membrane science (Print). 2014, Vol 466, pp 361-369, issn 0376-7388, 9 p.Article

Non-equilibrium molecular dynamics simulation study on permeation phenomena of LJ particles in slit-shaped membranes with periodic belt-like heterogeneous surfacesYONEMORI, Ken-Ichiro; TAKITANI, Atsushi; FURUKAWA, Shin-Ichi et al.Fluid phase equilibria. 2007, Vol 257, Num 2, pp 190-194, issn 0378-3812, 5 p.Conference Paper

Verification of the Maxwell-Stefan theory for diffusion of three-component mixtures in zeolitesKRISHNA, R; PASCHEK, D.Chemical engineering journal (1996). 2002, Vol 87, Num 1, pp 1-9, issn 1385-8947Article

Maxwell-Stefan approach in extractor designZIMMERMANN, A; JOULIA, X; GOURDON, C et al.Chemical engineering journal and the biochemical engineering journal. 1995, Vol 57, Num 2, pp 229-236, issn 0923-0467Article

Multicomponent tray efficiencies accounting for entrainmentRAO, D. P; PREM KUMAR, R. S; PANDIT, P et al.Chemical engineering journal and the biochemical engineering journal. 1995, Vol 57, Num 2, pp 237-246, issn 0923-0467Article

Maxwell-Stefan diffusivities in liquid mixtures: Using molecular dynamics for testing model predictionsXIN LIU; VLUGT, Thijs J. H; BARDOW, André et al.Fluid phase equilibria. 2011, Vol 301, Num 1, pp 110-117, issn 0378-3812, 8 p.Article

Modeling of multicomponent mass transfer across polymer films using a thermodynamically consistent formulation of the Maxwell―Stefan equations in terms of volume fractionsRIBEIRO, ClaudioP; FREEMAN, BennyD; PAUL, Donald R et al.Polymer (Guildford). 2011, Vol 52, Num 18, pp 3970-3983, issn 0032-3861, 14 p.Article

Measurement and prediction of multicomponent diffusion coefficients in four ternary liquid systemsREHFELDT, Sebastian; STICHLMAIR, Johann.Fluid phase equilibria. 2010, Vol 290, Num 1-2, pp 1-14, issn 0378-3812, 14 p.Conference Paper

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