1 |
A kinetic model of gas-particle mass transfer in aerosol: Application to phase state in aerosol Li CP, Wang K, Wang YS, Chen YK, Zhang C Powder Technology, 375, 453, 2020 |
2 |
Maxwell-Stefan diffusion coefficient model derived from entropy generation minimization principle for binary liquid mixtures Cao XP, Zhou M, Jia SK, Yuan XG, Yu KT Chemical Engineering Science, 207, 30, 2019 |
3 |
Maxwell-Stefan model of multicomponent ion transport inside a monolayer Nafion membrane for intensified chlor-alkali electrolysis Sijabat RR, de Groot MT, Moshtarikhah S, van der Schaaf J Journal of Applied Electrochemistry, 49(4), 353, 2019 |
4 |
Modelling ultrafiltration performance by integrating local (critical) fluxes along the membrane length Aguirre-Montesdeoca V, Janssen AEM, Van der Padt A, Boom RM Journal of Membrane Science, 578, 111, 2019 |
5 |
Simulation of multicomponent gas transport through mixed-matrix membranes Monsalve-Bravo GM, Smart S, Bhatia SK Journal of Membrane Science, 577, 219, 2019 |
6 |
Organic solvent nanofiltration of binary vegetable oil/terpene mixtures: Experiments and modelling Abdellah MH, Liu L, Scholes CA, Freeman BD, Kentish SE Journal of Membrane Science, 573, 694, 2019 |
7 |
Fine ultrafiltration of concentrated oligosaccharide solutions - Hydration and pore size distribution effects Montesdeoca VA, Janssen AEM, Boom RM, Van der Padt A Journal of Membrane Science, 580, 161, 2019 |
8 |
Multicomponent transport in nanoporous networks: Theory and simulation Hu CX, Bhatia SK Chemical Engineering Journal, 346, 748, 2018 |
9 |
The Maxwell-Stefan description of mixture permeation across nanoporous graphene membranes Krishna R Chemical Engineering Research & Design, 133, 316, 2018 |
10 |
Predicting mass fluxes in the pervaporation process using Maxwell-Stefan diffusion coefficients Kubaczka A, Kaminski W, Marszalek J Journal of Membrane Science, 546, 111, 2018 |