1 |
Modeling of Convective Drying of Sawdust Using a Reaction Engineering Approach Yusof HAM, Ng JL, Ng SC, Lee YJ, Hii CL, Putranto A Chemical Engineering & Technology, 43(9), 1802, 2020 |
2 |
Numerical simulation of mono-disperse droplet spray dryer: Coupling distinctively different sized chambers Xiao J, Yang SJ, George OA, Putranto A, Wu WD, Chen XD Chemical Engineering Science, 200, 12, 2019 |
3 |
Drying and denaturation kinetics of Beta-Lactoglobulin during convective drying Haque MA, Oliver MMH, Putranto A, Adhikari B Journal of Food Engineering, 237, 9, 2018 |
4 |
A successful comparison between a non-invasive measurement of local profiles during drying of a highly shrinkable food material (eggplant) and the spatial reaction engineering approach Putranto A, Chen XD Journal of Food Engineering, 235, 23, 2018 |
5 |
A continuum-approach modeling of surface composition and ternary component distribution inside low fat milk emulsions during single droplet drying Putranto A, Foerster M, Woo MW, Selomulya C, Chen XD AIChE Journal, 63(7), 2535, 2017 |
6 |
A new model to predict diffusive self-heating during composting incorporating the reaction engineering approach (REA) framework Putranto A, Chen XD Bioresource Technology, 232, 211, 2017 |
7 |
Energy-saving combination of N-2 production, NH3 synthesis, and power generation Aziz M, Putranto A, Biddinika MK, Wijayanta AT International Journal of Hydrogen Energy, 42(44), 27174, 2017 |
8 |
Drying of a System of Multiple Solvents: Modeling by the Reaction Engineering Approach Putranto A, Chen XD AIChE Journal, 62(6), 2144, 2016 |
9 |
Predictions of drying kinetics of aqueous droplets containing WPI-lactose and WPI-trehalose by application of composite reaction engineering approach (REA) Haque MA, Adhikari B, Putranto A Journal of Food Engineering, 189, 29, 2016 |
10 |
An assessment on modeling drying processes: Equilibrium multiphase model and the spatial reaction engineering approach (S-REA) Putranto A, Chen XD Chemical Engineering Research & Design, 94, 660, 2015 |