2481 - 2502 |
Analysis of forced periodic operations of continuous bioprocesses - Single input variations Parulekar SJ |
2503 - 2517 |
The production of Zn from ZnO in a high-temperature solar decomposition quench process - I. The scientific framework for the process Palumbo R, Lede J, Boutin O, Ricart EE, Steinfeld A, Moller S, Weidenkaff A, Fletcher EA, Bielicki J |
2519 - 2530 |
Holdup issues in batch distillation-binary mixtures Mujtaba IM, Macchietto S |
2531 - 2536 |
Linearization of adsorption isotherms for high-pressure applications Zhou L, Zhou YP |
2537 - 2546 |
Computationally efficient dynamic modelling and simulation of simulated moving bed chromatographic processes with linear isotherms Dunnebier G, Weirich I, Klatt KU |
2547 - 2573 |
Schlieren visualization of natural convection in binary gas-liquid systems Okhotsimskii A, Hozawa M |
2575 - 2586 |
Development of a model for the wet air oxidation of phenol based on a free radical mechanism Rivas FJ, Kolaczkowski ST, Beltran FJ, McLurgh DB |
2587 - 2594 |
A novel technique for rapid measurement of liquid-liquid-vapour equilibrium Sever L, Lieto J, Boudehen A, Bousquet J |
2595 - 2621 |
On the state space approach to mass/heat exchanger network design Bagajewicz MJ, Pham R, Manousiouthakis V |
2623 - 2640 |
A scintigraphic study of LDL-cholesterol irreversible trapping in a plasma fractionation membrane Legallais C, Dore E, Ploux L, Fauchet M, Jaffrin MY |
2641 - 2643 |
How liquids wet clathrate hydrates: some macroscopic observations Hirata A, Mori YH |
2645 - 2646 |
Comments on the paper "Numerical simulation of the gas-solid flow in a fluidized bed by combining discrete particle method with computational fluid dynamics" Hoomans BPB, Kuipers JAM, Briels WJ, van Swaaij WPM |
2646 - 2647 |
Comments on the paper "Numerical simulation of the gas-solid flow in a fluidized bed by combining discrete particle method with computational fluid dynamics" - Reply Xu BH, Yu AB |