[1] |
Wang W, Chen G, Mujumdar A S. Physical interpretation of solids drying: An overview on mathematical modeling research [J]. Drying Technology, 2007, 25 (4): 659-668
|
[2] |
Sadikoglu H, Ozdemir M, Seker M. Freeze-drying of pharmaceutical products: research and development needs [J]. Drying Technology, 2006, 24 (7): 849-861
|
[3] |
Wang W, Chen G. Freeze drying with dielectric-material-assisted microwave heating [J]. AIChE Journal, 2007, 53 (12): 3077-3088
|
[4] |
Schwegman J J, Hardwick L M, Akers M J. Practical formulation and process development of freeze-dried products [J]. Pharmaceutical Development and Technology, 2005, 10 (2): 151-173
|
[5] |
Wang W, Chen M, Chen G. Issues in freeze drying of aqueous solutions [J]. Chinese Journal of Chemical Engineering, 2012, 20 (3): 551-559
|
[6] |
Wang W, Chen G. Theoretical study on microwave freeze-drying of an aqueous pharmaceutical excipient with the aid of dielectric material [J]. Drying Technology, 2005, 23 (9/10/11): 2147-2168
|
[7] |
Ratti C. Hot air and freeze-drying of high value foods: a review [J]. Journal of Food Engineering, 2001, 49 (4): 311-319
|
[8] |
Pikal M J, Roy M L, Shah S. Mass and heat transfer in vial freeze-drying of pharmaceuticals: role of the vial [J]. Journal of Pharmaceutical Science, 1984, 73 (9): 1224-1237
|
[9] |
Liapis A I, Pikal M J, Bruttini R. Research and development needs and opportunities in freeze drying [J]. Drying Technology, 1996, 14 (6): 1265-1300
|
[10] |
Wang W, Chen G. Numerical investigation on dielectric material assisted microwave freeze-drying of aqueous mannitol solution [J]. Drying Technology, 2003, 21 (6): 995-1017
|
[11] |
Pikal M J, Shah S, Senior D, Lang J E. Physical chemistry of freeze-drying: measurement of sublimation rates for frozen aqueous solutions by a microbalance technique [J]. Journal of Pharmaceutical Science, 1983, 72 (6): 635-650
|
[12] |
Nail S, Gatlin L. Pharmaceutical Dosage Forms [M]. New York: Marcel Dekker, 1993: 163-333
|
[13] |
Livesey R G, Rowe T W. A discussion of the effect of chamber pressure on heat and mass transfer in freeze-drying [J]. Journal of Parenteral Science and Technology, 1987, 41 (5): 169-171
|
[14] |
Wolff E, Gibert H, Rodolphe F. Vacuum freeze-drying kinetics and modeling of a liquid in a vial [J]. Chemical Engineering and Processing, 1989, 25 (3): 153-158
|
[15] |
Wang W, Chen G. Heat and mass transfer model of dielectric-material-assisted microwave freeze-drying of skim milk with hygroscopic effect [J]. Chemical Engineering Science, 2005, 60 (23): 6542-6550
|
[16] |
Wang W. Dielectric-material-assisted microwave heating in freeze drying [D]. Hong Kong: Hong Kong University of Science and Technology, 2005
|
[17] |
Wang W, Chen M, Wang W, Pan Y Q, Chen G. Theoretical analysis for freeze-drying of initially unsaturated porous material [J]. Journal of Dalian University of Technology, 2014, 54 (1): 6-12
|
[18] |
Wang W, Chen G. Freeze-drying of initially porously frozen material from aqueous solution//Conference Proceedings of 4th Inter-American Drying Conference [C]. Montreal, Canada, 2009: 395-403
|
[19] |
Yu Kai (于凯), Wang Wei (王维), Pan Yanqiu (潘艳秋), Wang Wei (王威), Chen Guohua (陈国华). Effect of initially unsaturated porous frozen material on freeze-drying [J]. CIESC Journal (化工学报), 2013, 64 (9): 3110-3116
|
[20] |
Hawe A, Friess W. Physico-chemical lyophilization behavior of mannitol, human serum albumin formulations [J]. European Journal of Pharmaceutical Sciences, 2006, 28 (3): 224-232
|
[21] |
Pikal M J, Freeze Drying [M]. Encyclopedia of Pharmaceutical Technology, 2002: 1299-1326
|