Citation: | ZHANG Xin-miao, WANG Zhan, LIU Mei. Recent Development on Flux Prediction Model on Dead-end Microfiltration[J]. Journal of Beijing University of Technology, 2005, 31(2): 179-185. DOI: 10.3969/j.issn.0254-0037.2005.02.015 |
[1] |
IRITANI Eiji, HATTORI Koji, MURASE Toshiro. Analysis of dead-end UF based on ultracentrifugation method[J]. JMembr Sci, 1993, 81:1-13.
|
[2] |
PALECEK Sean P. Hydraulic permeability of protein deposits formed during MF:Effect of solution pH and ionic strength[J]. J Membr Sci, 1994, 95:71-81.
|
[3] |
BLANPAIN P, HERMIAJ, LENOEL M. Mechanisms governing permeate flux and protein rejection in the MF of beer witha cyclopore membrane[J]. J Membr Sci, 1993, 84:37-51.
|
[4] |
FILIPPOV A, STAROV V M, LLOYD D R, et al. Sieve mechanism of microfiltration[J]. J Membr Sci, 1994, 89:199-213.
|
[5] |
BELFORT G, DAVIS R H, ZYDNEY A L. The behavior of suspensions and macromolecular solutions in crossflow microfil-tration[J]. J Membr Sci, 1994, 96:1-58.
|
[6] |
宋航,付超,石炎福.微滤过程阻力分析及过滤速率[J].高校化学工程学报,1999,4(8):315-322.SONG Hang, FU Chao, SHI Yan-fu. Analysis on fouling resistance and calculation of flux for microfiltration[J]. Journal ofChemical Engineering of Chinese Universities, 1999, 4(8):315-322. (in Chinese)
|
[7] |
时均,袁权,高从皆.膜技术手册[M].北京:化学工业出版社,2001.SHI Jun, YUAN Quan, GAO Cong-jie. Membrane Technology Handbook[M]. Beijing:Chemical Industry Press, 2001. (in Chinese)
|
[8] |
王湛.膜分离技术基础[M].北京:化学工业出版社.2000.WANG Zhan. Basis of Membrane Separation Technology[M]. Beijing:Chemical Industry Press, 2000. (in Chinese)
|
[9] |
汪锰,王湛,李政雄.膜材料及其制备[M].北京:化学工业出版社,2003.WANG Meng, WANG Zhan, LI Zheng- xiong. Membrane Materials and Preparation[M]. Beijing:Chemical Industry Press, 2003. (in Chinese)
|
[10] |
BOWEN W R, GAN Q. Properties of microfiltration membranes:Flux loss during constant pressure permeation of bovineserum albumin[J]. Biotechnol Bioeng, 1991, 38:688-696.
|
[11] |
BOWEN W R, GAN Q. Properties of microfiltration membranes:The effect of adsorption and shear on the recovery of anenzyme[J]. Biotechnol Bioeng, 1992, 40:491-512.
|
[12] |
KOEHLER J A, ULBRICHT M, BELFORT G. Intermolecular forces between proteins and polymer films with relevancetofiltration[J]. Langmuir, 1997, 13:4162-4217.
|
[13] |
KOEHLER J A, ULBRICHT M, BELFORT G. Intermolecular forces between a protein and a hydrophilic modified poly-sulfone film with relevance to filtration[J]. Langmuir, 2000, 16:10419-10427.
|
[14] |
OPONG W S, ZYDNEY A L. Hydraulic permeability of protein layers deposited during ultrafiltration[J]. Journal of Colloidand Interface Science, 1991, 142:41-60.
|
[15] |
BANSAL A, MA Y H, CLARK W M. A quantitative investigation of membrane fouling by proteins using energy dispersivespectroscopy[J]. Key Eng Mat, 1991, 61:505-517.
|
[16] |
PERSSON K M, CAPANNELLI G, BOTTOINO A, et al. Porosity and protein adsorption of four polymeric microfiltration membranes[J]. J Membr Sci, 1993, 76:61-71.
|
[17] |
HERRERO C, PRADANOS P, CALVO J I, et al. Flux decline in protein MF:Influence of operative parameters[J]. Journal of Colloid and Interface Science, 1997, 187:344-351.
|
[18] |
KIM K J, FANE A. G, FELL C J D, et al. Fouling mechanisms of membranes during protein ultrafiltration[J]. J Membr Sci, 1992, 68:79-97.
|
[19] |
KELLY S T, OPONG W S, ZYDNEY A L. The influence of protein aggregates on the fouling of microfiltration membranes during stirred cell filtration[J]. J Membr Sci, 1993, 80:175-187.
|
[20] |
KUBERKAR V T, DAVIS R H. Effects of added yeast on protein transmission and flux in cross-flow membrane MF[J]. Biotechnol Prog, 1999, 15(3):472-479.
|
[21] |
NAVEEN Arora, DAVIS R H. Yeast cake layers as secondary membranes in dead-end MF of bovine serum albumin[J]. J Membr Sci, 1994, 92:247-256.
|
[22] |
KUBERKAR VT, DAVISRH. Modeling of fouling reduction by secondary membranes[J]. J Membr Sci, 2000, 168(1):243-258.
|
[23] |
HLAVACEK M, BOUCHET F. Constant flowrate blocking laws and an example of thief application to dead-end microfiltration of protein solutions[J]. J Membr Sci, 1993, 82:285-295.
|
[24] |
SONG L, ELIMELECH M. Theory of concentration polarization in crossflow filtration[J]. J Chem Soc Faraday Trans, 1995, 91(19):3389-3398.
|
[25] |
SONG Lian-fa. Flux decline in cross-flow microfiltration and ultrafiltration:Mechanisms and modeling of membrane fouling[J]. J Membr Sci, 1998, 139:183-200.
|
[26] |
KONIECZNY Krystyna. Modeling of membrane filtration of natural water for potable purposes[J]. Desalination, 2002, 143:123-139.
|
[27] |
CARRERE H, BLASZKOWA F, de BALMANN H R. Modeling the microfiltration of lactic acid fermentation broths and comparison of operating modes[J]. Desalination, 2002, 145:201-206.
|
[28] |
DAL-CIN M M, MCLELLAN F, et al. Membrane performance with a pulp mill effluent:Relative contributions of fouling mechanisms[J]. J Membr Sci, 1996, 120:272-285.
|
[29] |
刘广立,施汉昌,黄霞,等.无机微滤膜过滤阻力的研究[J].环境污染治理技术与设备.2002,3(1):15-18.LIU Guang-li, SHI Han-chang, HUANG Xia, et al. Study on the filtration resistance of inorganic microfiltration membrane[J]. Techniques and Equipment for Environmental Pollution Control, 2002,3(1):15-18. (in Chinese)
|
[30] |
WANG Zhan, MARTSULE Ma, FLISYUK Om. Evaluation of the relative permeability of a membranes[J]. J Appli Chem, 1992,65(9):2155-2158.
|
[31] |
王湛,王淑梅,张新妙.中空纤维微滤膜组件静态操作时过滤通量预测的实验研究[J].膜科学与技术.2002,22(5):29-31.WANG Zhan, WANG Shu-mei, ZHANG Xin-miao. Experimental study of permeation flux prediction of hollow fiber micro-filtration device under static state operation[J]. Membrane Science and Technology, 2002,22(5):29-31. (in Chinese)
|
[32] |
SILVA C M, REEVE D W, HUSAIN H, et al. Model for flux prediction in high-shear MF systemsfj]. J Membr Sci, 2000, 173:87-98.
|
[33] |
CHOI Sung-Wook, YOON Jeong-Yeol, HAAM Seungjoo, et al. Modeling of the permeate flux during microfiltration of BSA-adsorbed microspheres in a stirred cell[J]. Journal of Colloid and Interface Science 2000, 228:270-278.
|
[34] |
WINSTON W S Ho,SIEKAR Kamalesh K.膜手册[M].张志诚译.北京:海洋出版社,1997.WINSTON W S Ho, SIEKAR Kamalesh K. Membrane Handbook[M]. ZHANG Zhi-cheng, trnsl. Beijing:China Ocean Press, 1997. (in Chinese)
|
[35] |
HERMANS P H, BREDEE H L. Filtration knowledge[J]. Rec Trav Chim, 1935, 54:680-700.
|
[36] |
GONSALVES V E. A Critical investigation of the viscosefiltration process[J]. Rec Trav Chim des Pays-Bas, 1950, 69:873-903.
|
[37] |
GRACE HP. Structure and performance of filter media[J]. AICHE J, 1956, 2:307-336.
|
[38] |
HERMIA J. Constant pressure blocking filtration laws -application to power-law non-newtonian fluids[J]. Trans I Ch E,1982, 60:183-187.
|
[39] |
FIELD R W, WU D, HOWELL J A. Critical flux concept for microfiltration fouling[J]. J Membr Sci, 1995. 100:259-272.
|
[40] |
FIELD R W, ARNOT T C. Fouling mechanisms and modeling with due allowance for cross-flow and back-diffusion:testing of recent theoretical advances with data on the membrane filtration of yeast cells[A]. Proc Euromembrane 95[C]. Bath:U-niversity of Bath, 1995. 11-22.
|
[41] |
ARNOT T C, FIELD R W, KOLTUNIEWICZ A B. Cross flow and dead end MF of oily water emulsions part 2:Mechanisms and modeling of flux decline[J]. J Membr Sci, 2000, 169:1-15.
|
[42] |
JONSSON G, PRADANOS P, HERNANDEZ A. Fouling phenomena in microporous membranes:Flux decline kinetics and structural modifications[J]. J Membr Sci. 1996, 112:171-183.
|
[43] |
NONAKA Michio. A macrokinetic modeling of membrane MF processes[J]. Separation Science and Technology, 1988, 23 (4&5):387-411.
|
[44] |
IRITANI Eiji, MUKAI Yasuhito, TANAKA Yoshiaki, et al. Flux decline behavior in dead-end MF of protein solutions[J]. J Membr Sci, 1995, 103:181-191.
|
[45] |
BOWEN W R, CALVO J I, HERNANDEZ A. Steps of membrane blocking in flux decline during protein microfiltration[J]. J Membr Sci, 1995,101:153-165.
|
[46] |
RUOHOMAKI K, NYSTROM M. Fouling of ceramic capillary filtersin vacuum filtration of humid acid[J]. Filtration Separation, 2000, 37:51-57.
|
[47] |
HO Chia-chi, ZYDNEY A L. A combined pore blockage and cake filtration model for protein fouling during microfiltration[J]. Journal of Colloid and Interface Science, 2000, 232:389-399.
|
[48] |
WEI Yuan, KOCIC A, ZYDNEY A L. Analysis of humic acid fouling during microfiltration using a pore blockage-cake filtration model[J]. J Membr Sci, 2002, 198:51-62.
|
[49] |
SHIAU jiashyan, WANG Darning, LAI Juinyih. A model for resistance growth during protein microfiltration[Z]. The 2th International Conference on Application of Membrane Technology, Sydney, 2002.
|
[50] |
WU D, HOWELL J A, TURNER N M. A new method for modeling the time-dependence of permeation flux in UF[J]. Trans I Ch E, Part C, 1991, 69:77-82.
|