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The hybrid processes based on membrane techniques

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The lecture presents an idea of hybrid processes, combining different unit operations such as separation processes traditionally used in environmental protection with membrane separation techniques or different membrane techniques linked together. A membrane process is very often coupled with distillation, adsorption, ion-exchange, coagulation, bioconversion, catalysis, etc. The advantages of hybrid processes and examples of their application for chemical technology, water and wastewater treatment and food industry are presented. In most cases analysed, the hybrid processes offered potential savings in energy and the upgrading of the product quality.
Rocznik
Strony
19--25
Opis fizyczny
Bibliogr. 37, rys., tab.
Twórcy
Bibliografia
  • (1) Lipnizki F., Field R. W., Po-Kiong Ten, Pervaporation based hybrid processes: a review of processes design, application and economics, J. Membrane Sci, 1999, 153, 183 - 210.
  • (2) Rautenbach R., Mellis, Hybrid processes involving membranes for the treatment of highly organic/inorganic contaminated waste water, Desalination, 1995, 101, 105 - 113
  • (3) Nederlof M.M., Cruithof J.C., Taylor J.S., van der Kooij D., Schippers J.S., Comparison of NF/RO membrane performance in integrated membrane systems, Desalination, 2000, 131, 257 - 269
  • (4) Holden P., Anglian water membrane hybrid system for the soft drinks industry, Desalination, 1998, 118, 267 - 271
  • (5) Karakulski K., Morawski A. W., Treatment of spent emulsion from a cable factory by an integrated UF/NF membrane system, Desalination, 2002, 149, 163 - 167
  • (6) Fane A.G., Membranes for water production and wastewater reuse, Desalination, 1996, 106, 1 - 9
  • (7) Lerch A, Hagmeyer G., Gimbel R., Fehn J., A comparisio of laboratory and pilot plant experiments on the combination of flocculation/ultrafiltration for direct potable water treatment river water, Membranes in Drinking and Industrial Water Purification, Proceedings, 22-26 September, 2002, Muelheim, Germany, 509 - 517
  • (8) Tomaszewska M, Mozia S. Removal of organic mater from water by PAC/UF system, Water Research, 2002, 36, 4137 - 4143.
  • (9) Tavares C.R., Vieira M., Petrus J.C.C., Bortolett E.C., Ceravollo F., Ultrafiltration/complexation process for metal removal from pulp and paper industry wastewater, Desalination, 2002, 144, 261 - 265
  • (10) Flores V., Cabassud C., A hybrid membrane process for C(ll) removal from industrial wastewater. Comparison with a conventional system, Desalination, 1999, 126, 101 - 108
  • (11) Wąsik E., Bohdziewicz J., Blaszczyk M., Removal of nitrates from ground water by a hybrid process of biological denitrification and microfiltration membrane, Process Biochemistry, 2001, 37, 57 - 64
  • (12) Jacangelo J.G, Trussell, R.R, Watson Montgomery, Role of membrane technology in drinking water treatment in the United States, Desalination, 1997, 113, 119 - 127
  • (13) Noworyta A. Zintegrowane procesy membranowe, Inżynieria Chemiczna i Procesowa, 2001, 22 (3a) 85 - 96.
  • (14) Trusek-Holownia A., Noworyta A., Enzyme localisation in biphase membrane reactor, Engineering with membranes, 3-6 June, 2001, Granada, Spain, ed: S. Luque, J.R. Alvares, 1-88 - 1-93.
  • (15) Kabayashi M., Kanno T., Horiuchi J., Triwahyono S., Togawa J., Propene partial oxidation to propylene oxide enhanced by a convection flow in the Cs-Ag irnmobilized ceramic membranes, Engineering with membranes, 3-6 June 2001, Granada, Spain, ed: S. Luque, J.R. Alvares, 1-140 - 1-143.m
  • (16) Lee S., Yang J.H., Park J.S., . Park P.K., Yeon K.M., Lee W., Lee C. H., Choo K. H., Kwon H. H., Ultrafiltration treatmwnt for separation of TiO2 photocatalysts in drinking water treatr tment, Engineering with membranes, 3-6 June 2001, Granada, Spain, ed: S. Luque, J.R. Alvares, I-44 - I-149
  • (17) Scot K., Handbook of Industrial Membranes, Elsevier Advanced Technology, 1995
  • (18) Wang J, Wang S, Jin M., A study oft he electrodeionization proceess - high purity water production with a RO/EDI system,Desalination, 2000, 132, 349 - 352
  • (19) Velizarov S., Crespo J.G., Reis M.A, Nitrate transport and bioreduction in an ion exchange membrane bioreactor for drinking water production, Membranes in Drinking and Industrial Water Purification, Proceedings, 22 - 26 September, 2002, Muelheim, Germany, 609 - 611.
  • (20) Gannez H, Persin F, Sandeaux J., Pourcelly G., Moutadar M., Defluoridation of grunwater by a hybrid process combining adsorption and Donnan dialysis, Desalination, 2002, 145, 287 - 291
  • (21) Jonquieres A., Clement R., Lochon P., Neel J, Dresch M., Chretien B., Industrial state-of-the-art of pervaporation and vapour perrneation in the western countries, J. Membrane Sci., 2002, 87 - 117.
  • (22) Sander U., Soukup P., Design and operation of a pervaporation for ethanol dehydratation, J. Membrane Sci., 1988, 36, 463 - 475.
  • (23) Rautenbach R., Hommerich U., Design and optimization combined pervaporation/distillation process for the production of MTBE, in: A.J.B. Kemperman, G.H. Koops (Eds.), Euromembrane'97, University of Twente, Netherlands, 1997, p.356
  • (24) Hommerich U., Rautenbach R., Design and optimization of combined pervaporation/ distillation process for the production of MTBE, J. Membrane Sci., 1998, 146, 53 - 64.
  • (25) Lu Y., Zhang L., Chen H.L., Qian Z.H., Gao C.J., Hybrid process of distillation side-connected with pervaporation for separation of methanol/MTBE/C4 mixture, Desalination, 2002, 149, 81 - 87.
  • (26) Meckl K, Lichtenthaler, R.N., Hybrid process using pervaporation for the removal of organics from process and waste water, J. Membrane Sci., 1996, 113, 81 - 86.
  • (27) Tomaszewska M., Destylacja membranowa, Prace Naukowe Politechniki Szczecińskiej, 531, 1997 Szczecin.
  • (28) Lagana F., Barbieri G., Drioli E., Membrane distillation for high recovery factors in sea water desalination, Membrane distillation, osmotic distillation and membrane contactors, Cetraro, July 2-4 1998, Italy, 132 - 135.
  • (29) Gry ta M., Tomaszewska M., Morawski W., Oczyszczanie wód techniką destylacji membranowej, Inżynieria Chemiczna i Procesowa, 2001, 22, 311 - 322 .
  • (30) Zakrzewska-Trznadel G., Harasimowicz M., Chmielewski A.G., Membrane processes in nuclear technology-application for Iiquid radioactive waste treatment, Sep.Pur.Technology, 2001, 22 - 23,617 - 625.
  • (31) Gryta M., Karakulski K., The application of membrane distillation for the concentration of oil-water emulsions, Desalination, 1999, 121,23.
  • (32) Calabro v., Jiao B.L., Driolo E., Theoretical and experimental studyon membrane distillation in the concentration of orange juice, Ing. Eng.Chem.Res., 1994, 33, 1803.
  • (33) Bailey A.F.G., Barbe A.M., Hogan P.A., Johnson R.A., Sheng J., The effect of ultrafiltration on subsequent concentration of grape juice by osmotic distillation, J.Membrane Sci., 2000, 164, 195 - 204.
  • (34) Chlubek N., Tomaszewska M., Concentration of dairy wastes by membrane distillation, Envir. Prot. Eng., 1987, 13, 17.
  • (35) Calabro v., Pantano G., G. Kang G., Molinari R. and Drioli E., Experimental study on integrated membrane processes in the treat-ment of solutions simulating textiie effluents. Energy and exergy analysis, Desalination, 1990, 78, 257.
  • (36) Gryta M., Morawski A.W., Tomaszewska M., Ethanol production in membrane distillation bioreactor, Catalysis Today, 2000, 56, 159 - 165.
  • (37) Bhide, B.D., Voskericyan A., Stern S.A., Hybrid processes for the removal of acid gases from natural gas, J.Membrane Sci., 1998, 140, 27 - 49.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0002-0079
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