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2000 | 09 | 1 |

Tytuł artykułu

Membrane techniques in air cleaning

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The state of the art of application of membrane techniques for air cleaning is presented. The most characteristic parameters of membrane separation of gases and vapours are described. Separation of gases and vapours has been applied practically in the industry for the following areas: removal of volatile organics from the air and from industrial waste flows, oxygen enrichment of air and vice versa and the membrane absorption process.

Wydawca

-

Rocznik

Tom

09

Numer

1

Opis fizyczny

p.1-12,fig.

Twórcy

autor
  • Silesian Technical University, Konarskiego 18, 44-100 Gliwice, Poland

Bibliografia

  • 1. MULDER M., The use of membrane processes in environmental problems. An introduction, in: "Membrane Processes in Separation and Purification" (Crepso J.G., Boddeker K.W., Eds.), Kluwer Academic Publishers, Dordrecht-Boston-London, pp.229-262, 1994.
  • 2. RAUTENBACH R., EHRESMAN H., Upgrading of landfill gas by membranes - process design and cost evaluation, AIChE.Symp.Ser., 85 (272), 48, 1989.
  • 3. RAUTENBACH R., WELSCH K., Treatment of landfill gas by gas permeation - pilot plant results and comparison to alternatives., Desalination, 90, 193, 1993.
  • 4. DICKINSON R.E., CICERONE R.J., Future global warning from atmospheric trace gases, Nature, pp.109-115, 1986.
  • 5. MULDER M., Basic Principles of Membrane Technology, Kluwer Academic Publishers, Dordrecht-Boston-London 1991.
  • 6. CEN Y, LICHTENTHALER R.N., Vapour permeation, in: "Membrane Separation Technology. Principles and Applications" (Noble R.D., Stern S.A., Eds.), Elsevier Science, Amsterdam - Lausanne - New York - Oxford - Shannon - Tokyo, pp. 85-109, 1995.
  • 7. NEEL J., Pervaporation, in "Membrane Separation Technology. Principles and Applications" (Noble R.D., Stern S.A., Eds.), Elsevier, Amsterdam, pp.143-211, 1995.
  • 8. GROBER H., ERK S., GRIGULL U., Fundamentals of Heat Transfer, Me Graw-Hill, New York 1961.
  • 9. PEINEMANN K.V., OHLROGGE K, Separation of organic vapours from air with membranes, in: "Membrane Processes in Separation and Purification" (Crepso J.G., BOddeker K.W., Eds.), Kluwer Academic Publishers, Dordrecht-Boston-London, , pp.357-372, 1994.
  • 10. OHLROGGE K., KYBURZ E., SCHLICHT B., Membranferfahren mit integrierter Druckwechseladsorption - Eineneue Generation der Kohlenwasserstoff-Ruckgcwinnungsanlagen, DGMK - Tagungsbericht, 9303 pp. 31-40, 1993.
  • 11. JANSEN A.E., KLAASSEN R, FERON P.H.M., HANEMAAIJER J.H., MEULEN B., Membrane gas adsorption processes in environmental applications, in: "Membrane Processes in Separation and Purification" (Crepso J.G., Boddeker K.W., Eds.), Kluwer Academic Publishers, Dordrecht-Boston-London, pp. 343-356, 1994.
  • 12. SPILLMAN R., Economics of gas separation membrane processes, in: "Membrane Separation Technology. Principles and Applications" (Noble R.D., Stern S.A., Eds.), Elsevier Science, Amsterdam-Lausanne-New York-Oxford-Shannon-Tokyo, pp. 589-663, 1995.
  • 13. TURLEY J., GAINULLIN F.G., IRKLEY A.A., Nitrogen production by means of membrane technology for safety en hancement in marine and on-shore petroleum and natural gas facilities, in: Effective Industrial Membrane Processes - Benefits and Opportunities (Turner M.K. Ed.), Elsevier Applied Science, London-New York, pp.345-380, 1991.
  • 14. SCOTT K., Handbook of Industrial Membranes, Elsevier Advanced Technology, Oxford 1995.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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