Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production

Martin Schmid, Thomas Wallek, Andreas Pfennig

Research output: Contribution to conference(Old data) Lecture or PresentationResearch

Original languageGerman
Publication statusPublished - 23 Aug 2014
Event21st International Congress of Chemical and Process Engineering CHISA - Prague
Duration: 23 Aug 201427 Aug 2014

Conference

Conference21st International Congress of Chemical and Process Engineering CHISA
CityPrague
Period23/08/1427/08/14

Fields of Expertise

  • Mobility & Production

Cite this

Schmid, M., Wallek, T., & Pfennig, A. (2014). Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production. 21st International Congress of Chemical and Process Engineering CHISA, Prague, .

Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production. / Schmid, Martin; Wallek, Thomas; Pfennig, Andreas.

2014. 21st International Congress of Chemical and Process Engineering CHISA, Prague, .

Research output: Contribution to conference(Old data) Lecture or PresentationResearch

Schmid, M, Wallek, T & Pfennig, A 2014, 'Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production' 21st International Congress of Chemical and Process Engineering CHISA, Prague, 23/08/14 - 27/08/14, .
Schmid M, Wallek T, Pfennig A. Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production. 2014. 21st International Congress of Chemical and Process Engineering CHISA, Prague, .
Schmid, Martin ; Wallek, Thomas ; Pfennig, Andreas. / Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production. 21st International Congress of Chemical and Process Engineering CHISA, Prague, .
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note = "21st International Congress of Chemical and Process Engineering CHISA ; Conference date: 23-08-2014 Through 27-08-2014",

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T1 - Alternatives to cryogenic distillation for the separation of light crack gases for ethylene production

AU - Schmid, Martin

AU - Wallek, Thomas

AU - Pfennig, Andreas

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Y1 - 2014/8/23

M3 - (Altdaten) Vortrag oder Präsentation

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