Hydrogen production from a DME reforming-membrane reactor using stainless steel-supported Knudsen membranes with high permeability

  • Park, Sang-Jun
  • Lee, Dong-Wook
  • Yu, Chang-Yeol
  • Lee, Kwan-Young
  • Lee, Kew-Ho
Citations

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19
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SCOPUS

23

초록

Stainless steel-supported composite membranes with the Knudsen-dominated permeation behavior were synthesized via the dipping-rolling-freezing-fast drying (DRFF) and soaking-rolling-freezing-fast drying (SRFF) method. A dimethyl ether (DME) steam reforming was performed in a membrane reactor using the stainless steel-supported Knudsen membrane (SKM) with remarkably high permeability. The Knudsen membrane with high permeability was used to improve DME conversion and hydrogen recovery. Compared to a conventional reactor, the DME conversion was improved up to 48% and the hydrogen recovery was 37-38% in the temperature range of 250-450 degrees C. Moreover, the DME steam reforming-membrane reactor was combined with water-gas shift (WGS) reaction in the permeate side of the membrane reactor to obtain high CO removal efficiency. As a result, the CO concentrations was significantly reduced to below 20 ppm in the permeate side of the membrane reactor via the WGS reaction in the temperature range of 300-450 degrees C. (C) 2008 Elsevier B.V. All rights reserved.

키워드

DME steam reformingwater-gas shift reactionKnudsen membranesSILICA MEMBRANESTHERMAL-STABILITYFUEL-CELLSMETHANOL
제목
Hydrogen production from a DME reforming-membrane reactor using stainless steel-supported Knudsen membranes with high permeability
저자
Park, Sang-JunLee, Dong-WookYu, Chang-YeolLee, Kwan-YoungLee, Kew-Ho
DOI
10.1016/j.memsci.2008.02.036
발행일
2008-06-20
유형
Article
저널명
Journal of Membrane Science
318
1-2
페이지
123 ~ 128