4.5 Article

Investigation of La1-xSrxCrO3-δ (x ∼ 0.1) as Membrane for Hydrogen Production

期刊

MEMBRANES
卷 2, 期 3, 页码 665-686

出版社

MDPI AG
DOI: 10.3390/membranes2030665

关键词

hydrogen transport membrane; proton permeation; oxygen permeation; water splitting

资金

  1. BIGCCS Centre
  2. Aker Solutions
  3. ConocoPhillips
  4. Det Norske Verita
  5. Gassco
  6. Hydro
  7. Shell
  8. Statoil
  9. TOTAL
  10. GDF SUEZ
  11. Research Council of Norway [193816/S60]

向作者/读者索取更多资源

Various inorganic membranes have demonstrated good capability to separate hydrogen from other gases at elevated temperatures. Hydrogen-permeable, dense, mixed proton-electron conducting ceramic oxides offer superior selectivity and thermal stability, but chemically robust candidates with higher ambipolar protonic and electronic conductivity are needed. In this work, we present for the first time the results of various investigations of La1-xSrxCrO3-delta. membranes for hydrogen production. We aim in particular to elucidate the material's complex transport properties, involving co-ionic transport of oxide ions and protons, in addition to electron holes. This opens some new possibilities for efficient heat and mass transfer management in the production of hydrogen. Conductivity measurements as a function of pH(2) at constant pO(2) exhibit changes that reveal a significant hydration and presence of protons. The flux and production of hydrogen have been measured under different chemical gradients. In particular, the effect of water vapor in the feed and permeate gas stream sides was investigated with the aim of quantifying the ratio of hydrogen production by hydrogen flux from feed to permeate and oxygen flux the opposite way (water splitting). Deuterium labeling was used to unambiguously prove flux of hydrogen species.

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