화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.107, 100-108, March, 2022
Scandium-doped barium ceria ferrites-based composite mixed conducting hollow fiber membranes for H2 and O2 permeation
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BaCeO3-based ceramics are a unique class of perovskites that exhibit protonic and oxygen ionic conduction, which are ideal for high temperature hydrogen separation applications. This work features Sc-doped BCFe composites with nominal composition of BaCe0.70Fe0.30-xScxO3−δ (BCFSc) (x = 0, 0.05, 0.1, 0.15, and 0.2) that exhibit enhanced thermal, chemical, and mechanical stability. The BCFSc20 (x = 0.20) hollow fiber membranes demonstrated the highest hydrogen and oxygen fluxes among the Sc-doped composites of up to 0.32 and 0.20 mL min−1 cm−2, respectively, at 1000 °C. The BCFSc20 hollow fibers also displayed excellent stability under the hydrogen and oxygen permeation environments, while the permeation performance of the other BCFSc samples with low Sc content gradually deteriorated over the 120-h stability test.
  1. Medvedev D, Murashkina A, Pikalova E, Demin A, Podias A, Tsiakaras P, Prog. Mater. Sci., 60, 72 (2014)
  2. Song J, Wang Z, Tan X, Cui Y, Kawi S, Liu S, J. Membr. Sci., 635, 119513 (2021)
  3. Guan J, Dorris SE, Balachandran U, Liu M, Solid State Ion., 100, 45 (1997)
  4. Oh T, Yoon H, Li J, Wachsman ED, J. Membr. Sci., 345, 1 (2009)
  5. Iwahara H, Esaka T, Uchida H, Maeda N, Solid State Ion., 3, 359 (1981)
  6. Tarutina LR, Vdovin GK, Lyagaeva JG, Medvedev DA, J. Membr. Sci., 624, 119125 (2021)
  7. Ji Y, Yu X, Cao J, Ceram. Int., 47, 2115 (2021)
  8. Morejudo SH, Zanon R, Escolastico S, Yuste-Tirados I, Malerod-Fjeld H, Vestre PK et al., Science, 353, 563 (2016)
  9. Danilov N, Lyagaeva J, Kasyanova A, Vdovin G, Medvedev D, Demin A et al., Ionics, 23, 795 (2017)
  10. Iwahara H, Solid State Ion., 52, 99 (1992)
  11. Takahashi H, Oikawa I, Takamura H, J. Phys. Chem. C, 122, 6501 (2018)
  12. Hu T, Liang W, Xia X, Peng H, Jiang H, Catal. Today, 364, 125 (2021)
  13. Cheng H, Wang X, Meng X, Meng BO, Sunarso J, Tan X et al., J. Membr. Sci., 601, 117801 (2020)
  14. Exner J, Nazarenus T, Kita J, Moos R, Int. J. Hydrog. Energy, 45(16), 10000 (2020)
  15. Rebollo E, Mortal? C, Escolastico S, Boldrini S, Barison S, Serra JM et al., Energ. Environ. Sci., 8(12), 3675 (2015)
  16. Zhang C, Zhao H, Solid State Ion., 181, 1478 (2010)
  17. Tan X, Song J, Meng X, Meng B, J. European Ceram. Soc., 32, 2351 (2012)
  18. Song J, Li LP, Tan XY, Li K, Int. J. Hydrog. Energy, 38, 7904 (2013)
  19. Cai M, Liu S, Efimov K, Caro J, Feldhoff A, Wang H, J. Membr. Sci., 343, 90 (2009)
  20. Li GT, Xiong GX, Sheng SS, Yang WS, Chin. Chem. Lett., 12, 937 (2001)
  21. Gaudillere C, Garcia-Fayos J, Serra JM, ChemPlusChem, 79, 1720 (2014)
  22. Brisotto M, Cernuschi F, Drago F, Lenardi C, Rosa P, Meneghini C et al., J. European Ceram. Soc., 36, 1679 (2016)
  23. Guo SB, Zhu JW, Liu ZK, Jiang X, Zhang ZC, Jin WQ, Ind. Eng. Chem. Res., 54, 6985 (2015)
  24. Song J, Feng B, Tan X, Han N, Sunarso J, Liu S, J. Membr. Sci., 581, 393 (2019)
  25. Cheng SF, Wang YJ, Zhuang LB, Xue J, Wei YY, Feldhoff A et al., Angew. Chem.-Int. Edit., 55, 10895 (2016)
  26. Oikawa I, Takamura H, Chem. Mater., 27, 6660 (2015)
  27. Liu XJ, Han D, Zhou YC, Meng X, Wu H, Li JL et al., J. Power Sources, 246, 457 (2014)
  28. Song J, Meng B, Tan X, Ceram. Int., 42, 13278 (2016)
  29. Zhu ZW, Sun WP, Yan LT, Liu WF, Liu W, Int. J. Hydrog. Energy, 36, 6337 (2011)
  30. Song F, Zhuang S, Tan X, Liu S, AIChE J., 65, 777 (2019)
  31. Gallucci F, Fernandez E, Corengia P, van Sint Annaland M, Chem. Eng. Sci., 92, 40 (2013)
  32. Mahato N, Banerjee A, Gupta A, Omar S, Balani K, Prog. Mater. Sci., 72, 141 (2015)
  33. An R, Song J, Li Y, Tan X, Sunarso J, Zhang C et al., J. Membr. Sci., 527, 137 (2017)
  34. Song J, Feng B, Chu Y, Tan X, Gao J, Han N et al., Ceram. Int., 45, 12579 (2019)
  35. Song J, Qiu Z, Gao J, Tan X, Sunarso J, Wang S et al., Sep. Purif. Technol., 207, 133 (2018)
  36. Rormark L, Wiik K, Stolen S, Grande T, J. Mater. Chem., 12, 1058 (2002)
  37. Zhang JX, Zhang ZB, Chen Y, Xu XM, Zhou C, Yang GM et al., J. Membr. Sci., 566, 278 (2018)
  38. Meng B, Wang Z, Tan X, Liu S, J. European Ceram. Soc., 29, 2815 (2009)
  39. Yin Y, Xiong M, Yang N, Tong Z, Guo Y, Ma Z et al., Int. J. Hydrog. Energy, 36, 3989 (2011)
  40. ICDD PDF-2 Release 2004, in, Joint Committee on Powder Diffraction Standards (JCPDS) - International Centre for Diffraction Data (ICDD), Pennsylvania, pp. Powder Diffraction File (PDF) database, 2004.
  41. Shannon RD, Acta Crystallogr. Sect. A, 32, 751 (1976)
  42. Tan L, Gu XH, Yang L, Zhang LX, Wang CQ, Xu NP, Sep. Purif. Technol., 32, 307 (2003)
  43. Jiang SS, Sunarso J, Zhou W, Shen J, Ran R, Shao ZP, J. Power Sources, 298, 209 (2015)
  44. Zhou W, Ran R, Shao ZP, Jin WQ, Xu NP, J. Power Sources, 182, 24 (2008)
  45. Mai A, Tietz F, Stover D, Solid State Ion., 173, 35 (2004)
  46. Li X, Jiang X, Xu H, Xu Q, Jiang L, Shi Y et al., Int. J. Hydrog. Energy, 38, 12035 (2013)
  47. Gu HX, Zheng Y, Ran R, Shao ZP, Jin XQ, Xu NP et al., J. Power Sources, 183, 471 (2008)
  48. Kokarovtseva IG, Belyaev IN, Semenyakova LV, Russ. Chem. Rev., 41, 929 (1972)
  49. Yamanaka S, Fujikane M, Hamaguchi T, Muta H, Oyama T, Matsuda T et al., J. Alloy. Compd., 359, 109 (2003)
  50. Wei YY, Xue J, Wang HH, Caro J, J. Membr. Sci., 488, 173 (2015)
  51. Song J, Li L, Tan X, Li K, Int. J. Hydrog. Energy, 38, 7904 (2013)
  52. Zhuang L, Li J, Xue J, Jiang Z, Wang H, Ceram. Int., 45, 10120 (2019)
  53. Ma X, Yang C, Chen H, Lv Q, Sun K, Li W, Sep. Purif. Technol., 236, 116276 (2020)
  54. Tan XY, Shi LL, Hao GZ, Meng B, Liu SM, Sep. Purif. Technol., 96, 89 (2012)
  55. Matsumoto H, Kawasaki Y, Ito N, Enoki M, Ishihara T, Electrochem. Solid State Lett., 10, B77 (2007)