Filtros : "ÁGUA" "ASSAF, ELISABETE MOREIRA" "IQSC" Removidos: "Journal of Power Sources" "IQSC/UNIARA" Limpar

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  • Source: Methane. Unidade: IQSC

    Subjects: CATÁLISE, SOLVENTE, METANOL, ÁGUA, ETANOL

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    • ABNT

      ASENCIOS, Yvan Jesus Olortiga et al. Synthesis-Gas Production from Methane over Ni/CeO2 Catalysts Synthesized by Co-Precipitation Method in Different Solvents. Methane, v. 1, n. 2, p. 72-81, 2022Tradução . . Disponível em: https://doi.org/10.3390/methane1020007. Acesso em: 19 nov. 2024.
    • APA

      Asencios, Y. J. O., Elias, K. F. M., Zawadzki, A. de, & Assaf, E. M. (2022). Synthesis-Gas Production from Methane over Ni/CeO2 Catalysts Synthesized by Co-Precipitation Method in Different Solvents. Methane, 1( 2), 72-81. doi:10.3390/methane1020007
    • NLM

      Asencios YJO, Elias KFM, Zawadzki A de, Assaf EM. Synthesis-Gas Production from Methane over Ni/CeO2 Catalysts Synthesized by Co-Precipitation Method in Different Solvents [Internet]. Methane. 2022 ; 1( 2): 72-81.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/methane1020007
    • Vancouver

      Asencios YJO, Elias KFM, Zawadzki A de, Assaf EM. Synthesis-Gas Production from Methane over Ni/CeO2 Catalysts Synthesized by Co-Precipitation Method in Different Solvents [Internet]. Methane. 2022 ; 1( 2): 72-81.[citado 2024 nov. 19 ] Available from: https://doi.org/10.3390/methane1020007
  • Source: ACS Applied Energy Materials. Unidades: IFSC, IQSC, EP

    Subjects: ÁGUA, DIFRAÇÃO POR RAIOS X, ESPECTROSCOPIA

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    • ABNT

      COLETTA, Vitor Carlos et al. Cu-modified SrTiO3 perovskites toward enhanced water-gas shift catalysis: a combined experimental and computational study. ACS Applied Energy Materials, v. 4, n. Ja 2021, p. 452-461, 2021Tradução . . Disponível em: https://doi.org/10.1021/acsaem.0c02371. Acesso em: 19 nov. 2024.
    • APA

      Coletta, V. C., Gonçalves, R. V., Bernardi, M. I. B., Hanaor, D. A. H., Assadi , M. H. N., Marcos, F. C. F., et al. (2021). Cu-modified SrTiO3 perovskites toward enhanced water-gas shift catalysis: a combined experimental and computational study. ACS Applied Energy Materials, 4( Ja 2021), 452-461. doi:10.1021/acsaem.0c02371
    • NLM

      Coletta VC, Gonçalves RV, Bernardi MIB, Hanaor DAH, Assadi MHN, Marcos FCF, Nogueira FGE, Assaf EM, Mastelaro VR. Cu-modified SrTiO3 perovskites toward enhanced water-gas shift catalysis: a combined experimental and computational study [Internet]. ACS Applied Energy Materials. 2021 ; 4( Ja 2021): 452-461.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1021/acsaem.0c02371
    • Vancouver

      Coletta VC, Gonçalves RV, Bernardi MIB, Hanaor DAH, Assadi MHN, Marcos FCF, Nogueira FGE, Assaf EM, Mastelaro VR. Cu-modified SrTiO3 perovskites toward enhanced water-gas shift catalysis: a combined experimental and computational study [Internet]. ACS Applied Energy Materials. 2021 ; 4( Ja 2021): 452-461.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1021/acsaem.0c02371
  • Source: Applied Energy. Unidade: IQSC

    Subjects: ÁGUA, CÉLULAS A COMBUSTÍVEL

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    • ABNT

      MACIEL, Cristhiane Guimarães et al. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts. Applied Energy, v. 112, p. 52-59, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.apenergy.2013.06.003. Acesso em: 19 nov. 2024.
    • APA

      Maciel, C. G., Silva, T. de F., Assaf, E. M., & Assaf, J. M. (2013). Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts. Applied Energy, 112, 52-59. doi:10.1016/j.apenergy.2013.06.003
    • NLM

      Maciel CG, Silva T de F, Assaf EM, Assaf JM. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts [Internet]. Applied Energy. 2013 ; 112 52-59.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1016/j.apenergy.2013.06.003
    • Vancouver

      Maciel CG, Silva T de F, Assaf EM, Assaf JM. Hydrogen production and purification from the water-gas shift reaction on CuO/CeO2-TiO2 catalysts [Internet]. Applied Energy. 2013 ; 112 52-59.[citado 2024 nov. 19 ] Available from: https://doi.org/10.1016/j.apenergy.2013.06.003

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