Filtros : "Indexado no Chemical Abstracts" "ETANOL" Removidos: "IDOSOS" "Coimbra, Norberto Cysne" "TAKAHASHI, CATARINA SATIE" "1985" Limpar

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  • Source: ECS Transactions. Unidade: IQSC

    Subjects: ELETRÓLISE, ETANOL

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      FARO, Massimiliano Lo et al. Bioethanol-Aided Electrolysis of H2O. ECS Transactions, v. 111, n. 6, p. 1195, 2023Tradução . . Disponível em: https://doi.org/10.1149/11106.1195. Acesso em: 14 set. 2024.
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      Faro, M. L., Ometto, F. B., Perez, J., & Ticianelli, E. A. (2023). Bioethanol-Aided Electrolysis of H2O. ECS Transactions, 111( 6), 1195. doi:10.1149/11106.1195
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      Faro ML, Ometto FB, Perez J, Ticianelli EA. Bioethanol-Aided Electrolysis of H2O [Internet]. ECS Transactions. 2023 ; 111( 6): 1195.[citado 2024 set. 14 ] Available from: https://doi.org/10.1149/11106.1195
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      Faro ML, Ometto FB, Perez J, Ticianelli EA. Bioethanol-Aided Electrolysis of H2O [Internet]. ECS Transactions. 2023 ; 111( 6): 1195.[citado 2024 set. 14 ] Available from: https://doi.org/10.1149/11106.1195
  • Source: Nature Communications. Unidade: FMRP

    Subjects: ETANOL, ENTEROPATIAS INFLAMATÓRIAS, HEPATOPATIAS, ÁLCOOL

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      MARTINO, Cameron et al. Acetate reprograms gut microbiota during alcohol consumption. Nature Communications, v. 13, n. 1, p. 1-11, 2022Tradução . . Disponível em: https://doi.org/10.1038/s41467-022-31973-2. Acesso em: 14 set. 2024.
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      Martino, C., Zaramela, L. S., Gao, B., Embree, M., Tarasova, J., Parker, S. J., et al. (2022). Acetate reprograms gut microbiota during alcohol consumption. Nature Communications, 13( 1), 1-11. doi:10.1038/s41467-022-31973-2
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      Martino C, Zaramela LS, Gao B, Embree M, Tarasova J, Parker SJ, Wang Y, Chu H, Chen P, Lee K-C, Galzerani DD, Gengatharan JM, Lekbua A, Neal M, Knight R, Tsukamoto H, Metallo CM, Schnabl B, Zengler K. Acetate reprograms gut microbiota during alcohol consumption [Internet]. Nature Communications. 2022 ; 13( 1): 1-11.[citado 2024 set. 14 ] Available from: https://doi.org/10.1038/s41467-022-31973-2
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      Martino C, Zaramela LS, Gao B, Embree M, Tarasova J, Parker SJ, Wang Y, Chu H, Chen P, Lee K-C, Galzerani DD, Gengatharan JM, Lekbua A, Neal M, Knight R, Tsukamoto H, Metallo CM, Schnabl B, Zengler K. Acetate reprograms gut microbiota during alcohol consumption [Internet]. Nature Communications. 2022 ; 13( 1): 1-11.[citado 2024 set. 14 ] Available from: https://doi.org/10.1038/s41467-022-31973-2
  • Source: Electrocatalysis. Unidade: IQSC

    Subjects: ELETROQUÍMICA, ETANOL, DIÓXIDO DE CARBONO

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      BARBOSA, A. F. B. et al. Electrooxidation of Acetaldehyde on Pt(111) Surface Modified by Random Defects and Tin Decoration. Electrocatalysis, v. 12, p. 36-44, 2021Tradução . . Disponível em: https://doi.org/10.1007/s12678-020-00628-5. Acesso em: 14 set. 2024.
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      Barbosa, A. F. B., Del Colle, V., Previdello, B. A. F., & Tremiliosi Filho, G. (2021). Electrooxidation of Acetaldehyde on Pt(111) Surface Modified by Random Defects and Tin Decoration. Electrocatalysis, 12, 36-44. doi:10.1007/s12678-020-00628-5
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      Barbosa AFB, Del Colle V, Previdello BAF, Tremiliosi Filho G. Electrooxidation of Acetaldehyde on Pt(111) Surface Modified by Random Defects and Tin Decoration [Internet]. Electrocatalysis. 2021 ; 12 36-44.[citado 2024 set. 14 ] Available from: https://doi.org/10.1007/s12678-020-00628-5
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      Barbosa AFB, Del Colle V, Previdello BAF, Tremiliosi Filho G. Electrooxidation of Acetaldehyde on Pt(111) Surface Modified by Random Defects and Tin Decoration [Internet]. Electrocatalysis. 2021 ; 12 36-44.[citado 2024 set. 14 ] Available from: https://doi.org/10.1007/s12678-020-00628-5
  • Source: Journal of AOAC INTERNATIONAL. Unidades: FFCLRP, FCFRP

    Subjects: COVID-19, CROMATOGRAFIA, ETANOL, DESINFETANTES, PANDEMIAS

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      COSTA, Bruno Ruiz Brandão da et al. Quantifying ethanol in ethanol-based hand sanitizers by headspace gas chromatography with flame ionization detector (HS-GC/FID). Journal of AOAC INTERNATIONAL, v. 105, n. 1, p. 11-18, 2021Tradução . . Disponível em: https://doi.org/10.1093/jaoacint/qsab121. Acesso em: 14 set. 2024.
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      Costa, B. R. B. da, El Haddad, L. P., Bigão, V. L. C. P., & Martinis, B. S. de. (2021). Quantifying ethanol in ethanol-based hand sanitizers by headspace gas chromatography with flame ionization detector (HS-GC/FID). Journal of AOAC INTERNATIONAL, 105( 1), 11-18. doi:10.1093/jaoacint/qsab121
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      Costa BRB da, El Haddad LP, Bigão VLCP, Martinis BS de. Quantifying ethanol in ethanol-based hand sanitizers by headspace gas chromatography with flame ionization detector (HS-GC/FID) [Internet]. Journal of AOAC INTERNATIONAL. 2021 ; 105( 1): 11-18.[citado 2024 set. 14 ] Available from: https://doi.org/10.1093/jaoacint/qsab121
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      Costa BRB da, El Haddad LP, Bigão VLCP, Martinis BS de. Quantifying ethanol in ethanol-based hand sanitizers by headspace gas chromatography with flame ionization detector (HS-GC/FID) [Internet]. Journal of AOAC INTERNATIONAL. 2021 ; 105( 1): 11-18.[citado 2024 set. 14 ] Available from: https://doi.org/10.1093/jaoacint/qsab121
  • Source: Journal of Electroanalytical Chemistry. Unidade: IQSC

    Subjects: CÉLULAS A COMBUSTÍVEL, ETANOL

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      SANTOS, Dara S. et al. Improved carbon dioxide selectivity during ethanol electrooxidation in acid media by Pb@Pt/C and Pb@PtSn/C electrocatalysts. Journal of Electroanalytical Chemistry, v. 879, p. 114741, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.jelechem.2020.114741. Acesso em: 14 set. 2024.
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      Santos, D. S., Almeida, C. V. S., Tremiliosi Filho, G., Eguiluz, K. I. B., & Salazar-Banda, G. R. (2020). Improved carbon dioxide selectivity during ethanol electrooxidation in acid media by Pb@Pt/C and Pb@PtSn/C electrocatalysts. Journal of Electroanalytical Chemistry, 879, 114741. doi:10.1016/j.jelechem.2020.114741
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      Santos DS, Almeida CVS, Tremiliosi Filho G, Eguiluz KIB, Salazar-Banda GR. Improved carbon dioxide selectivity during ethanol electrooxidation in acid media by Pb@Pt/C and Pb@PtSn/C electrocatalysts [Internet]. Journal of Electroanalytical Chemistry. 2020 ;879 114741.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2020.114741
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      Santos DS, Almeida CVS, Tremiliosi Filho G, Eguiluz KIB, Salazar-Banda GR. Improved carbon dioxide selectivity during ethanol electrooxidation in acid media by Pb@Pt/C and Pb@PtSn/C electrocatalysts [Internet]. Journal of Electroanalytical Chemistry. 2020 ;879 114741.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2020.114741
  • Source: Journal of Catalysis. Unidade: IQSC

    Subjects: CÉLULAS A COMBUSTÍVEL, ETANOL

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      ALMEIDA, Caio V.S. et al. Improved ethanol electro-oxidation at Ni@Pd/C and Ni@PdRh/C core–shell catalysts. Journal of Catalysis, v. no 2020, p. 175-189 , 2020Tradução . . Disponível em: https://doi.org/10.1016/j.jcat.2020.08.024. Acesso em: 14 set. 2024.
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      Almeida, C. V. S., Tremiliosi Filho, G., Eguiluz, K. I. B., & Banda, G. R. S. (2020). Improved ethanol electro-oxidation at Ni@Pd/C and Ni@PdRh/C core–shell catalysts. Journal of Catalysis, no 2020, 175-189 . doi:10.1016/j.jcat.2020.08.024
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      Almeida CVS, Tremiliosi Filho G, Eguiluz KIB, Banda GRS. Improved ethanol electro-oxidation at Ni@Pd/C and Ni@PdRh/C core–shell catalysts [Internet]. Journal of Catalysis. 2020 ; no 2020 175-189 .[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jcat.2020.08.024
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      Almeida CVS, Tremiliosi Filho G, Eguiluz KIB, Banda GRS. Improved ethanol electro-oxidation at Ni@Pd/C and Ni@PdRh/C core–shell catalysts [Internet]. Journal of Catalysis. 2020 ; no 2020 175-189 .[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jcat.2020.08.024
  • Source: Journal of Electroanalytical Chemistry. Unidade: IQSC

    Subjects: ELETROQUÍMICA, ETANOL, OXIDAÇÃO

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      BARBOSA, Amaury Franklin Benvindo et al. Effect of tin deposition over electrogenerated randomdefects on Pt(111) surfaces onto ethanol electrooxidation: electrochemical and FTIR studies. Journal of Electroanalytical Chemistry, v. 857, p. 113734, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.jelechem.2019.113734. Acesso em: 14 set. 2024.
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      Barbosa, A. F. B., Del Colle, V., Silva, N. A. G., & Tremiliosi Filho, G. (2020). Effect of tin deposition over electrogenerated randomdefects on Pt(111) surfaces onto ethanol electrooxidation: electrochemical and FTIR studies. Journal of Electroanalytical Chemistry, 857, 113734. doi:10.1016/j.jelechem.2019.113734
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      Barbosa AFB, Del Colle V, Silva NAG, Tremiliosi Filho G. Effect of tin deposition over electrogenerated randomdefects on Pt(111) surfaces onto ethanol electrooxidation: electrochemical and FTIR studies [Internet]. Journal of Electroanalytical Chemistry. 2020 ;857 113734.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2019.113734
    • Vancouver

      Barbosa AFB, Del Colle V, Silva NAG, Tremiliosi Filho G. Effect of tin deposition over electrogenerated randomdefects on Pt(111) surfaces onto ethanol electrooxidation: electrochemical and FTIR studies [Internet]. Journal of Electroanalytical Chemistry. 2020 ;857 113734.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2019.113734
  • Source: Journal of Electroanalytical Chemistry. Unidade: IQSC

    Subjects: FOTOCATÁLISE, METANOL, ETANOL

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      CARDOSO, Juliano Carvalho et al. The effective role of ascorbic acid in the photoelectrocatalytic reduction of CO2 preconcentrated on TiO2 nanotubes modified by ZIF-8. Journal of Electroanalytical Chemistry, v. 856, p. 113384, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.jelechem.2019.113384. Acesso em: 14 set. 2024.
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      Cardoso, J. C., Stulp, S., De-Souza, M. K. R., Hudari, F. F., Gubiani, J. R., Frem, R. C. G., & Zanoni, M. V. B. (2020). The effective role of ascorbic acid in the photoelectrocatalytic reduction of CO2 preconcentrated on TiO2 nanotubes modified by ZIF-8. Journal of Electroanalytical Chemistry, 856, 113384. doi:10.1016/j.jelechem.2019.113384
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      Cardoso JC, Stulp S, De-Souza MKR, Hudari FF, Gubiani JR, Frem RCG, Zanoni MVB. The effective role of ascorbic acid in the photoelectrocatalytic reduction of CO2 preconcentrated on TiO2 nanotubes modified by ZIF-8 [Internet]. Journal of Electroanalytical Chemistry. 2020 ;856 113384.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2019.113384
    • Vancouver

      Cardoso JC, Stulp S, De-Souza MKR, Hudari FF, Gubiani JR, Frem RCG, Zanoni MVB. The effective role of ascorbic acid in the photoelectrocatalytic reduction of CO2 preconcentrated on TiO2 nanotubes modified by ZIF-8 [Internet]. Journal of Electroanalytical Chemistry. 2020 ;856 113384.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2019.113384
  • Source: Journal of Electroanalytical Chemistry. Unidade: IQSC

    Subjects: ELETROQUÍMICA, ETANOL

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      BARBOSA, Amaury Franklyn Benvindo et al. Reprint of "Effect of tin deposition over electrogenerated random defects on Pt(111) surfaces onto ethanol electrooxidation: Electrochemical and FTIR studies. Journal of Electroanalytical Chemistry, v. 875, p. 114758, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.jelechem.2020.114758. Acesso em: 14 set. 2024.
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      Barbosa, A. F. B., Del Colle, V., Galiote, N. A., & Tremiliosi Filho, G. (2020). Reprint of "Effect of tin deposition over electrogenerated random defects on Pt(111) surfaces onto ethanol electrooxidation: Electrochemical and FTIR studies. Journal of Electroanalytical Chemistry, 875, 114758. doi:10.1016/j.jelechem.2020.114758
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      Barbosa AFB, Del Colle V, Galiote NA, Tremiliosi Filho G. Reprint of "Effect of tin deposition over electrogenerated random defects on Pt(111) surfaces onto ethanol electrooxidation: Electrochemical and FTIR studies [Internet]. Journal of Electroanalytical Chemistry. 2020 ; 875 114758.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2020.114758
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      Barbosa AFB, Del Colle V, Galiote NA, Tremiliosi Filho G. Reprint of "Effect of tin deposition over electrogenerated random defects on Pt(111) surfaces onto ethanol electrooxidation: Electrochemical and FTIR studies [Internet]. Journal of Electroanalytical Chemistry. 2020 ; 875 114758.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2020.114758
  • Source: Canadian Journal of Physiology and Pharmacology. Unidades: FMRP, EERP

    Subjects: ETANOL, ESTRESSE OXIDATIVO, BEXIGA

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      VALE, Gabriel Tavares do et al. Chronic ethanol consumption induces micturition dysfunction and alters the oxidative state of the urinary bladder. Canadian Journal of Physiology and Pharmacology, v. 97, n. 12, p. 1103-1114, 2019Tradução . . Disponível em: https://doi.org/10.1139/cjpp-2019-0143. Acesso em: 14 set. 2024.
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      Vale, G. T. do, Sousa, A. H. de, Gonzaga, N. de A., Oliveira, M. G. de, Justo, A. F. O., Alexandre, E. C., et al. (2019). Chronic ethanol consumption induces micturition dysfunction and alters the oxidative state of the urinary bladder. Canadian Journal of Physiology and Pharmacology, 97( 12), 1103-1114. doi:10.1139/cjpp-2019-0143
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      Vale GT do, Sousa AH de, Gonzaga N de A, Oliveira MG de, Justo AFO, Alexandre EC, Tanus-Santos JE, Antunes E, Tirapelli CR. Chronic ethanol consumption induces micturition dysfunction and alters the oxidative state of the urinary bladder [Internet]. Canadian Journal of Physiology and Pharmacology. 2019 ; 97( 12): 1103-1114.[citado 2024 set. 14 ] Available from: https://doi.org/10.1139/cjpp-2019-0143
    • Vancouver

      Vale GT do, Sousa AH de, Gonzaga N de A, Oliveira MG de, Justo AFO, Alexandre EC, Tanus-Santos JE, Antunes E, Tirapelli CR. Chronic ethanol consumption induces micturition dysfunction and alters the oxidative state of the urinary bladder [Internet]. Canadian Journal of Physiology and Pharmacology. 2019 ; 97( 12): 1103-1114.[citado 2024 set. 14 ] Available from: https://doi.org/10.1139/cjpp-2019-0143
  • Source: Cytokine. Unidades: FMRP, EERP

    Subjects: ESTRESSE OXIDATIVO, ETANOL, CITOTOXINAS, SEPSE, INTERLEUCINAS

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      NAKASHIMA, Marcelo A. et al. Chronic ethanol consumption increases reactive oxygen species generation and the synthesis of pro-inflammatory proteins in the heart through TNFR1-dependent mechanisms. Cytokine, v. 121, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.cyto.2019.154734. Acesso em: 14 set. 2024.
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      Nakashima, M. A., Silva, C. B. P. da, Gonzaga, N. de A., Simplicio, J. A., Omoto, A. C. M., Tirapelli, L. F., et al. (2019). Chronic ethanol consumption increases reactive oxygen species generation and the synthesis of pro-inflammatory proteins in the heart through TNFR1-dependent mechanisms. Cytokine, 121. doi:10.1016/j.cyto.2019.154734
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      Nakashima MA, Silva CBP da, Gonzaga N de A, Simplicio JA, Omoto ACM, Tirapelli LF, Tanus-Santos JE, Tirapelli CR. Chronic ethanol consumption increases reactive oxygen species generation and the synthesis of pro-inflammatory proteins in the heart through TNFR1-dependent mechanisms [Internet]. Cytokine. 2019 ; 121[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.cyto.2019.154734
    • Vancouver

      Nakashima MA, Silva CBP da, Gonzaga N de A, Simplicio JA, Omoto ACM, Tirapelli LF, Tanus-Santos JE, Tirapelli CR. Chronic ethanol consumption increases reactive oxygen species generation and the synthesis of pro-inflammatory proteins in the heart through TNFR1-dependent mechanisms [Internet]. Cytokine. 2019 ; 121[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.cyto.2019.154734
  • Source: Fuel. Unidade: IQSC

    Subjects: QUÍMICA, BIOCOMBUSTÍVEIS, ETANOL, METANOL

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      KOCK, Flávio Vinicius Crizóstomo et al. Time-domain NMR: A novel analytical method to quantify adulteration of ethanol fuel with methanol. Fuel, v. 258, p. 116158 , 2019Tradução . . Disponível em: https://doi.org/10.1016/j.fuel.2019.116158. Acesso em: 14 set. 2024.
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      Kock, F. V. C., Rocha, T. C., Araújo, G. M., Simões, F. R., Colnago, L. A., & Barbosa, L. L. (2019). Time-domain NMR: A novel analytical method to quantify adulteration of ethanol fuel with methanol. Fuel, 258, 116158 . doi:10.1016/j.fuel.2019.116158
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      Kock FVC, Rocha TC, Araújo GM, Simões FR, Colnago LA, Barbosa LL. Time-domain NMR: A novel analytical method to quantify adulteration of ethanol fuel with methanol [Internet]. Fuel. 2019 ; 258 116158 .[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.fuel.2019.116158
    • Vancouver

      Kock FVC, Rocha TC, Araújo GM, Simões FR, Colnago LA, Barbosa LL. Time-domain NMR: A novel analytical method to quantify adulteration of ethanol fuel with methanol [Internet]. Fuel. 2019 ; 258 116158 .[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.fuel.2019.116158
  • Source: Bioelectrochemistry. Unidade: IQSC

    Subjects: CARBONO, ENERGIA, ETANOL

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      PAGNONCELLI, Kamila Cássia et al. Ethanol generation, oxidation and energy production in a cooperative bioelectrochemical system. Bioelectrochemistry, v. 122, p. 11-25, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.bioelechem.2018.02.007. Acesso em: 14 set. 2024.
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      Pagnoncelli, K. C., Pereira, A. R., Sedenho, G. C., Bertaglia, T., & Crespilho, F. N. (2018). Ethanol generation, oxidation and energy production in a cooperative bioelectrochemical system. Bioelectrochemistry, 122, 11-25. doi:10.1016/j.bioelechem.2018.02.007
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      Pagnoncelli KC, Pereira AR, Sedenho GC, Bertaglia T, Crespilho FN. Ethanol generation, oxidation and energy production in a cooperative bioelectrochemical system [Internet]. Bioelectrochemistry. 2018 ;122 11-25.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.bioelechem.2018.02.007
    • Vancouver

      Pagnoncelli KC, Pereira AR, Sedenho GC, Bertaglia T, Crespilho FN. Ethanol generation, oxidation and energy production in a cooperative bioelectrochemical system [Internet]. Bioelectrochemistry. 2018 ;122 11-25.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.bioelechem.2018.02.007
  • Source: Surface Science. Unidade: IQSC

    Subjects: ADSORÇÃO, ÁGUA, ETANOL

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      SEMINOVSKI, Yohanna et al. Role of the anionic and cationic pt sites in the adsorption site preference of water and ethanol on defected Pt4/Pt(111) substrates: a density functional theory investigation within the D3 van der waals corrections. Surface Science, v. 667, p. 84-91, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.sus.2017.10.002. Acesso em: 14 set. 2024.
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      Seminovski, Y., Amaral, R. C., Tereshchuk, P., & Silva, J. L. F. da. (2018). Role of the anionic and cationic pt sites in the adsorption site preference of water and ethanol on defected Pt4/Pt(111) substrates: a density functional theory investigation within the D3 van der waals corrections. Surface Science, 667, 84-91. doi:10.1016/j.sus.2017.10.002
    • NLM

      Seminovski Y, Amaral RC, Tereshchuk P, Silva JLF da. Role of the anionic and cationic pt sites in the adsorption site preference of water and ethanol on defected Pt4/Pt(111) substrates: a density functional theory investigation within the D3 van der waals corrections [Internet]. Surface Science. 2018 ; 667 84-91.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.sus.2017.10.002
    • Vancouver

      Seminovski Y, Amaral RC, Tereshchuk P, Silva JLF da. Role of the anionic and cationic pt sites in the adsorption site preference of water and ethanol on defected Pt4/Pt(111) substrates: a density functional theory investigation within the D3 van der waals corrections [Internet]. Surface Science. 2018 ; 667 84-91.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.sus.2017.10.002
  • Source: Applied Catalysis B: Environmental. Unidade: IQSC

    Subjects: CÉLULAS A COMBUSTÍVEL, ETANOL

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      LO FARO, M et al. Solid oxide fuel cells fed with dry ethanol: the effect of a perovskite protective anodic layer containing dispersed Ni-alloy @ FeOx core-shell nanoparticles. Applied Catalysis B: Environmental, v. 220, p. 98-110, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.apcatb.2017.08.010. Acesso em: 14 set. 2024.
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      Lo Faro, M., Reis, R. M., Saglietti, G. G. A., Oliveira, V. L., Zignani, S. C., Trocino, S., et al. (2018). Solid oxide fuel cells fed with dry ethanol: the effect of a perovskite protective anodic layer containing dispersed Ni-alloy @ FeOx core-shell nanoparticles. Applied Catalysis B: Environmental, 220, 98-110. doi:10.1016/j.apcatb.2017.08.010
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      Lo Faro M, Reis RM, Saglietti GGA, Oliveira VL, Zignani SC, Trocino S, Maisano S, Ticianelli EA, Hodnik N, Ruiz-Zepeda F, Aricò AS. Solid oxide fuel cells fed with dry ethanol: the effect of a perovskite protective anodic layer containing dispersed Ni-alloy @ FeOx core-shell nanoparticles [Internet]. Applied Catalysis B: Environmental. 2018 ; 220 98-110.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.apcatb.2017.08.010
    • Vancouver

      Lo Faro M, Reis RM, Saglietti GGA, Oliveira VL, Zignani SC, Trocino S, Maisano S, Ticianelli EA, Hodnik N, Ruiz-Zepeda F, Aricò AS. Solid oxide fuel cells fed with dry ethanol: the effect of a perovskite protective anodic layer containing dispersed Ni-alloy @ FeOx core-shell nanoparticles [Internet]. Applied Catalysis B: Environmental. 2018 ; 220 98-110.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.apcatb.2017.08.010
  • Source: Journal of Electroanalytical Chemistry. Unidade: IQSC

    Assunto: ETANOL

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      SILVA, W. O et al. Faradaic efficiency of ethanol oxidation to CO2 at metallic nanoparticle/ short-side-chain PFSA solid-state electrolyte interfaces investigated by online DEMS. Journal of Electroanalytical Chemistry, v. 824, p. 99-107, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.jelechem.2018.07.035. Acesso em: 14 set. 2024.
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      Silva, W. O., Queiroz, A. C., Paganin, V. A., & Lima, F. H. B. de. (2018). Faradaic efficiency of ethanol oxidation to CO2 at metallic nanoparticle/ short-side-chain PFSA solid-state electrolyte interfaces investigated by online DEMS. Journal of Electroanalytical Chemistry, 824, 99-107. doi:10.1016/j.jelechem.2018.07.035
    • NLM

      Silva WO, Queiroz AC, Paganin VA, Lima FHB de. Faradaic efficiency of ethanol oxidation to CO2 at metallic nanoparticle/ short-side-chain PFSA solid-state electrolyte interfaces investigated by online DEMS [Internet]. Journal of Electroanalytical Chemistry. 2018 ;824 99-107.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2018.07.035
    • Vancouver

      Silva WO, Queiroz AC, Paganin VA, Lima FHB de. Faradaic efficiency of ethanol oxidation to CO2 at metallic nanoparticle/ short-side-chain PFSA solid-state electrolyte interfaces investigated by online DEMS [Internet]. Journal of Electroanalytical Chemistry. 2018 ;824 99-107.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jelechem.2018.07.035
  • Source: Journal of the Brazilian Chemical Society. Unidade: IQSC

    Subjects: CARBONO, ETANOL

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      PEREIRA, Andressa Ribeiro et al. Bioelectrooxidation of ethanol using NAD-dependent alcohol dehydrogenase on oxidized flexible carbon fiber arrays. Journal of the Brazilian Chemical Society, v. 28, n. 9, p. 1698-1707, 2017Tradução . . Disponível em: https://doi.org/10.21577/0103-5053.20170012. Acesso em: 14 set. 2024.
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      Pereira, A. R., Souza, J. C. P. de, Gonçalves, A. D., Pagnoncelli, K. C., & Crespilho, F. N. (2017). Bioelectrooxidation of ethanol using NAD-dependent alcohol dehydrogenase on oxidized flexible carbon fiber arrays. Journal of the Brazilian Chemical Society, 28( 9), 1698-1707. doi:10.21577/0103-5053.20170012
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      Pereira AR, Souza JCP de, Gonçalves AD, Pagnoncelli KC, Crespilho FN. Bioelectrooxidation of ethanol using NAD-dependent alcohol dehydrogenase on oxidized flexible carbon fiber arrays [Internet]. Journal of the Brazilian Chemical Society. 2017 ; 28( 9): 1698-1707.[citado 2024 set. 14 ] Available from: https://doi.org/10.21577/0103-5053.20170012
    • Vancouver

      Pereira AR, Souza JCP de, Gonçalves AD, Pagnoncelli KC, Crespilho FN. Bioelectrooxidation of ethanol using NAD-dependent alcohol dehydrogenase on oxidized flexible carbon fiber arrays [Internet]. Journal of the Brazilian Chemical Society. 2017 ; 28( 9): 1698-1707.[citado 2024 set. 14 ] Available from: https://doi.org/10.21577/0103-5053.20170012
  • Source: Molecular Biotechnology. Unidade: FCFRP

    Subjects: ETANOL, TRICHODERMA, BIOCOMBUSTÍVEIS, ENZIMAS, EXPRESSÃO GÊNICA

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      COLABARDINI, Ana C. et al. Expression of two novel β-glucosidases from Chaetomium atrobrunneum in Trichoderma reesei and characterization of the heterologous protein products. Molecular Biotechnology, v. 58, n. 12, p. 821-831, 2016Tradução . . Disponível em: https://doi.org/10.1007/s12033-016-9981-7. Acesso em: 14 set. 2024.
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      Colabardini, A. C., Valkonen, M., Huuskonen, A., Siika-aho, M., Koivula, A., Goldman, G. H., & Saloheimo, M. (2016). Expression of two novel β-glucosidases from Chaetomium atrobrunneum in Trichoderma reesei and characterization of the heterologous protein products. Molecular Biotechnology, 58( 12), 821-831. doi:10.1007/s12033-016-9981-7
    • NLM

      Colabardini AC, Valkonen M, Huuskonen A, Siika-aho M, Koivula A, Goldman GH, Saloheimo M. Expression of two novel β-glucosidases from Chaetomium atrobrunneum in Trichoderma reesei and characterization of the heterologous protein products [Internet]. Molecular Biotechnology. 2016 ; 58( 12): 821-831.[citado 2024 set. 14 ] Available from: https://doi.org/10.1007/s12033-016-9981-7
    • Vancouver

      Colabardini AC, Valkonen M, Huuskonen A, Siika-aho M, Koivula A, Goldman GH, Saloheimo M. Expression of two novel β-glucosidases from Chaetomium atrobrunneum in Trichoderma reesei and characterization of the heterologous protein products [Internet]. Molecular Biotechnology. 2016 ; 58( 12): 821-831.[citado 2024 set. 14 ] Available from: https://doi.org/10.1007/s12033-016-9981-7
  • Source: Electrochemistry Communications. Unidade: IQSC

    Subjects: OXIDAÇÃO, ETANOL

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      SALLUM, Loriz Francisco e GONZALEZ, Ernesto Rafael e FELIU, Juan Miguel. Potential oscillations during electro-oxidation of ethanol on platinum in alkaline media: The role of surface sites. Electrochemistry Communications, n. 72, p. 83–86, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.elecom.2016.09.005. Acesso em: 14 set. 2024.
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      Sallum, L. F., Gonzalez, E. R., & Feliu, J. M. (2016). Potential oscillations during electro-oxidation of ethanol on platinum in alkaline media: The role of surface sites. Electrochemistry Communications, ( 72), 83–86. doi:10.1016/j.elecom.2016.09.005
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      Sallum LF, Gonzalez ER, Feliu JM. Potential oscillations during electro-oxidation of ethanol on platinum in alkaline media: The role of surface sites [Internet]. Electrochemistry Communications. 2016 ;( 72): 83–86.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.elecom.2016.09.005
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      Sallum LF, Gonzalez ER, Feliu JM. Potential oscillations during electro-oxidation of ethanol on platinum in alkaline media: The role of surface sites [Internet]. Electrochemistry Communications. 2016 ;( 72): 83–86.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.elecom.2016.09.005
  • Source: Journal of Power Sources. Unidade: IQSC

    Assunto: ETANOL

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      SATO, André Gustavo et al. New, efficient and viable system for ethanol fuel utilization on combined electric/internal combustion engine vehicles. Journal of Power Sources, v. 294, p. 569-573, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.jpowsour.2015.06.086. Acesso em: 14 set. 2024.
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      Sato, A. G., Silva, G. C. da, Paganin, V. A., Biancolli, A. L. G., & Ticianelli, E. A. (2015). New, efficient and viable system for ethanol fuel utilization on combined electric/internal combustion engine vehicles. Journal of Power Sources, 294, 569-573. doi:10.1016/j.jpowsour.2015.06.086
    • NLM

      Sato AG, Silva GC da, Paganin VA, Biancolli ALG, Ticianelli EA. New, efficient and viable system for ethanol fuel utilization on combined electric/internal combustion engine vehicles [Internet]. Journal of Power Sources. 2015 ; 294 569-573.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jpowsour.2015.06.086
    • Vancouver

      Sato AG, Silva GC da, Paganin VA, Biancolli ALG, Ticianelli EA. New, efficient and viable system for ethanol fuel utilization on combined electric/internal combustion engine vehicles [Internet]. Journal of Power Sources. 2015 ; 294 569-573.[citado 2024 set. 14 ] Available from: https://doi.org/10.1016/j.jpowsour.2015.06.086

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