Filtros : "SILVA, SILVIO SILVERIO DA" "2020" "EEL" Removidos: "POLUIÇÃO ATMOSFÉRICA" "FCF-FBT" "PHILIPPINI, RAFAEL RODRIGUES" "Carbohydrate research" Limpar

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  • Unidade: EEL

    Subjects: AGROPECUÁRIA, ALIMENTOS, ENERGIA, SAÚDE

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      HILARES, Ruly Terán et al. Pré-tratamento contínuo de materiais lignocelulósicos com cavitação hidrodinâmica e adaptação do sistema de cavitação a tanques de mistura. . São Paulo: Escola de Engenharia de Lorena, Universidade de São Paulo. Disponível em: http://www.patentes.usp.br/tech?title=PR%c3%89-TRATAMENTO_CONT%c3%8dNUO_DE_MA TERIAIS_LIGNOCELUL%c3%93SICOS_UTILIZANDO_TECNOLOGIA_DE_CAVITA%c3%87%c3%83O_H IDRODIN%c3%82MICA_E_ADAPTA%c3%87%c3%83O_DE_SISTEMA_DE_CAVITA%c3%87%c3%83O_A_ TANQUES_DE_MISTURA. Acesso em: 08 out. 2024. , 2020
    • APA

      Hilares, R. T., Santos, J. C., Prado, C. A., Dionizio, R. M., & Silva, S. S. da. (2020). Pré-tratamento contínuo de materiais lignocelulósicos com cavitação hidrodinâmica e adaptação do sistema de cavitação a tanques de mistura. São Paulo: Escola de Engenharia de Lorena, Universidade de São Paulo. Recuperado de http://www.patentes.usp.br/tech?title=PR%c3%89-TRATAMENTO_CONT%c3%8dNUO_DE_MA TERIAIS_LIGNOCELUL%c3%93SICOS_UTILIZANDO_TECNOLOGIA_DE_CAVITA%c3%87%c3%83O_H IDRODIN%c3%82MICA_E_ADAPTA%c3%87%c3%83O_DE_SISTEMA_DE_CAVITA%c3%87%c3%83O_A_ TANQUES_DE_MISTURA
    • NLM

      Hilares RT, Santos JC, Prado CA, Dionizio RM, Silva SS da. Pré-tratamento contínuo de materiais lignocelulósicos com cavitação hidrodinâmica e adaptação do sistema de cavitação a tanques de mistura [Internet]. 2020 ;[citado 2024 out. 08 ] Available from: http://www.patentes.usp.br/tech?title=PR%c3%89-TRATAMENTO_CONT%c3%8dNUO_DE_MA TERIAIS_LIGNOCELUL%c3%93SICOS_UTILIZANDO_TECNOLOGIA_DE_CAVITA%c3%87%c3%83O_H IDRODIN%c3%82MICA_E_ADAPTA%c3%87%c3%83O_DE_SISTEMA_DE_CAVITA%c3%87%c3%83O_A_ TANQUES_DE_MISTURA
    • Vancouver

      Hilares RT, Santos JC, Prado CA, Dionizio RM, Silva SS da. Pré-tratamento contínuo de materiais lignocelulósicos com cavitação hidrodinâmica e adaptação do sistema de cavitação a tanques de mistura [Internet]. 2020 ;[citado 2024 out. 08 ] Available from: http://www.patentes.usp.br/tech?title=PR%c3%89-TRATAMENTO_CONT%c3%8dNUO_DE_MA TERIAIS_LIGNOCELUL%c3%93SICOS_UTILIZANDO_TECNOLOGIA_DE_CAVITA%c3%87%c3%83O_H IDRODIN%c3%82MICA_E_ADAPTA%c3%87%c3%83O_DE_SISTEMA_DE_CAVITA%c3%87%c3%83O_A_ TANQUES_DE_MISTURA
  • Source: Lignocellulosic Biorefining Technologies. Unidade: EEL

    Subjects: BIOTECNOLOGIA, BIOPOLÍMEROS

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      INGLE, Avinash P e CHANDEL, Anuj Kumar e SILVA, Silvio Silverio da. Biorefining of Lignocellulose into Valuable Products. Lignocellulosic Biorefining Technologies. Tradução . [S.l.]: Wiley, 2020. p. 1-5. Disponível em: https://doi.org/10.1002/9781119568858.ch1. Acesso em: 08 out. 2024.
    • APA

      Ingle, A. P., Chandel, A. K., & Silva, S. S. da. (2020). Biorefining of Lignocellulose into Valuable Products. In Lignocellulosic Biorefining Technologies (p. 1-5). Wiley. doi:10.1002/9781119568858.ch1
    • NLM

      Ingle AP, Chandel AK, Silva SS da. Biorefining of Lignocellulose into Valuable Products [Internet]. In: Lignocellulosic Biorefining Technologies. Wiley; 2020. p. 1-5.[citado 2024 out. 08 ] Available from: https://doi.org/10.1002/9781119568858.ch1
    • Vancouver

      Ingle AP, Chandel AK, Silva SS da. Biorefining of Lignocellulose into Valuable Products [Internet]. In: Lignocellulosic Biorefining Technologies. Wiley; 2020. p. 1-5.[citado 2024 out. 08 ] Available from: https://doi.org/10.1002/9781119568858.ch1
  • Source: Biogas Production. Unidade: EEL

    Subjects: DIGESTÃO ANAERÓBIA, BIOGÁS

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      MUÑOZ, S. S et al. Technological Routes for Biogas Production: Current Status and Future Perspectives. Biogas Production. Suíça: Springer International Publishing. Disponível em: https://doi.org/10.1007/978-3-030-58827-4_1. Acesso em: 08 out. 2024. , 2020
    • APA

      Muñoz, S. S., Barbosa, F. G., Ascencio, J. J., Alba, E. M., Singh, A. K., Santos, J. C., et al. (2020). Technological Routes for Biogas Production: Current Status and Future Perspectives. Biogas Production. Suíça: Springer International Publishing. doi:10.1007/978-3-030-58827-4_1
    • NLM

      Muñoz SS, Barbosa FG, Ascencio JJ, Alba EM, Singh AK, Santos JC, Balagurusamy N, Silva SS da, Chandel AK. Technological Routes for Biogas Production: Current Status and Future Perspectives [Internet]. Biogas Production. 2020 ;3-17.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_1
    • Vancouver

      Muñoz SS, Barbosa FG, Ascencio JJ, Alba EM, Singh AK, Santos JC, Balagurusamy N, Silva SS da, Chandel AK. Technological Routes for Biogas Production: Current Status and Future Perspectives [Internet]. Biogas Production. 2020 ;3-17.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_1
  • Source: Biogas Production. Unidade: EEL

    Subjects: BIOGÁS, SUSTENTABILIDADE

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      GONZÁLEZ, José Alberto Silva et al. Biogas in Circular Bio-Economy: Sustainable Practice for Rural Farm Waste Management and Techno-economic Analyses. Biogas Production. Tradução . Suíça: Springer International Publishing, 2020. p. 389-414. Disponível em: https://doi.org/10.1007/978-3-030-58827-4_17. Acesso em: 08 out. 2024.
    • APA

      González, J. A. S., Chandel, A. K., Silva, S. S. da, & Balagurusamy, N. (2020). Biogas in Circular Bio-Economy: Sustainable Practice for Rural Farm Waste Management and Techno-economic Analyses. In Biogas Production (p. 389-414). Suíça: Springer International Publishing. doi:10.1007/978-3-030-58827-4_17
    • NLM

      González JAS, Chandel AK, Silva SS da, Balagurusamy N. Biogas in Circular Bio-Economy: Sustainable Practice for Rural Farm Waste Management and Techno-economic Analyses [Internet]. In: Biogas Production. Suíça: Springer International Publishing; 2020. p. 389-414.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_17
    • Vancouver

      González JAS, Chandel AK, Silva SS da, Balagurusamy N. Biogas in Circular Bio-Economy: Sustainable Practice for Rural Farm Waste Management and Techno-economic Analyses [Internet]. In: Biogas Production. Suíça: Springer International Publishing; 2020. p. 389-414.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_17
  • Source: Renewable energy. Unidade: EEL

    Assunto: BIOTECNOLOGIA

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      ANTUNES, Felipe Antônio Fernandes et al. Multi-scale study of the integrated use of the carbohydrate fractions of sugarcane bagasse for ethanol and xylitol production. Renewable energy, v. 163, p. 1343-1355, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.renene.2020.08.020. Acesso em: 08 out. 2024.
    • APA

      Antunes, F. A. F., Thomé, L. C., Santos, J. C., Ingle, A. P., Costa, C. B., Anjos, V. dos, et al. (2020). Multi-scale study of the integrated use of the carbohydrate fractions of sugarcane bagasse for ethanol and xylitol production. Renewable energy, 163, 1343-1355. doi:10.1016/j.renene.2020.08.020
    • NLM

      Antunes FAF, Thomé LC, Santos JC, Ingle AP, Costa CB, Anjos V dos, Bell MJV, Rosa CA, Silva SS da. Multi-scale study of the integrated use of the carbohydrate fractions of sugarcane bagasse for ethanol and xylitol production [Internet]. Renewable energy. 2020 ; 163 1343-1355.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/j.renene.2020.08.020
    • Vancouver

      Antunes FAF, Thomé LC, Santos JC, Ingle AP, Costa CB, Anjos V dos, Bell MJV, Rosa CA, Silva SS da. Multi-scale study of the integrated use of the carbohydrate fractions of sugarcane bagasse for ethanol and xylitol production [Internet]. Renewable energy. 2020 ; 163 1343-1355.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/j.renene.2020.08.020
  • Source: Biogas Production. Unidade: EEL

    Subjects: BIOGÁS, BIODIESEL, SUSTENTABILIDADE

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      ALBA, Edith Mier et al. Comparative Analysis of Biogas with Renewable Fuels and Energy: Physicochemical Properties and Carbon Footprints. Biogas Production. [S.l.]: Springer International Publishing. Disponível em: https://doi.org/10.1007/978-3-030-58827-4_7. Acesso em: 08 out. 2024. , 2020
    • APA

      Alba, E. M., Muñoz, S. S., Barbosa, F. G., Garlapati, V. K., Balagurusamy, N., Silva, S. S. da, et al. (2020). Comparative Analysis of Biogas with Renewable Fuels and Energy: Physicochemical Properties and Carbon Footprints. Biogas Production. Springer International Publishing. doi:10.1007/978-3-030-58827-4_7
    • NLM

      Alba EM, Muñoz SS, Barbosa FG, Garlapati VK, Balagurusamy N, Silva SS da, Santos JC, Chandel AK. Comparative Analysis of Biogas with Renewable Fuels and Energy: Physicochemical Properties and Carbon Footprints [Internet]. Biogas Production. 2020 ;125-143.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_7
    • Vancouver

      Alba EM, Muñoz SS, Barbosa FG, Garlapati VK, Balagurusamy N, Silva SS da, Santos JC, Chandel AK. Comparative Analysis of Biogas with Renewable Fuels and Energy: Physicochemical Properties and Carbon Footprints [Internet]. Biogas Production. 2020 ;125-143.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/978-3-030-58827-4_7
  • Source: Food and bioproducts processing. Unidade: EEL

    Subjects: FERMENTAÇÃO, NANOFILTRAÇÃO

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      ALVES, Yara Pereira Cerceau et al. From by- to bioproducts: selection of a nanofiltration membrane for biotechnological xylitol purification and process optimization. Food and bioproducts processing, n. , p. 79-90, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.fbp.2020.10.005. Acesso em: 08 out. 2024.
    • APA

      Alves, Y. P. C., Antunes, F. A. F., Silva, S. S. da, & Forte, M. B. S. (2020). From by- to bioproducts: selection of a nanofiltration membrane for biotechnological xylitol purification and process optimization. Food and bioproducts processing, ( ), 79-90. doi:10.1016/j.fbp.2020.10.005
    • NLM

      Alves YPC, Antunes FAF, Silva SS da, Forte MBS. From by- to bioproducts: selection of a nanofiltration membrane for biotechnological xylitol purification and process optimization [Internet]. Food and bioproducts processing. 2020 ;( ): 79-90.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/j.fbp.2020.10.005
    • Vancouver

      Alves YPC, Antunes FAF, Silva SS da, Forte MBS. From by- to bioproducts: selection of a nanofiltration membrane for biotechnological xylitol purification and process optimization [Internet]. Food and bioproducts processing. 2020 ;( ): 79-90.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/j.fbp.2020.10.005
  • Source: Biotechnological Production of Bioactive Compounds. Unidade: EEL

    Subjects: BACTÉRIAS, FERMENTAÇÃO, LEVEDURAS

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      SANCHEZ-MUÑOZ, Salvador et al. Production of fungal and bacterial pigments and their applications. Biotechnological Production of Bioactive Compounds. Tradução . [S.l.]: Elsevier, 2020. p. 327-361. Disponível em: https://doi.org/10.1016/B978-0-444-64323-0.00011-4. Acesso em: 08 out. 2024.
    • APA

      Sanchez-Muñoz, S., Silva, G. M., Leite, M. O., Mura, F. B., Verma, M. L., Silva, S. S. da, & Chandel, A. K. (2020). Production of fungal and bacterial pigments and their applications. In Biotechnological Production of Bioactive Compounds (p. 327-361). Elsevier. doi:10.1016/B978-0-444-64323-0.00011-4
    • NLM

      Sanchez-Muñoz S, Silva GM, Leite MO, Mura FB, Verma ML, Silva SS da, Chandel AK. Production of fungal and bacterial pigments and their applications [Internet]. In: Biotechnological Production of Bioactive Compounds. Elsevier; 2020. p. 327-361.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/B978-0-444-64323-0.00011-4
    • Vancouver

      Sanchez-Muñoz S, Silva GM, Leite MO, Mura FB, Verma ML, Silva SS da, Chandel AK. Production of fungal and bacterial pigments and their applications [Internet]. In: Biotechnological Production of Bioactive Compounds. Elsevier; 2020. p. 327-361.[citado 2024 out. 08 ] Available from: https://doi.org/10.1016/B978-0-444-64323-0.00011-4
  • Source: Biomass conversion and biorefinery. Unidade: EEL

    Subjects: ENZIMAS HIDROLÍTICAS, CANA-DE-AÇÚCAR, BAGAÇOS

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      MESA, Leyanis et al. Optimization of BmimCl pretreatment of sugarcane bagasse through combining multiple responses to increase sugar production. An approach of the kinetic model. Biomass conversion and biorefinery, p. 1-17, 2020Tradução . . Disponível em: https://doi.org/10.1007/s13399-020-00792-0. Acesso em: 08 out. 2024.
    • APA

      Mesa, L., VALERIO, V. I. C. T. O. R. S. O. A. R. E. S., Forte, M. B. S., Santos, J. C., GONZÁLEZ, E. R. E. N. I. O., & Silva, S. S. da. (2020). Optimization of BmimCl pretreatment of sugarcane bagasse through combining multiple responses to increase sugar production. An approach of the kinetic model. Biomass conversion and biorefinery, 1-17. doi:10.1007/s13399-020-00792-0
    • NLM

      Mesa L, VALERIO VICTORSOARES, Forte MBS, Santos JC, GONZÁLEZ ERENIO, Silva SS da. Optimization of BmimCl pretreatment of sugarcane bagasse through combining multiple responses to increase sugar production. An approach of the kinetic model [Internet]. Biomass conversion and biorefinery. 2020 ;1-17.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/s13399-020-00792-0
    • Vancouver

      Mesa L, VALERIO VICTORSOARES, Forte MBS, Santos JC, GONZÁLEZ ERENIO, Silva SS da. Optimization of BmimCl pretreatment of sugarcane bagasse through combining multiple responses to increase sugar production. An approach of the kinetic model [Internet]. Biomass conversion and biorefinery. 2020 ;1-17.[citado 2024 out. 08 ] Available from: https://doi.org/10.1007/s13399-020-00792-0
  • Source: Lignocellulosic Biorefining Technologies. Unidade: EEL

    Assunto: LIGNINA

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      HILARES, Ruly Terán et al. Valorization of Lignin Into Value Added Chemicals and Materials. Lignocellulosic Biorefining Technologies. Tradução . [S.l.]: Wiley, 2020. p. 247-263. Disponível em: https://doi.org/10.1002/9781119568858.ch11. Acesso em: 08 out. 2024.
    • APA

      Hilares, R. T., Ramos, L., Ahmed, M., Ingle, A. P., Chandel, A. K., Silva, S. S. da, et al. (2020). Valorization of Lignin Into Value Added Chemicals and Materials. In Lignocellulosic Biorefining Technologies (p. 247-263). Wiley. doi:10.1002/9781119568858.ch11
    • NLM

      Hilares RT, Ramos L, Ahmed M, Ingle AP, Chandel AK, Silva SS da, Choi J-W, Santos JC. Valorization of Lignin Into Value Added Chemicals and Materials [Internet]. In: Lignocellulosic Biorefining Technologies. Wiley; 2020. p. 247-263.[citado 2024 out. 08 ] Available from: https://doi.org/10.1002/9781119568858.ch11
    • Vancouver

      Hilares RT, Ramos L, Ahmed M, Ingle AP, Chandel AK, Silva SS da, Choi J-W, Santos JC. Valorization of Lignin Into Value Added Chemicals and Materials [Internet]. In: Lignocellulosic Biorefining Technologies. Wiley; 2020. p. 247-263.[citado 2024 out. 08 ] Available from: https://doi.org/10.1002/9781119568858.ch11
  • Source: Lignocellulosic Biorefining Technologies. Unidade: EEL

    Assunto: BIOTECNOLOGIA

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    • ABNT

      INGLE, Avinash P e CHANDEL, Anuj K e SILVA, Silvio Silverio da. Lignocellulosic Biorefining Technologies. Lignocellulosic Biorefining Technologies. Tradução . [S.l.]: Wiley-Blackwell, 2020. . . Acesso em: 08 out. 2024.
    • APA

      Ingle, A. P., Chandel, A. K., & Silva, S. S. da. (2020). Lignocellulosic Biorefining Technologies. In Lignocellulosic Biorefining Technologies. Wiley-Blackwell.
    • NLM

      Ingle AP, Chandel AK, Silva SS da. Lignocellulosic Biorefining Technologies. In: Lignocellulosic Biorefining Technologies. Wiley-Blackwell; 2020. [citado 2024 out. 08 ]
    • Vancouver

      Ingle AP, Chandel AK, Silva SS da. Lignocellulosic Biorefining Technologies. In: Lignocellulosic Biorefining Technologies. Wiley-Blackwell; 2020. [citado 2024 out. 08 ]

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