Filtros : "Bioresource Technology" "HIDRÓLISE" Removido: "IB" Limpar

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  • Source: Bioresource Technology. Unidades: EEL, IFSC

    Subjects: BIOTECNOLOGIA, BAGAÇOS, BIOCOMBUSTÍVEIS, HIDRÓLISE

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    • ABNT

      MAGRI, Silvia et al. Polymer ultrastructure governs AA9 lytic polysaccharide monooxygenases functionalization and deconstruction efficacy on cellulose nano-crystals. Bioresource Technology, v. 347, p. 126375-1-126375-9, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2021.126375. Acesso em: 05 out. 2024.
    • APA

      Magri, S., Nazerian, G., Segato, T., Monclaro, A. V., Zarattini, M., Segato, F., et al. (2022). Polymer ultrastructure governs AA9 lytic polysaccharide monooxygenases functionalization and deconstruction efficacy on cellulose nano-crystals. Bioresource Technology, 347, 126375-1-126375-9. doi:10.1016/j.biortech.2021.126375
    • NLM

      Magri S, Nazerian G, Segato T, Monclaro AV, Zarattini M, Segato F, Polikarpov I, Cannella D. Polymer ultrastructure governs AA9 lytic polysaccharide monooxygenases functionalization and deconstruction efficacy on cellulose nano-crystals [Internet]. Bioresource Technology. 2022 ; 347 126375-1-126375-9.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2021.126375
    • Vancouver

      Magri S, Nazerian G, Segato T, Monclaro AV, Zarattini M, Segato F, Polikarpov I, Cannella D. Polymer ultrastructure governs AA9 lytic polysaccharide monooxygenases functionalization and deconstruction efficacy on cellulose nano-crystals [Internet]. Bioresource Technology. 2022 ; 347 126375-1-126375-9.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2021.126375
  • Source: Bioresource Technology. Unidade: FZEA

    Subjects: BIOCOMBUSTÍVEIS, COCO, BIOMASSA, ETANOL, HIDRÓLISE, CELULOSE

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    • ABNT

      PUTRINO, Fernando Marques et al. Study of supercritical carbon dioxide pretreatment processes on green coconut fiber to enhance enzymatic hydrolysis of cellulose. Bioresource Technology, v. 309, p. 1-7, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2020.123387. Acesso em: 05 out. 2024.
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      Putrino, F. M., Tedesco, M. P., Bodini, R. B., & Oliveira, A. L. de. (2020). Study of supercritical carbon dioxide pretreatment processes on green coconut fiber to enhance enzymatic hydrolysis of cellulose. Bioresource Technology, 309, 1-7. doi:10.1016/j.biortech.2020.123387
    • NLM

      Putrino FM, Tedesco MP, Bodini RB, Oliveira AL de. Study of supercritical carbon dioxide pretreatment processes on green coconut fiber to enhance enzymatic hydrolysis of cellulose [Internet]. Bioresource Technology. 2020 ; 309 1-7.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2020.123387
    • Vancouver

      Putrino FM, Tedesco MP, Bodini RB, Oliveira AL de. Study of supercritical carbon dioxide pretreatment processes on green coconut fiber to enhance enzymatic hydrolysis of cellulose [Internet]. Bioresource Technology. 2020 ; 309 1-7.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2020.123387
  • Source: Bioresource Technology. Unidade: EEL

    Subjects: REFINARIAS, POLPAÇÃO, HIDRÓLISE, ENZIMAS

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    • ABNT

      MACHADO, Angela da Silva e FERRAZ, André. Biological pretreatment of sugarcane bagasse with basidiomycetes producing varied patterns of biodegradation. Bioresource Technology, v. 225, p. 17-22, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2016.11.053. Acesso em: 05 out. 2024.
    • APA

      Machado, A. da S., & Ferraz, A. (2017). Biological pretreatment of sugarcane bagasse with basidiomycetes producing varied patterns of biodegradation. Bioresource Technology, 225, 17-22. doi:10.1016/j.biortech.2016.11.053
    • NLM

      Machado A da S, Ferraz A. Biological pretreatment of sugarcane bagasse with basidiomycetes producing varied patterns of biodegradation [Internet]. Bioresource Technology. 2017 ;225 17-22.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2016.11.053
    • Vancouver

      Machado A da S, Ferraz A. Biological pretreatment of sugarcane bagasse with basidiomycetes producing varied patterns of biodegradation [Internet]. Bioresource Technology. 2017 ;225 17-22.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2016.11.053
  • Source: Bioresource Technology. Unidade: EEL

    Subjects: POLISSACARÍDEOS, MELANINAS, HIDRÓLISE, ENZIMAS

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      TERÁN HILARES, Ruly et al. Low-melanin containing pullulan production from sugarcane bagasse hydrolysate by Aureobasidium pullulans in fermentations assisted by light-emitting diode. Bioresource Technology, v. 230, n. 2017, p. 76-81, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2017.01.052. Acesso em: 05 out. 2024.
    • APA

      Terán Hilares, R., Orsi, C. A., Ahmed, M. A., Marcelino, P. F., Menegatti, C. R., Silva, S. S. da, & dos Santos, J. C. (2017). Low-melanin containing pullulan production from sugarcane bagasse hydrolysate by Aureobasidium pullulans in fermentations assisted by light-emitting diode. Bioresource Technology, 230( 2017), 76-81. doi:10.1016/j.biortech.2017.01.052
    • NLM

      Terán Hilares R, Orsi CA, Ahmed MA, Marcelino PF, Menegatti CR, Silva SS da, dos Santos JC. Low-melanin containing pullulan production from sugarcane bagasse hydrolysate by Aureobasidium pullulans in fermentations assisted by light-emitting diode [Internet]. Bioresource Technology. 2017 ;230( 2017): 76-81.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2017.01.052
    • Vancouver

      Terán Hilares R, Orsi CA, Ahmed MA, Marcelino PF, Menegatti CR, Silva SS da, dos Santos JC. Low-melanin containing pullulan production from sugarcane bagasse hydrolysate by Aureobasidium pullulans in fermentations assisted by light-emitting diode [Internet]. Bioresource Technology. 2017 ;230( 2017): 76-81.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2017.01.052
  • Source: Bioresource Technology. Unidade: EEL

    Subjects: BAGAÇOS, CANA-DE-AÇÚCAR, HIDRÓLISE

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    • ABNT

      TERÁN-HILARES, Ruly et al. Hydrodynamic cavitation-assisted alkaline pretreatment as a new approach for sugarcane bagasse biorefineries. Bioresource Technology, v. 214, p. 609-614, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2016.05.004. Acesso em: 05 out. 2024.
    • APA

      Terán-Hilares, R., Santos, J. C. dos, Ahmed, M. A., Jeon, S., Silva, S. S. da, & Han, J. (2016). Hydrodynamic cavitation-assisted alkaline pretreatment as a new approach for sugarcane bagasse biorefineries. Bioresource Technology, 214, 609-614. doi:10.1016/j.biortech.2016.05.004
    • NLM

      Terán-Hilares R, Santos JC dos, Ahmed MA, Jeon S, Silva SS da, Han J. Hydrodynamic cavitation-assisted alkaline pretreatment as a new approach for sugarcane bagasse biorefineries [Internet]. Bioresource Technology. 2016 ; 214 609-614.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2016.05.004
    • Vancouver

      Terán-Hilares R, Santos JC dos, Ahmed MA, Jeon S, Silva SS da, Han J. Hydrodynamic cavitation-assisted alkaline pretreatment as a new approach for sugarcane bagasse biorefineries [Internet]. Bioresource Technology. 2016 ; 214 609-614.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2016.05.004
  • Source: Bioresource Technology. Unidade: EEL

    Subjects: BIOCOMBUSTÍVEIS, HIDRÓLISE, BAGAÇOS, BIOCOMBUSTÍVEIS

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      TERÁN-HILARES, Ruly et al. Successive pretreatment and enzymatic saccharification of sugarcane bagasse in a packed bed flow-through column reactor aiming to support biorefineries. Bioresource Technology, v. 203, p. 42-49, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2015.12.026. Acesso em: 05 out. 2024.
    • APA

      Terán-Hilares, R., Reséndiz, A. L., Martínez, R. T., Silva, S. S. D. B., & Santos, J. C. D. (2016). Successive pretreatment and enzymatic saccharification of sugarcane bagasse in a packed bed flow-through column reactor aiming to support biorefineries. Bioresource Technology, 203, 42-49. doi:10.1016/j.biortech.2015.12.026
    • NLM

      Terán-Hilares R, Reséndiz AL, Martínez RT, Silva SSDB, Santos JCD. Successive pretreatment and enzymatic saccharification of sugarcane bagasse in a packed bed flow-through column reactor aiming to support biorefineries [Internet]. Bioresource Technology. 2016 ; 203 42-49.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2015.12.026
    • Vancouver

      Terán-Hilares R, Reséndiz AL, Martínez RT, Silva SSDB, Santos JCD. Successive pretreatment and enzymatic saccharification of sugarcane bagasse in a packed bed flow-through column reactor aiming to support biorefineries [Internet]. Bioresource Technology. 2016 ; 203 42-49.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2015.12.026
  • Source: Bioresource Technology. Unidades: ICB, BIOTECNOLOGIA

    Subjects: MICROBIOLOGIA, CANA-DE-AÇUCAR, BAGAÇOS, HIDRÓLISE, REATORES BIOQUÍMICOS

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    • ABNT

      ROBL, Diogo et al. Enhancing of sugar cane bagasse hydrolysis by Annulohypoxylon stygium glycohydrolases. Bioresource Technology, v. 177, p. 247-254, 2015Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2014.11.082. Acesso em: 05 out. 2024.
    • APA

      Robl, D., Costa, P. dos S., Büchli, F., Lima, D. J. da S., Delabona, P. da S., Squina, F. M., et al. (2015). Enhancing of sugar cane bagasse hydrolysis by Annulohypoxylon stygium glycohydrolases. Bioresource Technology, 177, 247-254. doi:10.1016/j.biortech.2014.11.082
    • NLM

      Robl D, Costa P dos S, Büchli F, Lima DJ da S, Delabona P da S, Squina FM, Pimentel IC, Padilla G, Pradella JG da C. Enhancing of sugar cane bagasse hydrolysis by Annulohypoxylon stygium glycohydrolases [Internet]. Bioresource Technology. 2015 ; 177 247-254.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2014.11.082
    • Vancouver

      Robl D, Costa P dos S, Büchli F, Lima DJ da S, Delabona P da S, Squina FM, Pimentel IC, Padilla G, Pradella JG da C. Enhancing of sugar cane bagasse hydrolysis by Annulohypoxylon stygium glycohydrolases [Internet]. Bioresource Technology. 2015 ; 177 247-254.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2014.11.082
  • Source: Bioresource Technology. Unidade: FZEA

    Subjects: PROCESSAMENTO DE ALIMENTOS, HIDRÓLISE, DIGESTÃO ANAERÓBIA, SUBPRODUTOS COMO ALIMENTO

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      CAVALEIRO, A. J. et al. Biochemical methane potential of raw and pre-treated meat-processing wastes. Bioresource Technology, v. 129, p. 519-525, 2013Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2012.11.083. Acesso em: 05 out. 2024.
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      Cavaleiro, A. J., Ferreira, T., Pereira, F., Tommaso, G., & Alves, M. M. (2013). Biochemical methane potential of raw and pre-treated meat-processing wastes. Bioresource Technology, 129, 519-525. doi:10.1016/j.biortech.2012.11.083
    • NLM

      Cavaleiro AJ, Ferreira T, Pereira F, Tommaso G, Alves MM. Biochemical methane potential of raw and pre-treated meat-processing wastes [Internet]. Bioresource Technology. 2013 ; 129 519-525.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2012.11.083
    • Vancouver

      Cavaleiro AJ, Ferreira T, Pereira F, Tommaso G, Alves MM. Biochemical methane potential of raw and pre-treated meat-processing wastes [Internet]. Bioresource Technology. 2013 ; 129 519-525.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2012.11.083
  • Source: Bioresource Technology. Unidade: FCF

    Subjects: HIDRÓLISE, CANA-DE-AÇÚCAR

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      RODRIGUES, Rita de Cássia Lacerda Brambilla et al. Scale-up of diluted sulfuric acid hydrolysis for producing sugarcane bagasse hemicellulosic hydrolysate (SBHH). Bioresource Technology, v. 101, n. 4, p. 1247-1253, 2010Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2009.09.034. Acesso em: 05 out. 2024.
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      Rodrigues, R. de C. L. B., Rocha, G. J. de M., Rodrigues Jr., D., I. Filho, H. J., Felipe, M. das G. de A., & Pessoa Junior, A. (2010). Scale-up of diluted sulfuric acid hydrolysis for producing sugarcane bagasse hemicellulosic hydrolysate (SBHH). Bioresource Technology, 101( 4), 1247-1253. doi:10.1016/j.biortech.2009.09.034
    • NLM

      Rodrigues R de CLB, Rocha GJ de M, Rodrigues Jr. D, I. Filho HJ, Felipe M das G de A, Pessoa Junior A. Scale-up of diluted sulfuric acid hydrolysis for producing sugarcane bagasse hemicellulosic hydrolysate (SBHH) [Internet]. Bioresource Technology. 2010 ; 101( 4): 1247-1253.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2009.09.034
    • Vancouver

      Rodrigues R de CLB, Rocha GJ de M, Rodrigues Jr. D, I. Filho HJ, Felipe M das G de A, Pessoa Junior A. Scale-up of diluted sulfuric acid hydrolysis for producing sugarcane bagasse hemicellulosic hydrolysate (SBHH) [Internet]. Bioresource Technology. 2010 ; 101( 4): 1247-1253.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/j.biortech.2009.09.034
  • Source: Bioresource Technology. Unidades: EP, ESALQ

    Subjects: ARROZ, EUCALIPTO, FERMENTAÇÃO, HIDRÓLISE, MODELOS MATEMÁTICOS

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      SILVA, João Batista de Almeida e et al. Use of response surface methodology for selection of nutrient levels for culturing Paecilomyces variotii in eucalyptus hemicellulosic hydrolyzate. Bioresource Technology, v. 87, p. 45-50, 2003Tradução . . Disponível em: https://doi.org/10.1016/s0960-8524(02)00199-2. Acesso em: 05 out. 2024.
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      Silva, J. B. de A. e, Lima, U. de A., Taqueda, M. E. S., & Guaragna, F. G. (2003). Use of response surface methodology for selection of nutrient levels for culturing Paecilomyces variotii in eucalyptus hemicellulosic hydrolyzate. Bioresource Technology, 87, 45-50. doi:10.1016/s0960-8524(02)00199-2
    • NLM

      Silva JB de A e, Lima U de A, Taqueda MES, Guaragna FG. Use of response surface methodology for selection of nutrient levels for culturing Paecilomyces variotii in eucalyptus hemicellulosic hydrolyzate [Internet]. Bioresource Technology. 2003 ; 87 45-50.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/s0960-8524(02)00199-2
    • Vancouver

      Silva JB de A e, Lima U de A, Taqueda MES, Guaragna FG. Use of response surface methodology for selection of nutrient levels for culturing Paecilomyces variotii in eucalyptus hemicellulosic hydrolyzate [Internet]. Bioresource Technology. 2003 ; 87 45-50.[citado 2024 out. 05 ] Available from: https://doi.org/10.1016/s0960-8524(02)00199-2

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