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  • Source: Catalysis letters. Unidade: EEL

    Subjects: BIOTECNOLOGIA, ENZIMAS HIDROLÍTICAS

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      DA RÓS, Patrícia Caroline Molgero et al. An Environmentally Friendly Biosurfactant to Enhance the Enzymatic Hydrolysis for Production of Polyunsaturated Fatty Acids with Potential Application as Nutraceutical. Catalysis letters, v. 153, n. 3, p. 1-11, 2023Tradução . . Disponível em: https://doi.org/10.1007/s10562-023-04313-2. Acesso em: 17 ago. 2024.
    • APA

      Da Rós, P. C. M., Pereira, T. A., Barbosa, F. G., Marcelino, P. R. F., & Silva, S. S. da. (2023). An Environmentally Friendly Biosurfactant to Enhance the Enzymatic Hydrolysis for Production of Polyunsaturated Fatty Acids with Potential Application as Nutraceutical. Catalysis letters, 153( 3), 1-11. doi:10.1007/s10562-023-04313-2
    • NLM

      Da Rós PCM, Pereira TA, Barbosa FG, Marcelino PRF, Silva SS da. An Environmentally Friendly Biosurfactant to Enhance the Enzymatic Hydrolysis for Production of Polyunsaturated Fatty Acids with Potential Application as Nutraceutical [Internet]. Catalysis letters. 2023 ; 153( 3): 1-11.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s10562-023-04313-2
    • Vancouver

      Da Rós PCM, Pereira TA, Barbosa FG, Marcelino PRF, Silva SS da. An Environmentally Friendly Biosurfactant to Enhance the Enzymatic Hydrolysis for Production of Polyunsaturated Fatty Acids with Potential Application as Nutraceutical [Internet]. Catalysis letters. 2023 ; 153( 3): 1-11.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s10562-023-04313-2
  • Source: Biocatalysis and agricultural biotechnology. Unidade: EEL

    Subjects: ETANOL, MODELOS MATEMÁTICOS

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    • ABNT

      SENE, Luciane et al. Ethanol production by Kluyveromyces marxianus ATCC 36907: Fermentation features and mathematical modeling. Biocatalysis and agricultural biotechnology, v. 51, p. 1-13, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.bcab.2023.102789. Acesso em: 17 ago. 2024.
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      Sene, L., Tavares, B., Felipe, M. das G. de A., Santos, J. C. dos, Pereira, F. M., Tominc, G. C., & Cunha, M. A. A. da. (2023). Ethanol production by Kluyveromyces marxianus ATCC 36907: Fermentation features and mathematical modeling. Biocatalysis and agricultural biotechnology, 51, 1-13. doi:10.1016/j.bcab.2023.102789
    • NLM

      Sene L, Tavares B, Felipe M das G de A, Santos JC dos, Pereira FM, Tominc GC, Cunha MAA da. Ethanol production by Kluyveromyces marxianus ATCC 36907: Fermentation features and mathematical modeling [Internet]. Biocatalysis and agricultural biotechnology. 2023 ;51 1-13.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.bcab.2023.102789
    • Vancouver

      Sene L, Tavares B, Felipe M das G de A, Santos JC dos, Pereira FM, Tominc GC, Cunha MAA da. Ethanol production by Kluyveromyces marxianus ATCC 36907: Fermentation features and mathematical modeling [Internet]. Biocatalysis and agricultural biotechnology. 2023 ;51 1-13.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.bcab.2023.102789
  • Source: BioEnergy Research. Unidades: EEL, ESALQ

    Subjects: BIOTECNOLOGIA, FACTORIAL DESIGN

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    • ABNT

      ROCHA, Thiago Moura et al. Utilization of Renewable Feedstocks for the Production of Sophorolipids by Native Yeasts from Brazilian Cerrado Biome. BioEnergy Research, v. 16, n. 1, p. 1-17, 2023Tradução . . Disponível em: https://doi.org/10.1007/s12155-023-10597-4. Acesso em: 17 ago. 2024.
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      Rocha, T. M., Marcelino, P. R. F., Sanchez-Muñoz, S., Ruiz, E. D., Balbino, T. R., Moraes, E. de J. C., et al. (2023). Utilization of Renewable Feedstocks for the Production of Sophorolipids by Native Yeasts from Brazilian Cerrado Biome. BioEnergy Research, 16( 1), 1-17. doi:10.1007/s12155-023-10597-4
    • NLM

      Rocha TM, Marcelino PRF, Sanchez-Muñoz S, Ruiz ED, Balbino TR, Moraes E de JC, Pereira RM, Santos JC dos, Silva SS da. Utilization of Renewable Feedstocks for the Production of Sophorolipids by Native Yeasts from Brazilian Cerrado Biome [Internet]. BioEnergy Research. 2023 ; 16( 1): 1-17.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s12155-023-10597-4
    • Vancouver

      Rocha TM, Marcelino PRF, Sanchez-Muñoz S, Ruiz ED, Balbino TR, Moraes E de JC, Pereira RM, Santos JC dos, Silva SS da. Utilization of Renewable Feedstocks for the Production of Sophorolipids by Native Yeasts from Brazilian Cerrado Biome [Internet]. BioEnergy Research. 2023 ; 16( 1): 1-17.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s12155-023-10597-4
  • Source: Macromolecular chemistry and physics. Unidade: EEL

    Assunto: POLISSACARÍDEOS

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      SILVA, Rodrigo Duarte et al. Biomimetic Biomaterials Based on Polysaccharides: Recent Progress and Future Perspectives. Macromolecular chemistry and physics, v. 223, p. 2100501-, 2022Tradução . . Disponível em: https://doi.org/10.1002/macp.202100501. Acesso em: 17 ago. 2024.
    • APA

      Silva, R. D., Carvalho, L. T., Moraes, R. M. de, Medeiros, S. de F., & Lacerda, T. M. (2022). Biomimetic Biomaterials Based on Polysaccharides: Recent Progress and Future Perspectives. Macromolecular chemistry and physics, 223, 2100501-. doi:10.1002/macp.202100501
    • NLM

      Silva RD, Carvalho LT, Moraes RM de, Medeiros S de F, Lacerda TM. Biomimetic Biomaterials Based on Polysaccharides: Recent Progress and Future Perspectives [Internet]. Macromolecular chemistry and physics. 2022 ;223 2100501-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/macp.202100501
    • Vancouver

      Silva RD, Carvalho LT, Moraes RM de, Medeiros S de F, Lacerda TM. Biomimetic Biomaterials Based on Polysaccharides: Recent Progress and Future Perspectives [Internet]. Macromolecular chemistry and physics. 2022 ;223 2100501-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/macp.202100501
  • Source: Catalysis Letters. Unidade: EEL

    Subjects: BIOTECNOLOGIA, BIOPROCESSOS, ENZIMAS

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      RANGEL, Amanda Bahia de Souza et al. Synthesis and Characterization of Magnetic Poly(STY-EGDMA) Particles for Application as Biocatalyst Support in Octyl Oleate Ester Synthesis: Kinetic and Thermodynamic Parameters and Mathematical Modeling. Catalysis Letters, v. 153, p. 3284-3296-, 2022Tradução . . Disponível em: https://doi.org/10.1007/s10562-022-04234-6. Acesso em: 17 ago. 2024.
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      Rangel, A. B. de S., Silva, M. V. C. da, Assis, G. P. de, ROSA, C. Í. N. T. I. A. M. R., Santos, J. C. dos, & Freitas, L. de. (2022). Synthesis and Characterization of Magnetic Poly(STY-EGDMA) Particles for Application as Biocatalyst Support in Octyl Oleate Ester Synthesis: Kinetic and Thermodynamic Parameters and Mathematical Modeling. Catalysis Letters, 153, 3284-3296-. doi:10.1007/s10562-022-04234-6
    • NLM

      Rangel AB de S, Silva MVC da, Assis GP de, ROSA CÍNTIAMR, Santos JC dos, Freitas L de. Synthesis and Characterization of Magnetic Poly(STY-EGDMA) Particles for Application as Biocatalyst Support in Octyl Oleate Ester Synthesis: Kinetic and Thermodynamic Parameters and Mathematical Modeling [Internet]. Catalysis Letters. 2022 ;153 3284-3296-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s10562-022-04234-6
    • Vancouver

      Rangel AB de S, Silva MVC da, Assis GP de, ROSA CÍNTIAMR, Santos JC dos, Freitas L de. Synthesis and Characterization of Magnetic Poly(STY-EGDMA) Particles for Application as Biocatalyst Support in Octyl Oleate Ester Synthesis: Kinetic and Thermodynamic Parameters and Mathematical Modeling [Internet]. Catalysis Letters. 2022 ;153 3284-3296-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s10562-022-04234-6
  • Source: Molecules. Unidade: EEL

    Assunto: BIOTECNOLOGIA

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      SANCHEZ-MUÑOZ, Salvador et al. Surfactants, Biosurfactants, and Non-Catalytic Proteins as Key Molecules to Enhance Enzymatic Hydrolysis of Lignocellulosic Biomass. Molecules, v. 27, n. 8180, p. 1-15, 2022Tradução . . Disponível em: https://doi.org/10.3390/molecules27238180. Acesso em: 17 ago. 2024.
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      Sanchez-Muñoz, S., Santos, J. C. dos, Silva, S. S. da, Balbino, T. R., Oliveira, F. de, Rocha, T. M., et al. (2022). Surfactants, Biosurfactants, and Non-Catalytic Proteins as Key Molecules to Enhance Enzymatic Hydrolysis of Lignocellulosic Biomass. Molecules, 27( 8180), 1-15. doi:10.3390/molecules27238180
    • NLM

      Sanchez-Muñoz S, Santos JC dos, Silva SS da, Balbino TR, Oliveira F de, Rocha TM, Barbosa FG, Velez-Mercado MI, Marcelino PRF, Antunes FAF, Moraes E de JC. Surfactants, Biosurfactants, and Non-Catalytic Proteins as Key Molecules to Enhance Enzymatic Hydrolysis of Lignocellulosic Biomass [Internet]. Molecules. 2022 ;27( 8180): 1-15.[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/molecules27238180
    • Vancouver

      Sanchez-Muñoz S, Santos JC dos, Silva SS da, Balbino TR, Oliveira F de, Rocha TM, Barbosa FG, Velez-Mercado MI, Marcelino PRF, Antunes FAF, Moraes E de JC. Surfactants, Biosurfactants, and Non-Catalytic Proteins as Key Molecules to Enhance Enzymatic Hydrolysis of Lignocellulosic Biomass [Internet]. Molecules. 2022 ;27( 8180): 1-15.[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/molecules27238180
  • Source: Fermentation. Unidade: EEL

    Subjects: CANA-DE-AÇÚCAR, SOJA, BAGAÇOS

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      ASCENCIO, Jesús J. et al. Comparative Highly Efficient Production of β-glucan by Lasiodiplodia theobromae CCT 3966 and Its Multiscale Characterization. Fermentation, v. 7, n. 108, 2021Tradução . . Disponível em: https://doi.org/10.3390/fermentation7030108. Acesso em: 17 ago. 2024.
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      Ascencio, J. J., Philippini, R. R., GOMES, F. M., PEREIRA, F. M., Silva, S. S. da, Kumar, V., & Chandel, A. K. (2021). Comparative Highly Efficient Production of β-glucan by Lasiodiplodia theobromae CCT 3966 and Its Multiscale Characterization. Fermentation, 7( 108). doi:10.3390/fermentation7030108
    • NLM

      Ascencio JJ, Philippini RR, GOMES FM, PEREIRA FM, Silva SS da, Kumar V, Chandel AK. Comparative Highly Efficient Production of β-glucan by Lasiodiplodia theobromae CCT 3966 and Its Multiscale Characterization [Internet]. Fermentation. 2021 ; 7( 108):[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/fermentation7030108
    • Vancouver

      Ascencio JJ, Philippini RR, GOMES FM, PEREIRA FM, Silva SS da, Kumar V, Chandel AK. Comparative Highly Efficient Production of β-glucan by Lasiodiplodia theobromae CCT 3966 and Its Multiscale Characterization [Internet]. Fermentation. 2021 ; 7( 108):[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/fermentation7030108
  • Source: Polymers. Unidades: EEL, FM

    Assunto: POLÍMEROS (MATERIAIS)

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      CARVALHO, Layde T. et al. Chemical Modification of Pullulan Exopolysaccharide by Grafting Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBHV) via Click Chemistry. Polymers, v. 12, n. 2527 , p. 1-14, 2020Tradução . . Disponível em: https://doi.org/10.3390/polym12112527. Acesso em: 17 ago. 2024.
    • APA

      Carvalho, L. T., Paula, M. L. da S. de, Moraes, R. M. de, Alves, G. M., Lacerda, T. M., Santos, J. C., et al. (2020). Chemical Modification of Pullulan Exopolysaccharide by Grafting Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBHV) via Click Chemistry. Polymers, 12( 2527 ), 1-14. doi:10.3390/polym12112527
    • NLM

      Carvalho LT, Paula ML da S de, Moraes RM de, Alves GM, Lacerda TM, Santos JC, Santos AM dos, Medeiros S de F. Chemical Modification of Pullulan Exopolysaccharide by Grafting Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBHV) via Click Chemistry [Internet]. Polymers. 2020 ;12( 2527 ): 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/polym12112527
    • Vancouver

      Carvalho LT, Paula ML da S de, Moraes RM de, Alves GM, Lacerda TM, Santos JC, Santos AM dos, Medeiros S de F. Chemical Modification of Pullulan Exopolysaccharide by Grafting Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBHV) via Click Chemistry [Internet]. Polymers. 2020 ;12( 2527 ): 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.3390/polym12112527
  • Source: Impactos das Tecnologias na Engenharia Química. Unidade: EEL

    Subjects: EFLUENTES, DESLIGNIFICAÇÃO

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      SANTOS, Lucrécio Fábio e PAIVA, Teresa Cristina Brazil de e SILVA, Flávio Teixeira. Caracterização e tratamento, em escala industrial, do licor negro gerado pela etapa de deslignificação do algodão. Impactos das Tecnologias na Engenharia Química. Tradução . Ponta Grossa-Pr: Atena Editora, 2019. v. 2. p. 95-110. Disponível em: https://doi.org/10.22533/at.ed.36419030410. Acesso em: 17 ago. 2024.
    • APA

      Santos, L. F., Paiva, T. C. B. de, & Silva, F. T. (2019). Caracterização e tratamento, em escala industrial, do licor negro gerado pela etapa de deslignificação do algodão. In Impactos das Tecnologias na Engenharia Química (Vol. 2, p. 95-110). Ponta Grossa-Pr: Atena Editora. doi:10.22533/at.ed.36419030410
    • NLM

      Santos LF, Paiva TCB de, Silva FT. Caracterização e tratamento, em escala industrial, do licor negro gerado pela etapa de deslignificação do algodão [Internet]. In: Impactos das Tecnologias na Engenharia Química. Ponta Grossa-Pr: Atena Editora; 2019. p. 95-110.[citado 2024 ago. 17 ] Available from: https://doi.org/10.22533/at.ed.36419030410
    • Vancouver

      Santos LF, Paiva TCB de, Silva FT. Caracterização e tratamento, em escala industrial, do licor negro gerado pela etapa de deslignificação do algodão [Internet]. In: Impactos das Tecnologias na Engenharia Química. Ponta Grossa-Pr: Atena Editora; 2019. p. 95-110.[citado 2024 ago. 17 ] Available from: https://doi.org/10.22533/at.ed.36419030410
  • Source: Renewable energy. Unidade: EEL

    Subjects: PHENOMENOLOGICAL MODELING, ETANOL, VÁCUO, BIOTECNOLOGIA, PRODUCT REMOVAL

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      TAVARES, Bruna et al. An experimental and modeling approach for ethanol production by Kluyveromyces marxianus in stirred tank bioreactor using vacuum extraction as a strategy to overcome product inhibition. Renewable energy, v. 131, p. 261-267, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.renene.2018.07.030. Acesso em: 17 ago. 2024.
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      Tavares, B., Felipe, M. das G. de A., Santos, J. C. dos, Pereira, F. M., Gomes, S. D., & Sene, L. (2019). An experimental and modeling approach for ethanol production by Kluyveromyces marxianus in stirred tank bioreactor using vacuum extraction as a strategy to overcome product inhibition. Renewable energy, 131, 261-267. doi:10.1016/j.renene.2018.07.030
    • NLM

      Tavares B, Felipe M das G de A, Santos JC dos, Pereira FM, Gomes SD, Sene L. An experimental and modeling approach for ethanol production by Kluyveromyces marxianus in stirred tank bioreactor using vacuum extraction as a strategy to overcome product inhibition [Internet]. Renewable energy. 2019 ;131 261-267.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.renene.2018.07.030
    • Vancouver

      Tavares B, Felipe M das G de A, Santos JC dos, Pereira FM, Gomes SD, Sene L. An experimental and modeling approach for ethanol production by Kluyveromyces marxianus in stirred tank bioreactor using vacuum extraction as a strategy to overcome product inhibition [Internet]. Renewable energy. 2019 ;131 261-267.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.renene.2018.07.030
  • Source: BIORESOURCE TECHNOLOGY. Unidade: EEL

    Subjects: BIOPOLÍMEROS, BAGAÇOS, CANA-DE-AÇÚCAR, REFINARIAS

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      SILVA-FERNANDES, T. et al. Biodegradable alternative for removing toxic compounds from sugarcane bagasse hemicellulosic hydrolysates for valorization in biorefineries. BIORESOURCE TECHNOLOGY, v. 243, n. 1, p. 384-392, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.biortech.2017.06.064. Acesso em: 17 ago. 2024.
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      Silva-Fernandes, T., Santos, J. C., Hasmann, F., Rodrigues, R. C. L. B., Izario Filho, H. J., & Felipe, M. G. A. (2017). Biodegradable alternative for removing toxic compounds from sugarcane bagasse hemicellulosic hydrolysates for valorization in biorefineries. BIORESOURCE TECHNOLOGY, 243( 1), 384-392. doi:10.1016/j.biortech.2017.06.064
    • NLM

      Silva-Fernandes T, Santos JC, Hasmann F, Rodrigues RCLB, Izario Filho HJ, Felipe MGA. Biodegradable alternative for removing toxic compounds from sugarcane bagasse hemicellulosic hydrolysates for valorization in biorefineries [Internet]. BIORESOURCE TECHNOLOGY. 2017 ;243( 1): 384-392.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.biortech.2017.06.064
    • Vancouver

      Silva-Fernandes T, Santos JC, Hasmann F, Rodrigues RCLB, Izario Filho HJ, Felipe MGA. Biodegradable alternative for removing toxic compounds from sugarcane bagasse hemicellulosic hydrolysates for valorization in biorefineries [Internet]. BIORESOURCE TECHNOLOGY. 2017 ;243( 1): 384-392.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.biortech.2017.06.064
  • Source: BIOMASS CONVERSION AND BIOREFINERY. Unidade: EEL

    Subjects: PROBIÓTICOS, LACTOBACILLUS, BIODIESEL

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      DANIEL RIVALDI, Juan Daniel et al. Valorization of glycerol from biodiesel industries as a renewable substrate for co-producing probiotic bacteria biomass and acetic acid. BIOMASS CONVERSION AND BIOREFINERY, v. 7, n. 1, p. 81-90, 2017Tradução . . Disponível em: https://doi.org/10.1007/s13399-016-0216-8. Acesso em: 17 ago. 2024.
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      Daniel Rivaldi, J. D., Duarte, L. C., Rodrigues, R. de C. L. B., Izário Filho, H. J., Felipe, M. das G. de A., & Mancilha, I. M. (2017). Valorization of glycerol from biodiesel industries as a renewable substrate for co-producing probiotic bacteria biomass and acetic acid. BIOMASS CONVERSION AND BIOREFINERY, 7( 1), 81-90. doi:10.1007/s13399-016-0216-8
    • NLM

      Daniel Rivaldi JD, Duarte LC, Rodrigues R de CLB, Izário Filho HJ, Felipe M das G de A, Mancilha IM. Valorization of glycerol from biodiesel industries as a renewable substrate for co-producing probiotic bacteria biomass and acetic acid [Internet]. BIOMASS CONVERSION AND BIOREFINERY. 2017 ;7( 1): 81-90.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s13399-016-0216-8
    • Vancouver

      Daniel Rivaldi JD, Duarte LC, Rodrigues R de CLB, Izário Filho HJ, Felipe M das G de A, Mancilha IM. Valorization of glycerol from biodiesel industries as a renewable substrate for co-producing probiotic bacteria biomass and acetic acid [Internet]. BIOMASS CONVERSION AND BIOREFINERY. 2017 ;7( 1): 81-90.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1007/s13399-016-0216-8
  • Source: Industrial & Engineering Chemistry Research. Unidade: EEL

    Subjects: ÓLEOS VEGETAIS, BIODIESEL

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      RAMOS, Lucas et al. Combined use of a two-stage packed bed reactor with a glycerol extraction column for enzymatic biodiesel synthesis from macaw palm oil. Industrial & Engineering Chemistry Research, v. 56, n. 1, p. 1-7, 2017Tradução . . Disponível em: https://doi.org/10.1021/acs.iecr.6b03811. Acesso em: 17 ago. 2024.
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      Ramos, L., Martin, L. S., Santos, J. C., & Castro, H. F. de. (2017). Combined use of a two-stage packed bed reactor with a glycerol extraction column for enzymatic biodiesel synthesis from macaw palm oil. Industrial & Engineering Chemistry Research, 56( 1), 1-7. doi:10.1021/acs.iecr.6b03811
    • NLM

      Ramos L, Martin LS, Santos JC, Castro HF de. Combined use of a two-stage packed bed reactor with a glycerol extraction column for enzymatic biodiesel synthesis from macaw palm oil [Internet]. Industrial & Engineering Chemistry Research. 2017 ;56( 1): 1-7.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1021/acs.iecr.6b03811
    • Vancouver

      Ramos L, Martin LS, Santos JC, Castro HF de. Combined use of a two-stage packed bed reactor with a glycerol extraction column for enzymatic biodiesel synthesis from macaw palm oil [Internet]. Industrial & Engineering Chemistry Research. 2017 ;56( 1): 1-7.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1021/acs.iecr.6b03811
  • Source: International Journal of Research in Engineering and Technology. Unidade: EEL

    Subjects: EFLUENTES, ALGODÃO, LICORES

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      SANTOS, L.F. e PAIVA, T. C. B. e SILVA, F. T. Chemical process followed by activated sludge treatment of cotton pulping effluents for nitrocellulose production. International Journal of Research in Engineering and Technology, v. 6, n. 5, p. 32-36, 2017Tradução . . Disponível em: https://doi.org/10.15623/ijret.2017.0605006. Acesso em: 17 ago. 2024.
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      Santos, L. F., Paiva, T. C. B., & Silva, F. T. (2017). Chemical process followed by activated sludge treatment of cotton pulping effluents for nitrocellulose production. International Journal of Research in Engineering and Technology, 6( 5), 32-36. doi:10.15623/ijret.2017.0605006
    • NLM

      Santos LF, Paiva TCB, Silva FT. Chemical process followed by activated sludge treatment of cotton pulping effluents for nitrocellulose production [Internet]. International Journal of Research in Engineering and Technology. 2017 ;6( 5): 32-36.[citado 2024 ago. 17 ] Available from: https://doi.org/10.15623/ijret.2017.0605006
    • Vancouver

      Santos LF, Paiva TCB, Silva FT. Chemical process followed by activated sludge treatment of cotton pulping effluents for nitrocellulose production [Internet]. International Journal of Research in Engineering and Technology. 2017 ;6( 5): 32-36.[citado 2024 ago. 17 ] Available from: https://doi.org/10.15623/ijret.2017.0605006
  • Source: Book of Abstract Summaries - 25 th Edition. Conference titles: 25th European Biomass Conference and Exhibition - EUBCE 2017. Unidade: EEL

    Assunto: ETANOL

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      CARNEIRO, L. M. e ROBERTO, I.C. e MUSSATTO, S.I. Study on the requirement of nitrogen sources by Scheffersomyces Stipitis NRRL Y-7124 to produce ethanol from xylose based-media. 2017, Anais.. [S.l.]: Escola de Engenharia de Lorena, Universidade de São Paulo, 2017. p. 385-385. Disponível em: http://programme.eubce.com/B/PDF/BOA.pdf. Acesso em: 17 ago. 2024.
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      Carneiro, L. M., Roberto, I. C., & Mussatto, S. I. (2017). Study on the requirement of nitrogen sources by Scheffersomyces Stipitis NRRL Y-7124 to produce ethanol from xylose based-media. In Book of Abstract Summaries - 25 th Edition (p. 385-385). Escola de Engenharia de Lorena, Universidade de São Paulo. Recuperado de http://programme.eubce.com/B/PDF/BOA.pdf
    • NLM

      Carneiro LM, Roberto IC, Mussatto SI. Study on the requirement of nitrogen sources by Scheffersomyces Stipitis NRRL Y-7124 to produce ethanol from xylose based-media [Internet]. Book of Abstract Summaries - 25 th Edition. 2017 ;385-385.[citado 2024 ago. 17 ] Available from: http://programme.eubce.com/B/PDF/BOA.pdf
    • Vancouver

      Carneiro LM, Roberto IC, Mussatto SI. Study on the requirement of nitrogen sources by Scheffersomyces Stipitis NRRL Y-7124 to produce ethanol from xylose based-media [Internet]. Book of Abstract Summaries - 25 th Edition. 2017 ;385-385.[citado 2024 ago. 17 ] Available from: http://programme.eubce.com/B/PDF/BOA.pdf
  • Source: International Journal of Research in Engineering and Technology. Unidade: EEL

    Subjects: EFLUENTES, CELULOSE, LIGNINA, BRANQUEAMENTO

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      SANTOS, L.F. e SILVA, F. T. e PAIVA, T. C. B. Characterization and treatment of effluents from the three main stages of nitrocellulose production for explosives. International Journal of Research in Engineering and Technology, v. 06, n. 03, p. 50-54, 2017Tradução . . Disponível em: https://doi.org/10.15623/ijret.2017.0603008. Acesso em: 17 ago. 2024.
    • APA

      Santos, L. F., Silva, F. T., & Paiva, T. C. B. (2017). Characterization and treatment of effluents from the three main stages of nitrocellulose production for explosives. International Journal of Research in Engineering and Technology, 06( 03), 50-54. doi:10.15623/ijret.2017.0603008
    • NLM

      Santos LF, Silva FT, Paiva TCB. Characterization and treatment of effluents from the three main stages of nitrocellulose production for explosives [Internet]. International Journal of Research in Engineering and Technology. 2017 ;06( 03): 50-54.[citado 2024 ago. 17 ] Available from: https://doi.org/10.15623/ijret.2017.0603008
    • Vancouver

      Santos LF, Silva FT, Paiva TCB. Characterization and treatment of effluents from the three main stages of nitrocellulose production for explosives [Internet]. International Journal of Research in Engineering and Technology. 2017 ;06( 03): 50-54.[citado 2024 ago. 17 ] Available from: https://doi.org/10.15623/ijret.2017.0603008
  • Source: Brazilian Journal of Food Technology. Unidade: EEL

    Subjects: LIPASE, GORDURAS, LEITE, ÓLEO DE SOJA

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      PAULA, Ariela Veloso et al. Assessing the reaction conditions to mediate the milkfat-soybean oil enzymatic interesterification. Brazilian Journal of Food Technology, v. 19, 2016Tradução . . Disponível em: https://doi.org/10.1590/1981-6723.11615. Acesso em: 17 ago. 2024.
    • APA

      Paula, A. V., Nunes, G. F. M., Castro, H. F. F. de, & Santos, J. C. dos. (2016). Assessing the reaction conditions to mediate the milkfat-soybean oil enzymatic interesterification. Brazilian Journal of Food Technology, 19. doi:10.1590/1981-6723.11615
    • NLM

      Paula AV, Nunes GFM, Castro HFF de, Santos JC dos. Assessing the reaction conditions to mediate the milkfat-soybean oil enzymatic interesterification [Internet]. Brazilian Journal of Food Technology. 2016 ;19[citado 2024 ago. 17 ] Available from: https://doi.org/10.1590/1981-6723.11615
    • Vancouver

      Paula AV, Nunes GFM, Castro HFF de, Santos JC dos. Assessing the reaction conditions to mediate the milkfat-soybean oil enzymatic interesterification [Internet]. Brazilian Journal of Food Technology. 2016 ;19[citado 2024 ago. 17 ] Available from: https://doi.org/10.1590/1981-6723.11615
  • Source: Anais do XXI Congresso Brasileiro de Engenharia Química. Conference titles: XXI Congresso Brasileiro de Engenharia Química. Unidade: EEL

    Assunto: BIODIESEL

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      RAMOS, L. et al. Produção enzimática de biodiesel a partir do óleo de macaúba em reator de leito fixo em duplo estágio incorporando coluna extratora de glicerol. 2016, Anais.. São Paulo: Galoá, 2016. p. 39509-39516. Disponível em: https://proceedings.galoa.com.br/cobeq/cobeq-2016/trabalhos/producao-enzimatica-de-biodiesel-a-partir-do-oleo-de-macauba-em-reator-de-leito-fixo-em-duplo?lang=pt-br#sthash.GhvAQGSI.dpu. Acesso em: 17 ago. 2024.
    • APA

      Ramos, L., Freitas, L., Santos, J. C., & Castro, H. F. de. (2016). Produção enzimática de biodiesel a partir do óleo de macaúba em reator de leito fixo em duplo estágio incorporando coluna extratora de glicerol. In Anais do XXI Congresso Brasileiro de Engenharia Química (p. 39509-39516). São Paulo: Galoá. Recuperado de https://proceedings.galoa.com.br/cobeq/cobeq-2016/trabalhos/producao-enzimatica-de-biodiesel-a-partir-do-oleo-de-macauba-em-reator-de-leito-fixo-em-duplo?lang=pt-br#sthash.GhvAQGSI.dpu
    • NLM

      Ramos L, Freitas L, Santos JC, Castro HF de. Produção enzimática de biodiesel a partir do óleo de macaúba em reator de leito fixo em duplo estágio incorporando coluna extratora de glicerol [Internet]. Anais do XXI Congresso Brasileiro de Engenharia Química. 2016 ;39509-39516.[citado 2024 ago. 17 ] Available from: https://proceedings.galoa.com.br/cobeq/cobeq-2016/trabalhos/producao-enzimatica-de-biodiesel-a-partir-do-oleo-de-macauba-em-reator-de-leito-fixo-em-duplo?lang=pt-br#sthash.GhvAQGSI.dpu
    • Vancouver

      Ramos L, Freitas L, Santos JC, Castro HF de. Produção enzimática de biodiesel a partir do óleo de macaúba em reator de leito fixo em duplo estágio incorporando coluna extratora de glicerol [Internet]. Anais do XXI Congresso Brasileiro de Engenharia Química. 2016 ;39509-39516.[citado 2024 ago. 17 ] Available from: https://proceedings.galoa.com.br/cobeq/cobeq-2016/trabalhos/producao-enzimatica-de-biodiesel-a-partir-do-oleo-de-macauba-em-reator-de-leito-fixo-em-duplo?lang=pt-br#sthash.GhvAQGSI.dpu
  • Source: JANUS. Unidade: EEL

    Subjects: BIOCOMBUSTÍVEIS, SUSTENTABILIDADE

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      GONÇALVES, B. C. M. et al. Microalgas para Produção de Biohidrogênio e Biodiesel. JANUS, v. 12, n. 22, p. 97-112, 2015Tradução . . Disponível em: http://publicacoes.fatea.br/index.php/janus/article/view/1796/1327. Acesso em: 17 ago. 2024.
    • APA

      Gonçalves, B. C. M., Canilha, L., Santos, J. C., Silva, M. B., & Silveira, J. L. da. (2015). Microalgas para Produção de Biohidrogênio e Biodiesel. JANUS, 12( 22), 97-112. Recuperado de http://publicacoes.fatea.br/index.php/janus/article/view/1796/1327
    • NLM

      Gonçalves BCM, Canilha L, Santos JC, Silva MB, Silveira JL da. Microalgas para Produção de Biohidrogênio e Biodiesel [Internet]. JANUS. 2015 ;12( 22): 97-112.[citado 2024 ago. 17 ] Available from: http://publicacoes.fatea.br/index.php/janus/article/view/1796/1327
    • Vancouver

      Gonçalves BCM, Canilha L, Santos JC, Silva MB, Silveira JL da. Microalgas para Produção de Biohidrogênio e Biodiesel [Internet]. JANUS. 2015 ;12( 22): 97-112.[citado 2024 ago. 17 ] Available from: http://publicacoes.fatea.br/index.php/janus/article/view/1796/1327
  • Source: European Journal of Lipid Science and Technology. Unidade: EEL

    Subjects: ENZIMAS, LIPASE

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      PAULA, Ariela V. et al. Continuous enzymatic interesterification of milkfat with soybean oil produces a highly spreadable product rich in polyunsaturated fatty acids. European Journal of Lipid Science and Technology, v. 117, n. 5, p. 608-619, 2015Tradução . . Disponível em: https://doi.org/10.1002/ejlt.201400316. Acesso em: 17 ago. 2024.
    • APA

      Paula, A. V., Nunes, G. F. M., Osório, N. M., Santos, J. C. O., Castro, H. F. F. de, & Ferreira-Dias, S. (2015). Continuous enzymatic interesterification of milkfat with soybean oil produces a highly spreadable product rich in polyunsaturated fatty acids. European Journal of Lipid Science and Technology, 117( 5), 608-619. doi:10.1002/ejlt.201400316
    • NLM

      Paula AV, Nunes GFM, Osório NM, Santos JCO, Castro HFF de, Ferreira-Dias S. Continuous enzymatic interesterification of milkfat with soybean oil produces a highly spreadable product rich in polyunsaturated fatty acids [Internet]. European Journal of Lipid Science and Technology. 2015 ; 117( 5): 608-619.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/ejlt.201400316
    • Vancouver

      Paula AV, Nunes GFM, Osório NM, Santos JCO, Castro HFF de, Ferreira-Dias S. Continuous enzymatic interesterification of milkfat with soybean oil produces a highly spreadable product rich in polyunsaturated fatty acids [Internet]. European Journal of Lipid Science and Technology. 2015 ; 117( 5): 608-619.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/ejlt.201400316

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