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  • Source: Materials Science in Semiconductor Processing. Unidades: EEL, IQSC

    Subjects: FOTOCATÁLISE, ZINCO, BISMUTO

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      MORAES, Nícolas Perciani de et al. Stabilizing the S-scheme ZnO/ZnCr2O4/Bi6Cr2O15 heterojunction through the application of carbon xerogel as both a solid-state mediator and reducing agent. Materials Science in Semiconductor Processing, v. 177, p. 108412, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.mssp.2024.108412. Acesso em: 17 ago. 2024.
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      Moraes, N. P. de, Oliveira, M. F. de, Bacani, R., Rocha, R. da S., Lanza, M. R. de V., & Rodrigues, L. A. (2024). Stabilizing the S-scheme ZnO/ZnCr2O4/Bi6Cr2O15 heterojunction through the application of carbon xerogel as both a solid-state mediator and reducing agent. Materials Science in Semiconductor Processing, 177, 108412. doi:10.1016/j.mssp.2024.108412
    • NLM

      Moraes NP de, Oliveira MF de, Bacani R, Rocha R da S, Lanza MR de V, Rodrigues LA. Stabilizing the S-scheme ZnO/ZnCr2O4/Bi6Cr2O15 heterojunction through the application of carbon xerogel as both a solid-state mediator and reducing agent [Internet]. Materials Science in Semiconductor Processing. 2024 ; 177 108412.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.mssp.2024.108412
    • Vancouver

      Moraes NP de, Oliveira MF de, Bacani R, Rocha R da S, Lanza MR de V, Rodrigues LA. Stabilizing the S-scheme ZnO/ZnCr2O4/Bi6Cr2O15 heterojunction through the application of carbon xerogel as both a solid-state mediator and reducing agent [Internet]. Materials Science in Semiconductor Processing. 2024 ; 177 108412.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.mssp.2024.108412
  • Source: Ceramics International. Unidades: EEL, IQSC

    Subjects: OXIDAÇÃO, NIÓBIO

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      MORAES, Nícolas Perciani de et al. Using KNbO3 catalyst produced from a simple solid-state synthesis method in a new piezophotocatalytic ozonation hybrid process. Ceramics International, v. 49, n. 18, p. 30090-30103, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.ceramint.2023.06.265. Acesso em: 17 ago. 2024.
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      Moraes, N. P. de, Souto, R. S., Campos, T. M. B., Thim, G. P., Lianqing, Y., Rocha, R. da S., et al. (2023). Using KNbO3 catalyst produced from a simple solid-state synthesis method in a new piezophotocatalytic ozonation hybrid process. Ceramics International, 49( 18), 30090-30103. doi:10.1016/j.ceramint.2023.06.265
    • NLM

      Moraes NP de, Souto RS, Campos TMB, Thim GP, Lianqing Y, Rocha R da S, Rodrigues LA, Lanza MR de V. Using KNbO3 catalyst produced from a simple solid-state synthesis method in a new piezophotocatalytic ozonation hybrid process [Internet]. Ceramics International. 2023 ; 49( 18): 30090-30103.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.ceramint.2023.06.265
    • Vancouver

      Moraes NP de, Souto RS, Campos TMB, Thim GP, Lianqing Y, Rocha R da S, Rodrigues LA, Lanza MR de V. Using KNbO3 catalyst produced from a simple solid-state synthesis method in a new piezophotocatalytic ozonation hybrid process [Internet]. Ceramics International. 2023 ; 49( 18): 30090-30103.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.ceramint.2023.06.265
  • Source: Systems Research And Behavioral Science. Unidade: EEL

    Assunto: RECURSOS NATURAIS

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      BONAMIGO, Andrei et al. Lean 4.0 in the value co-creation in agro-industrial services: An agenda for future studies for the efficient resource use. Systems Research And Behavioral Science, v. 40, p. 1-16, 2023Tradução . . Disponível em: https://doi.org/10.1002/sres.2950. Acesso em: 17 ago. 2024.
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      Bonamigo, A., Azeredo, R. R., Carvalho Filho, J. E. M. de, & Andrade, H. de S. (2023). Lean 4.0 in the value co-creation in agro-industrial services: An agenda for future studies for the efficient resource use. Systems Research And Behavioral Science, 40, 1-16. doi:10.1002/sres.2950
    • NLM

      Bonamigo A, Azeredo RR, Carvalho Filho JEM de, Andrade H de S. Lean 4.0 in the value co-creation in agro-industrial services: An agenda for future studies for the efficient resource use [Internet]. Systems Research And Behavioral Science. 2023 ;40 1-16.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/sres.2950
    • Vancouver

      Bonamigo A, Azeredo RR, Carvalho Filho JEM de, Andrade H de S. Lean 4.0 in the value co-creation in agro-industrial services: An agenda for future studies for the efficient resource use [Internet]. Systems Research And Behavioral Science. 2023 ;40 1-16.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/sres.2950
  • Source: Pigment & Resin Technology. Unidade: EEL

    Subjects: BIODIESEL, UREIA, BIOCARVÃO

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      MARCIANO, Lucas Ioran et al. New nutrients evaluation in Spirulina maxima growth for phycocyanin, carbohydrate and biochar production. Pigment & Resin Technology, v. 52, p. 1-10, 2023Tradução . . Disponível em: https://doi.org/10.1108/PRT-04-2023-0033. Acesso em: 17 ago. 2024.
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      Marciano, L. I., Pedro, G. A., Santos, W. R., Tagliaferro, G. V., Batista, F. R. M., & Guimarães, D. H. P. (2023). New nutrients evaluation in Spirulina maxima growth for phycocyanin, carbohydrate and biochar production. Pigment & Resin Technology, 52, 1-10. doi:10.1108/PRT-04-2023-0033
    • NLM

      Marciano LI, Pedro GA, Santos WR, Tagliaferro GV, Batista FRM, Guimarães DHP. New nutrients evaluation in Spirulina maxima growth for phycocyanin, carbohydrate and biochar production [Internet]. Pigment & Resin Technology. 2023 ;52 1-10.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1108/PRT-04-2023-0033
    • Vancouver

      Marciano LI, Pedro GA, Santos WR, Tagliaferro GV, Batista FRM, Guimarães DHP. New nutrients evaluation in Spirulina maxima growth for phycocyanin, carbohydrate and biochar production [Internet]. Pigment & Resin Technology. 2023 ;52 1-10.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1108/PRT-04-2023-0033
  • 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.
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      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: International Journal of Microbiology. Unidade: EEL

    Subjects: SACCHAROMYCES, ETANOL

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      FERNANDES, Flávia da Silva et al. Current Ethanol Production Requirements for the Yeast Saccharomyces cerevisiae. International Journal of Microbiology, v. 2022, p. 1-14, 2022Tradução . . Disponível em: https://doi.org/10.1155/2022/7878830. Acesso em: 17 ago. 2024.
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      Fernandes, F. da S., Souza, É. S. de, Carneiro, L. M., Silva, J. P. A., Souza, J. V. B. de, & Batista, J. da S. (2022). Current Ethanol Production Requirements for the Yeast Saccharomyces cerevisiae. International Journal of Microbiology, 2022, 1-14. doi:10.1155/2022/7878830
    • NLM

      Fernandes F da S, Souza ÉS de, Carneiro LM, Silva JPA, Souza JVB de, Batista J da S. Current Ethanol Production Requirements for the Yeast Saccharomyces cerevisiae [Internet]. International Journal of Microbiology. 2022 ;2022 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1155/2022/7878830
    • Vancouver

      Fernandes F da S, Souza ÉS de, Carneiro LM, Silva JPA, Souza JVB de, Batista J da S. Current Ethanol Production Requirements for the Yeast Saccharomyces cerevisiae [Internet]. International Journal of Microbiology. 2022 ;2022 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1155/2022/7878830
  • Source: New journal of chemistry. Unidade: EEL

    Assunto: ENGENHARIA QUÍMICA

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      TABUTI, Thiago Galeoti et al. Self-assembled Mg(OH) gels driving to MgO nanoribbons. New journal of chemistry, v. 46, n. 37, p. 1-10, 2022Tradução . . Disponível em: https://doi.org/10.1039/D2NJ03235J. Acesso em: 17 ago. 2024.
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      Tabuti, T. G., Brazuna, L. P., Antoneli, R. G., Ricardo, E. do V., Bacani, R., Tada, D. B., & Triboni, E. R. (2022). Self-assembled Mg(OH) gels driving to MgO nanoribbons. New journal of chemistry, 46( 37), 1-10. doi:10.1039/D2NJ03235J
    • NLM

      Tabuti TG, Brazuna LP, Antoneli RG, Ricardo E do V, Bacani R, Tada DB, Triboni ER. Self-assembled Mg(OH) gels driving to MgO nanoribbons [Internet]. New journal of chemistry. 2022 ;46( 37): 1-10.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1039/D2NJ03235J
    • Vancouver

      Tabuti TG, Brazuna LP, Antoneli RG, Ricardo E do V, Bacani R, Tada DB, Triboni ER. Self-assembled Mg(OH) gels driving to MgO nanoribbons [Internet]. New journal of chemistry. 2022 ;46( 37): 1-10.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1039/D2NJ03235J
  • Source: Vine Journal Of Information And Knowledge Management Systems. Unidade: EEL

    Subjects: COOPERAÇÃO, GESTÃO DA INFORMAÇÃO

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      BONAMIGO, Andrei et al. Knowledge management in dairy production: A contribution to the competitiveness based on the value co-creation. Vine Journal Of Information And Knowledge Management Systems, n. , p. 193-, 2022Tradução . . Disponível em: https://doi.org/10.1108/VJIKMS-06-2022-0193. Acesso em: 17 ago. 2024.
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      Bonamigo, A., Rosa, L. G., Frech, C. G., & Andrade, H. de S. (2022). Knowledge management in dairy production: A contribution to the competitiveness based on the value co-creation. Vine Journal Of Information And Knowledge Management Systems, ( ), 193-. doi:10.1108/VJIKMS-06-2022-0193
    • NLM

      Bonamigo A, Rosa LG, Frech CG, Andrade H de S. Knowledge management in dairy production: A contribution to the competitiveness based on the value co-creation [Internet]. Vine Journal Of Information And Knowledge Management Systems. 2022 ;( ): 193-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1108/VJIKMS-06-2022-0193
    • Vancouver

      Bonamigo A, Rosa LG, Frech CG, Andrade H de S. Knowledge management in dairy production: A contribution to the competitiveness based on the value co-creation [Internet]. Vine Journal Of Information And Knowledge Management Systems. 2022 ;( ): 193-.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1108/VJIKMS-06-2022-0193
  • Source: Environmental technology. Unidade: EEL

    Subjects: RESÍDUOS INDUSTRIAIS, ÁGUAS RESIDUÁRIAS, CINÉTICA

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      ENOKIHARA, Gisella Harue et al. Kinetic modeling of total organic carbon degradation in dairy wastewater. Environmental technology, p. 1-17, 2022Tradução . . Disponível em: https://doi.org/10.1080/09593330.2022.2130103. Acesso em: 17 ago. 2024.
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      Enokihara, G. H., Loures, C. C. A., Izario Filho, H. J., Alcântara, M. A. K. de, Siqueira, A. F., Da Rós, P. C. M., et al. (2022). Kinetic modeling of total organic carbon degradation in dairy wastewater. Environmental technology, 1-17. doi:10.1080/09593330.2022.2130103
    • NLM

      Enokihara GH, Loures CCA, Izario Filho HJ, Alcântara MAK de, Siqueira AF, Da Rós PCM, Napoleão DA dos S, Aguiar LG de. Kinetic modeling of total organic carbon degradation in dairy wastewater [Internet]. Environmental technology. 2022 ;1-17.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1080/09593330.2022.2130103
    • Vancouver

      Enokihara GH, Loures CCA, Izario Filho HJ, Alcântara MAK de, Siqueira AF, Da Rós PCM, Napoleão DA dos S, Aguiar LG de. Kinetic modeling of total organic carbon degradation in dairy wastewater [Internet]. Environmental technology. 2022 ;1-17.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1080/09593330.2022.2130103
  • Source: Heliyon. Unidades: EEL, IQ

    Subjects: FLUORESCÊNCIA, QUÍMICA ORGÂNICA, QUÍMICA ANALÍTICA

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      MARTINS, V. S et al. Micellar effects and analytical applications of nitro substitution in 4-Nitro-N-alkyl-1,8-naphthalimide by cysteine derivatives. Heliyon, v. 6, p. 1-14 art. e04938, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.heliyon.2020.e04938. Acesso em: 17 ago. 2024.
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      Martins, V. S., Triboni, E. R., Bonilha, J. B. S., Gonçalves, L. M., Mortara, L., Carvalho, L. A. C., et al. (2020). Micellar effects and analytical applications of nitro substitution in 4-Nitro-N-alkyl-1,8-naphthalimide by cysteine derivatives. Heliyon, 6, 1-14 art. e04938. doi:10.1016/j.heliyon.2020.e04938
    • NLM

      Martins VS, Triboni ER, Bonilha JBS, Gonçalves LM, Mortara L, Carvalho LAC, Manda BR, Lacerda CD, Meotti FC, Politi MJ, Chaimovich Guralnik H, Cuccovia IM. Micellar effects and analytical applications of nitro substitution in 4-Nitro-N-alkyl-1,8-naphthalimide by cysteine derivatives [Internet]. Heliyon. 2020 ; 6 1-14 art. e04938.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.heliyon.2020.e04938
    • Vancouver

      Martins VS, Triboni ER, Bonilha JBS, Gonçalves LM, Mortara L, Carvalho LAC, Manda BR, Lacerda CD, Meotti FC, Politi MJ, Chaimovich Guralnik H, Cuccovia IM. Micellar effects and analytical applications of nitro substitution in 4-Nitro-N-alkyl-1,8-naphthalimide by cysteine derivatives [Internet]. Heliyon. 2020 ; 6 1-14 art. e04938.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.heliyon.2020.e04938
  • Source: Chemical Engineering and Technology (Internet). Unidade: EEL

    Assunto: LIPASE

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      SILVA, Mateus Vinicius Casagrande da et al. Synthesis of isopropyl palmitate by lipase immobilized on magnetized polymer matrix. Chemical Engineering and Technology (Internet), v. 43, n. 9, p. 1741-1748, 2020Tradução . . Disponível em: https://doi.org/10.1002/ceat.201900361. Acesso em: 17 ago. 2024.
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      Silva, M. V. C. da, Rosa, C., Aguiar, L. G. de, Oliveira, P. C., Castro, H. F. de, & Freitas, L. de. (2020). Synthesis of isopropyl palmitate by lipase immobilized on magnetized polymer matrix. Chemical Engineering and Technology (Internet), 43( 9), 1741-1748. doi:10.1002/ceat.201900361
    • NLM

      Silva MVC da, Rosa C, Aguiar LG de, Oliveira PC, Castro HF de, Freitas L de. Synthesis of isopropyl palmitate by lipase immobilized on magnetized polymer matrix [Internet]. Chemical Engineering and Technology (Internet). 2020 ; 43( 9): 1741-1748.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/ceat.201900361
    • Vancouver

      Silva MVC da, Rosa C, Aguiar LG de, Oliveira PC, Castro HF de, Freitas L de. Synthesis of isopropyl palmitate by lipase immobilized on magnetized polymer matrix [Internet]. Chemical Engineering and Technology (Internet). 2020 ; 43( 9): 1741-1748.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1002/ceat.201900361
  • Source: Chemical engineering communications. Unidade: EEL

    Subjects: LIPASE, CINÉTICA

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      SILVA, Mateus Vinicius Casagrande da et al. Kinetic study of isopropyl palmitate synthesis catalyzed by lipases immobilized on a magnetic copolymer support. Chemical engineering communications, n. , p. 1329-1336, 2020Tradução . . Disponível em: https://doi.org/10.1080/00986445.2019.1647179. Acesso em: 17 ago. 2024.
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      Silva, M. V. C. da, Aguiar, L. G. de, Rosa, C., Castro, H. F. de, & Freitas, L. (2020). Kinetic study of isopropyl palmitate synthesis catalyzed by lipases immobilized on a magnetic copolymer support. Chemical engineering communications, ( ), 1329-1336. doi:10.1080/00986445.2019.1647179
    • NLM

      Silva MVC da, Aguiar LG de, Rosa C, Castro HF de, Freitas L. Kinetic study of isopropyl palmitate synthesis catalyzed by lipases immobilized on a magnetic copolymer support [Internet]. Chemical engineering communications. 2020 ;( ): 1329-1336.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1080/00986445.2019.1647179
    • Vancouver

      Silva MVC da, Aguiar LG de, Rosa C, Castro HF de, Freitas L. Kinetic study of isopropyl palmitate synthesis catalyzed by lipases immobilized on a magnetic copolymer support [Internet]. Chemical engineering communications. 2020 ;( ): 1329-1336.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1080/00986445.2019.1647179
  • Source: New journal of chemistry. Unidades: EEL, IQ

    Assunto: NANOPARTÍCULAS

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      BRAZUNA, Lorena Portela et al. Effect of Lithium and Sodium ions on size and morphology of ZnO nanoparticles synthesized by glycerol-urea route. New journal of chemistry, v. 48, p. 10-15, 2019Tradução . . Disponível em: https://doi.org/10.1039/c9nj04331d. Acesso em: 17 ago. 2024.
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      Brazuna, L. P., Tabuti, T. G., Silva, A. de P., Tada, D. B., Politi, M. J., Bacani, R., & Triboni, E. R. (2019). Effect of Lithium and Sodium ions on size and morphology of ZnO nanoparticles synthesized by glycerol-urea route. New journal of chemistry, 48, 10-15. doi:10.1039/c9nj04331d
    • NLM

      Brazuna LP, Tabuti TG, Silva A de P, Tada DB, Politi MJ, Bacani R, Triboni ER. Effect of Lithium and Sodium ions on size and morphology of ZnO nanoparticles synthesized by glycerol-urea route [Internet]. New journal of chemistry. 2019 ;48 10-15.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1039/c9nj04331d
    • Vancouver

      Brazuna LP, Tabuti TG, Silva A de P, Tada DB, Politi MJ, Bacani R, Triboni ER. Effect of Lithium and Sodium ions on size and morphology of ZnO nanoparticles synthesized by glycerol-urea route [Internet]. New journal of chemistry. 2019 ;48 10-15.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1039/c9nj04331d
  • Source: Chemical Engineering Research and Design. Unidades: EEL, FZEA

    Subjects: BERGAMOTA, ÓLEOS ESSENCIAIS, EXTRAÇÃO DE LÍQUIDOS, SOLVENTE

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      GONCALVES, Daniel et al. Performance of continuous countercurrent extractor on the fractionation of Citrus bergamia essential oil using ethanol/water mixtures as solvents. Chemical Engineering Research and Design, v. 137, p. 566-576, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.cherd.2018.08.008. Acesso em: 17 ago. 2024.
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      Goncalves, D., Koshima, C. C., Batista, F. R. M., & Rodrigues, C. E. da C. (2018). Performance of continuous countercurrent extractor on the fractionation of Citrus bergamia essential oil using ethanol/water mixtures as solvents. Chemical Engineering Research and Design, 137, 566-576. doi:10.1016/j.cherd.2018.08.008
    • NLM

      Goncalves D, Koshima CC, Batista FRM, Rodrigues CE da C. Performance of continuous countercurrent extractor on the fractionation of Citrus bergamia essential oil using ethanol/water mixtures as solvents [Internet]. Chemical Engineering Research and Design. 2018 ; 137 566-576.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.cherd.2018.08.008
    • Vancouver

      Goncalves D, Koshima CC, Batista FRM, Rodrigues CE da C. Performance of continuous countercurrent extractor on the fractionation of Citrus bergamia essential oil using ethanol/water mixtures as solvents [Internet]. Chemical Engineering Research and Design. 2018 ; 137 566-576.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.cherd.2018.08.008
  • Source: FUEL. Unidade: EEL

    Subjects: BIODIESEL, CATÁLISE

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      LOURES, Carla C.A. et al. Simultaneous esterification and transesterification of microbial oil from Chlorella minutissima by acid catalysis route: A comparison between homogeneous and heterogeneous catalysts. FUEL, v. 211, n. , p. 261-268, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.fuel.2017.09.073. Acesso em: 17 ago. 2024.
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      Loures, C. C. A., Amaral, M. S., Rós, P. C. M., Zorn, S. M. F. E., Castro, H. F., & Silva, M. B. (2018). Simultaneous esterification and transesterification of microbial oil from Chlorella minutissima by acid catalysis route: A comparison between homogeneous and heterogeneous catalysts. FUEL, 211( ), 261-268. doi:10.1016/j.fuel.2017.09.073
    • NLM

      Loures CCA, Amaral MS, Rós PCM, Zorn SMFE, Castro HF, Silva MB. Simultaneous esterification and transesterification of microbial oil from Chlorella minutissima by acid catalysis route: A comparison between homogeneous and heterogeneous catalysts [Internet]. FUEL. 2018 ;211( ): 261-268.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.fuel.2017.09.073
    • Vancouver

      Loures CCA, Amaral MS, Rós PCM, Zorn SMFE, Castro HF, Silva MB. Simultaneous esterification and transesterification of microbial oil from Chlorella minutissima by acid catalysis route: A comparison between homogeneous and heterogeneous catalysts [Internet]. FUEL. 2018 ;211( ): 261-268.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.fuel.2017.09.073
  • Source: Fuel. Unidade: EEL

    Subjects: BIODIESEL, CATALISADORES

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      CARVALHO, Ana Karine F. et al. Biodiesel production from Mucor circinelloides using ethanol and heteropolyacid in one and two-step transesterification. Fuel, v. 202, p. 503-511, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.fuel.2017.04.063. Acesso em: 17 ago. 2024.
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      Carvalho, A. K. F., Conceição, L. R. V. da, Silva, J. P. V., Perez, V. H., & Castro, H. Fde. (2017). Biodiesel production from Mucor circinelloides using ethanol and heteropolyacid in one and two-step transesterification. Fuel, 202, 503-511. doi:10.1016/j.fuel.2017.04.063
    • NLM

      Carvalho AKF, Conceição LRV da, Silva JPV, Perez VH, Castro HFde. Biodiesel production from Mucor circinelloides using ethanol and heteropolyacid in one and two-step transesterification [Internet]. Fuel. 2017 ;202 503-511.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.fuel.2017.04.063
    • Vancouver

      Carvalho AKF, Conceição LRV da, Silva JPV, Perez VH, Castro HFde. Biodiesel production from Mucor circinelloides using ethanol and heteropolyacid in one and two-step transesterification [Internet]. Fuel. 2017 ;202 503-511.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.fuel.2017.04.063
  • Source: Journal of Advances in Biology & Biotechnology. Unidades: CENA, EEL

    Subjects: BIODIESEL, ÁCIDOS GRAXOS, CYANOPHYTA, IRRADIAÇÃO, LIPASE

    Acesso à fonteAcesso à fonteDOIHow to cite
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      RÓS, Patrícia C. M. Da et al. Microbial oil derived from filamentous cyanobacterium Trichormus sp. as feedstock to yield fatty acid ethyl esters by enzymatic synthesis. Journal of Advances in Biology & Biotechnology, v. 12, n. 4, p. 1-14, 2017Tradução . . Disponível em: https://doi.org/10.9734/JABB/2017/33045. Acesso em: 17 ago. 2024.
    • APA

      Rós, P. C. M. D., Silva, C. S. P. da, Silva-Stenico, M. E., Fiore, M. de F., & Castro, H. F. de. (2017). Microbial oil derived from filamentous cyanobacterium Trichormus sp. as feedstock to yield fatty acid ethyl esters by enzymatic synthesis. Journal of Advances in Biology & Biotechnology, 12( 4), 1-14. doi:10.9734/JABB/2017/33045
    • NLM

      Rós PCMD, Silva CSP da, Silva-Stenico ME, Fiore M de F, Castro HF de. Microbial oil derived from filamentous cyanobacterium Trichormus sp. as feedstock to yield fatty acid ethyl esters by enzymatic synthesis [Internet]. Journal of Advances in Biology & Biotechnology. 2017 ; 12( 4): 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.9734/JABB/2017/33045
    • Vancouver

      Rós PCMD, Silva CSP da, Silva-Stenico ME, Fiore M de F, Castro HF de. Microbial oil derived from filamentous cyanobacterium Trichormus sp. as feedstock to yield fatty acid ethyl esters by enzymatic synthesis [Internet]. Journal of Advances in Biology & Biotechnology. 2017 ; 12( 4): 1-14.[citado 2024 ago. 17 ] Available from: https://doi.org/10.9734/JABB/2017/33045
  • Source: Anais do 15th International Conference on Environmental Science And Technology. Conference titles: International Conference on Environmental Science And Technology. Unidade: EEL

    Subjects: BIODIESEL, ÓLEOS VEGETAIS COMO COMBUSTÍVEIS

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      MACHADO, S. A. e CASTRO, H. F. e GIORDANI, D.S. Production of biodiesel from macaw palm (Acrocomia aculeata) oil with high acidity employing hydroesterification process. Anais do 15th International Conference on Environmental Science And Technology. Oxford, UK: Escola de Engenharia de Lorena, Universidade de São Paulo. Disponível em: https://doi.org/10.1016/j.renene.2017.05.080. Acesso em: 17 ago. 2024. , 2017
    • APA

      Machado, S. A., Castro, H. F., & Giordani, D. S. (2017). Production of biodiesel from macaw palm (Acrocomia aculeata) oil with high acidity employing hydroesterification process. Anais do 15th International Conference on Environmental Science And Technology. Oxford, UK: Escola de Engenharia de Lorena, Universidade de São Paulo. doi:10.1016/j.renene.2017.05.080
    • NLM

      Machado SA, Castro HF, Giordani DS. Production of biodiesel from macaw palm (Acrocomia aculeata) oil with high acidity employing hydroesterification process [Internet]. Anais do 15th International Conference on Environmental Science And Technology. 2017 ;[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.renene.2017.05.080
    • Vancouver

      Machado SA, Castro HF, Giordani DS. Production of biodiesel from macaw palm (Acrocomia aculeata) oil with high acidity employing hydroesterification process [Internet]. Anais do 15th International Conference on Environmental Science And Technology. 2017 ;[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.renene.2017.05.080
  • Source: Journal of Magnetism and Magnetic Materials. Unidade: EEL

    Subjects: LIPASE, BIOTRANSFORMAÇÃO

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      BENTO, H.B.S. et al. Magnetized poly(STY-co-DVB) as a matrix for immobilizing microbial lipase to be used in biotransformation. Journal of Magnetism and Magnetic Materials, v. 426, p. 95-101, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.jmmm.2016.11.061. Acesso em: 17 ago. 2024.
    • APA

      Bento, H. B. S., Castro, H. Fde, Oliveira, P. Cde, & Freitas, L. (2017). Magnetized poly(STY-co-DVB) as a matrix for immobilizing microbial lipase to be used in biotransformation. Journal of Magnetism and Magnetic Materials, 426, 95-101. doi:10.1016/j.jmmm.2016.11.061
    • NLM

      Bento HBS, Castro HFde, Oliveira PCde, Freitas L. Magnetized poly(STY-co-DVB) as a matrix for immobilizing microbial lipase to be used in biotransformation [Internet]. Journal of Magnetism and Magnetic Materials. 2017 ;426 95-101.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.jmmm.2016.11.061
    • Vancouver

      Bento HBS, Castro HFde, Oliveira PCde, Freitas L. Magnetized poly(STY-co-DVB) as a matrix for immobilizing microbial lipase to be used in biotransformation [Internet]. Journal of Magnetism and Magnetic Materials. 2017 ;426 95-101.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.jmmm.2016.11.061
  • Source: Separation and Purification Technology. Unidade: EEL

    Assunto: DESTILAÇÃO

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      MEIRELLES, A. J. A. et al. A simplified and general approach to distillation with parallel streams: the cases of para- and metastillation. Separation and Purification Technology, v. 177, p. 313-326, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.seppur.2017.01.003. Acesso em: 17 ago. 2024.
    • APA

      Meirelles, A. J. A., Biasi, L. C. K., Batista, F. R. M., & Batista, E. A. C. (2017). A simplified and general approach to distillation with parallel streams: the cases of para- and metastillation. Separation and Purification Technology, 177, 313-326. doi:10.1016/j.seppur.2017.01.003
    • NLM

      Meirelles AJA, Biasi LCK, Batista FRM, Batista EAC. A simplified and general approach to distillation with parallel streams: the cases of para- and metastillation [Internet]. Separation and Purification Technology. 2017 ;177 313-326.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.seppur.2017.01.003
    • Vancouver

      Meirelles AJA, Biasi LCK, Batista FRM, Batista EAC. A simplified and general approach to distillation with parallel streams: the cases of para- and metastillation [Internet]. Separation and Purification Technology. 2017 ;177 313-326.[citado 2024 ago. 17 ] Available from: https://doi.org/10.1016/j.seppur.2017.01.003

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