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  • Source: GCB Bioenergy. Unidade: IQ

    Subjects: BIOCOMBUSTÍVEIS, BIODIESEL, MILHO, ETANOL, CANA-DE-AÇÚCAR, AQUECIMENTO GLOBAL

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      CANTARELLA, Heitor et al. Biofuel technologies: lessons learned and pathways to decarbonization. GCB Bioenergy, v. 15, p. 1190–1203, 2023Tradução . . Disponível em: https://dx.doi.org/10.1111/gcbb.13091. Acesso em: 27 set. 2024.
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      Cantarella, H., Silva, J. F. L., Nogueira, L. A. H., Maciel Filho, R., Rossetto, R., Ekbom, T., et al. (2023). Biofuel technologies: lessons learned and pathways to decarbonization. GCB Bioenergy, 15, 1190–1203. doi:10.1111/gcbb.13091
    • NLM

      Cantarella H, Silva JFL, Nogueira LAH, Maciel Filho R, Rossetto R, Ekbom T, Souza GM, Langer FM. Biofuel technologies: lessons learned and pathways to decarbonization [Internet]. GCB Bioenergy. 2023 ; 15 1190–1203.[citado 2024 set. 27 ] Available from: https://dx.doi.org/10.1111/gcbb.13091
    • Vancouver

      Cantarella H, Silva JFL, Nogueira LAH, Maciel Filho R, Rossetto R, Ekbom T, Souza GM, Langer FM. Biofuel technologies: lessons learned and pathways to decarbonization [Internet]. GCB Bioenergy. 2023 ; 15 1190–1203.[citado 2024 set. 27 ] Available from: https://dx.doi.org/10.1111/gcbb.13091
  • Source: Journal of Laboratory Chemical Education. Unidade: IQ

    Subjects: ÓLEOS COMBUSTÍVEIS, BABAÇU, BIODIESEL, CATÁLISE, EQUILÍBRIO QUÍMICO

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      EL SEOUD, Omar A e KEPPELER, Nicolas e ZAMBELLI, Maria Helena. Sustainable Fuels for High School Students: Synthesis of Biodiesel from an Amazon Region Oil (Babassu). Journal of Laboratory Chemical Education, v. 11, n. 1, p. 1-6, 2023Tradução . . Disponível em: https://dx.doi.org/10.5923/j.jlce.20231101.01. Acesso em: 27 set. 2024.
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      El Seoud, O. A., Keppeler, N., & Zambelli, M. H. (2023). Sustainable Fuels for High School Students: Synthesis of Biodiesel from an Amazon Region Oil (Babassu). Journal of Laboratory Chemical Education, 11( 1), 1-6. doi:10.5923/j.jlce.20231101.01
    • NLM

      El Seoud OA, Keppeler N, Zambelli MH. Sustainable Fuels for High School Students: Synthesis of Biodiesel from an Amazon Region Oil (Babassu) [Internet]. Journal of Laboratory Chemical Education. 2023 ; 11( 1): 1-6.[citado 2024 set. 27 ] Available from: https://dx.doi.org/10.5923/j.jlce.20231101.01
    • Vancouver

      El Seoud OA, Keppeler N, Zambelli MH. Sustainable Fuels for High School Students: Synthesis of Biodiesel from an Amazon Region Oil (Babassu) [Internet]. Journal of Laboratory Chemical Education. 2023 ; 11( 1): 1-6.[citado 2024 set. 27 ] Available from: https://dx.doi.org/10.5923/j.jlce.20231101.01
  • Source: Fuel. Unidade: EEL

    Assunto: BIODIESEL

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      FREIRE, Nian Vieira e NUNES, Matheus Cardoso e CASTILLO, Pedro Felipe Arce. Vapor-liquid equilibrium for the {R-OH + R-palmitate} systems at 50.3 and 101.3 kPa. Fuel, v. 333, p. 1-10, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.fuel.2022.126459. Acesso em: 27 set. 2024.
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      Freire, N. V., Nunes, M. C., & Castillo, P. F. A. (2023). Vapor-liquid equilibrium for the {R-OH + R-palmitate} systems at 50.3 and 101.3 kPa. Fuel, 333, 1-10. doi:10.1016/j.fuel.2022.126459
    • NLM

      Freire NV, Nunes MC, Castillo PFA. Vapor-liquid equilibrium for the {R-OH + R-palmitate} systems at 50.3 and 101.3 kPa [Internet]. Fuel. 2023 ;333 1-10.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.fuel.2022.126459
    • Vancouver

      Freire NV, Nunes MC, Castillo PFA. Vapor-liquid equilibrium for the {R-OH + R-palmitate} systems at 50.3 and 101.3 kPa [Internet]. Fuel. 2023 ;333 1-10.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.fuel.2022.126459
  • Source: Journal of Chemical Education. Unidade: IQ

    Subjects: BIODIESEL, CATALISADORES, LÍQUIDOS IÔNICOS

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      EL SEOUD, Omar A et al. Active learning in the undergraduate chemistry laboratory: synthesis of biodiesel from an amazon region Oil (Babassu): keep It simple!. Journal of Chemical Education, v. 100, n. 8, p. 2926-2934, 2023Tradução . . Disponível em: https://doi.org/10.1021/acs.jchemed.2c01124. Acesso em: 27 set. 2024.
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      El Seoud, O. A., Keppeler, N., Sandrin, D. M. F., & Morselli, G. R. (2023). Active learning in the undergraduate chemistry laboratory: synthesis of biodiesel from an amazon region Oil (Babassu): keep It simple!. Journal of Chemical Education, 100( 8), 2926-2934. doi:10.1021/acs.jchemed.2c01124
    • NLM

      El Seoud OA, Keppeler N, Sandrin DMF, Morselli GR. Active learning in the undergraduate chemistry laboratory: synthesis of biodiesel from an amazon region Oil (Babassu): keep It simple! [Internet]. Journal of Chemical Education. 2023 ; 100( 8): 2926-2934.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.jchemed.2c01124
    • Vancouver

      El Seoud OA, Keppeler N, Sandrin DMF, Morselli GR. Active learning in the undergraduate chemistry laboratory: synthesis of biodiesel from an amazon region Oil (Babassu): keep It simple! [Internet]. Journal of Chemical Education. 2023 ; 100( 8): 2926-2934.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.jchemed.2c01124
  • Source: Chemical Engineering Communications. Unidade: ESALQ

    Subjects: BIODIESEL, DENDÊ, DINÂMICA DOS FLUÍDOS, ÓLEOS VEGETAIS COMO COMBUSTÍVEIS, PINHÃO MANSO, ULTRASSOM

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      ARCE SAAVEDRA, Thony et al. Optimized conventional and ultrasound-assisted ethyl transesterification of jatropha (Jatropha curcas) and palm (Elaeis guineensis) oil mixtures. Chemical Engineering Communications, v. 209, n. 11, p. 1482-1495, 2022Tradução . . Disponível em: https://doi.org/10.1080/00986445.2021.1977925. Acesso em: 27 set. 2024.
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      Arce Saavedra, T., Bueno-Borges, L. B., Sangaletti-Gerhard, N., Alencar, S. M. de, & Baptista, M. A. B. R. -d’A. de. (2022). Optimized conventional and ultrasound-assisted ethyl transesterification of jatropha (Jatropha curcas) and palm (Elaeis guineensis) oil mixtures. Chemical Engineering Communications, 209( 11), 1482-1495. doi:10.1080/00986445.2021.1977925
    • NLM

      Arce Saavedra T, Bueno-Borges LB, Sangaletti-Gerhard N, Alencar SM de, Baptista MABR-d’A de. Optimized conventional and ultrasound-assisted ethyl transesterification of jatropha (Jatropha curcas) and palm (Elaeis guineensis) oil mixtures [Internet]. Chemical Engineering Communications. 2022 ; 209( 11): 1482-1495.[citado 2024 set. 27 ] Available from: https://doi.org/10.1080/00986445.2021.1977925
    • Vancouver

      Arce Saavedra T, Bueno-Borges LB, Sangaletti-Gerhard N, Alencar SM de, Baptista MABR-d’A de. Optimized conventional and ultrasound-assisted ethyl transesterification of jatropha (Jatropha curcas) and palm (Elaeis guineensis) oil mixtures [Internet]. Chemical Engineering Communications. 2022 ; 209( 11): 1482-1495.[citado 2024 set. 27 ] Available from: https://doi.org/10.1080/00986445.2021.1977925
  • Source: Energy & fuels. Unidade: EEL

    Subjects: LIPÍDEOS, CATALISADORES, MATERIAIS COMPÓSITOS, BIODIESEL, COMPOSTOS ORGÂNICOS, SÓDIO

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      CARVALHO, Ana Karine Furtado de et al. Use and reusability of Na/Nb2O5 catalyst in the ethanolysis of different feedstocks for biofuel production: Confirmation of heterogeneity of the catalyst. Energy & fuels, v. 34, p. 7105-7111, 2020Tradução . . Disponível em: https://doi.org/10.1021/acs.energyfuels.0c00246. Acesso em: 27 set. 2024.
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      Carvalho, A. K. F. de, Bento, H. B. S., LIMA, R. O. S. E. M. A. R., & Castro, H. F. de. (2020). Use and reusability of Na/Nb2O5 catalyst in the ethanolysis of different feedstocks for biofuel production: Confirmation of heterogeneity of the catalyst. Energy & fuels, 34, 7105-7111. doi:10.1021/acs.energyfuels.0c00246
    • NLM

      Carvalho AKF de, Bento HBS, LIMA ROSEMAR, Castro HF de. Use and reusability of Na/Nb2O5 catalyst in the ethanolysis of different feedstocks for biofuel production: Confirmation of heterogeneity of the catalyst [Internet]. Energy & fuels. 2020 ; 34 7105-7111.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.0c00246
    • Vancouver

      Carvalho AKF de, Bento HBS, LIMA ROSEMAR, Castro HF de. Use and reusability of Na/Nb2O5 catalyst in the ethanolysis of different feedstocks for biofuel production: Confirmation of heterogeneity of the catalyst [Internet]. Energy & fuels. 2020 ; 34 7105-7111.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.0c00246
  • Source: Renewable and Sustainable Energy Reviews. Unidade: IEE

    Subjects: BIODIESEL, BIODIESEL

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      OLIVEIRA, Fernando Carlos de et al. The Brazilian social fuel stamp program: Few strikes, many bloopers and stumbles. Renewable and Sustainable Energy Reviews, p. 121-128, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.rser.2018.12.011. Acesso em: 27 set. 2024.
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      Oliveira, F. C. de, Lopes, T. S. de A., Barros, V. P. de, & Bermann, C. (2019). The Brazilian social fuel stamp program: Few strikes, many bloopers and stumbles. Renewable and Sustainable Energy Reviews, 121-128. doi:10.1016/j.rser.2018.12.011
    • NLM

      Oliveira FC de, Lopes TS de A, Barros VP de, Bermann C. The Brazilian social fuel stamp program: Few strikes, many bloopers and stumbles [Internet]. Renewable and Sustainable Energy Reviews. 2019 ; 121-128.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.rser.2018.12.011
    • Vancouver

      Oliveira FC de, Lopes TS de A, Barros VP de, Bermann C. The Brazilian social fuel stamp program: Few strikes, many bloopers and stumbles [Internet]. Renewable and Sustainable Energy Reviews. 2019 ; 121-128.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.rser.2018.12.011
  • Source: Journal of Chemical & Engineering Data. Unidade: EP

    Assunto: BIODIESEL

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      BESSA, Larissa Castelo Branco Almeida et al. Influence of additives (isoamyl laurate or isoamyl nonanoate) in the solid–liquid equilibrium of fatty acid ethyl esters. Journal of Chemical & Engineering Data, v. 64, n. 5, p. 2062–2074, 2019Tradução . . Disponível em: https://doi.org/10.1021/acs.jced.8b01019. Acesso em: 27 set. 2024.
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      Bessa, L. C. B. A., Robustillo Fuentes, M. D., Silva, E. C. da, Tadini, C. C., Meirelles, A. J. de A., & Pessôa Filho, P. de A. (2019). Influence of additives (isoamyl laurate or isoamyl nonanoate) in the solid–liquid equilibrium of fatty acid ethyl esters. Journal of Chemical & Engineering Data, 64( 5), 2062–2074. doi:10.1021/acs.jced.8b01019
    • NLM

      Bessa LCBA, Robustillo Fuentes MD, Silva EC da, Tadini CC, Meirelles AJ de A, Pessôa Filho P de A. Influence of additives (isoamyl laurate or isoamyl nonanoate) in the solid–liquid equilibrium of fatty acid ethyl esters [Internet]. Journal of Chemical & Engineering Data. 2019 ; 64( 5): 2062–2074.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.jced.8b01019
    • Vancouver

      Bessa LCBA, Robustillo Fuentes MD, Silva EC da, Tadini CC, Meirelles AJ de A, Pessôa Filho P de A. Influence of additives (isoamyl laurate or isoamyl nonanoate) in the solid–liquid equilibrium of fatty acid ethyl esters [Internet]. Journal of Chemical & Engineering Data. 2019 ; 64( 5): 2062–2074.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.jced.8b01019
  • Source: Process safety and environmental protection. Unidade: EEL

    Subjects: CANA-DE-AÇÚCAR, BIODIESEL, LIPASE

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      BENTO, Heitor Buzetti Simões et al. Microbial biodiesel production: From sucrose-based carbon sources to alkyl esters via enzymatic transesterification. Process safety and environmental protection, p. 349-356, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.psep.2018.11.010. Acesso em: 27 set. 2024.
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      Bento, H. B. S., Carvalho, A. K. F., Reis, C. E. R., & Castro, H. F. de. (2019). Microbial biodiesel production: From sucrose-based carbon sources to alkyl esters via enzymatic transesterification. Process safety and environmental protection, 349-356. doi:10.1016/j.psep.2018.11.010
    • NLM

      Bento HBS, Carvalho AKF, Reis CER, Castro HF de. Microbial biodiesel production: From sucrose-based carbon sources to alkyl esters via enzymatic transesterification [Internet]. Process safety and environmental protection. 2019 ;349-356.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.psep.2018.11.010
    • Vancouver

      Bento HBS, Carvalho AKF, Reis CER, Castro HF de. Microbial biodiesel production: From sucrose-based carbon sources to alkyl esters via enzymatic transesterification [Internet]. Process safety and environmental protection. 2019 ;349-356.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.psep.2018.11.010
  • Source: Chemical Engineering Communications. Unidade: EEL

    Subjects: REDES NEURAIS, BIODIESEL, NOZES

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      CASTILLO, Pedro Felipe Arce e GUIMARÃES, Daniela Helena Pelegrine e AGUIRRE, Lucas R. Experimental Data and Prediction of the Physical and Chemical Properties of Biodiesel. Chemical Engineering Communications, v. 206, n. 10, p. 1273-1285, 2019Tradução . . Disponível em: https://doi.org/10.1080/00986445.2018.1555533. Acesso em: 27 set. 2024.
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      Castillo, P. F. A., Guimarães, D. H. P., & Aguirre, L. R. (2019). Experimental Data and Prediction of the Physical and Chemical Properties of Biodiesel. Chemical Engineering Communications, 206( 10), 1273-1285. doi:10.1080/00986445.2018.1555533
    • NLM

      Castillo PFA, Guimarães DHP, Aguirre LR. Experimental Data and Prediction of the Physical and Chemical Properties of Biodiesel. [Internet]. Chemical Engineering Communications. 2019 ;206( 10): 1273-1285.[citado 2024 set. 27 ] Available from: https://doi.org/10.1080/00986445.2018.1555533
    • Vancouver

      Castillo PFA, Guimarães DHP, Aguirre LR. Experimental Data and Prediction of the Physical and Chemical Properties of Biodiesel. [Internet]. Chemical Engineering Communications. 2019 ;206( 10): 1273-1285.[citado 2024 set. 27 ] Available from: https://doi.org/10.1080/00986445.2018.1555533
  • Source: Energy Fuels. Unidades: EEL, ESALQ

    Subjects: BIODIESEL, COMPOSTOS ORGÂNICOS, LIPÍDEOS, MODELOS PARA PROCESSOS ESTOCÁSTICOS, TECNOLOGIA DE ÓLEOS, GORDURAS E GRAXAS

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      SIQUEIRA, Adriano Francisco et al. Assessing Waste Cooking Oils for the Production of Quality Biodiesel Using an Electronic Nose and a Stochastic Model. Energy Fuels, v. 33, n. 4, p. 3321-3326, 2019Tradução . . Disponível em: https://doi.org/10.1021/acs.energyfuels.8b04230. Acesso em: 27 set. 2024.
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      Siqueira, A. F., Vidigal, I. G., Melo, M. P. de, Giordani, D. S., Batista, P. S., & Ferreira, A. L. G. (2019). Assessing Waste Cooking Oils for the Production of Quality Biodiesel Using an Electronic Nose and a Stochastic Model. Energy Fuels, 33( 4), 3321-3326. doi:10.1021/acs.energyfuels.8b04230
    • NLM

      Siqueira AF, Vidigal IG, Melo MP de, Giordani DS, Batista PS, Ferreira ALG. Assessing Waste Cooking Oils for the Production of Quality Biodiesel Using an Electronic Nose and a Stochastic Model [Internet]. Energy Fuels. 2019 ;33( 4): 3321-3326.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.8b04230
    • Vancouver

      Siqueira AF, Vidigal IG, Melo MP de, Giordani DS, Batista PS, Ferreira ALG. Assessing Waste Cooking Oils for the Production of Quality Biodiesel Using an Electronic Nose and a Stochastic Model [Internet]. Energy Fuels. 2019 ;33( 4): 3321-3326.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.8b04230
  • Source: Current biotechnology. Unidade: IQSC

    Subjects: BIODIESEL, CATÁLISE, BABAÇU

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      FERREIRA, Adriana Martini et al. Amazon Oils from Andiroba (Carapa sp.) and Babassu (Orbignya sp.) for Preparation Biodiesel by Enzymatic Catalysis. Current biotechnology, v. 7, p. 428-437, 2018Tradução . . Disponível em: https://doi.org/10.2174/2211550108666190125115515. Acesso em: 27 set. 2024.
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      Ferreira, A. M., Sena, I. da S., Magalhães, K. F., Oliveira, S. L., Ferreira, I. M., & Porto, A. L. M. (2018). Amazon Oils from Andiroba (Carapa sp.) and Babassu (Orbignya sp.) for Preparation Biodiesel by Enzymatic Catalysis. Current biotechnology, 7, 428-437. doi:10.2174/2211550108666190125115515
    • NLM

      Ferreira AM, Sena I da S, Magalhães KF, Oliveira SL, Ferreira IM, Porto ALM. Amazon Oils from Andiroba (Carapa sp.) and Babassu (Orbignya sp.) for Preparation Biodiesel by Enzymatic Catalysis [Internet]. Current biotechnology. 2018 ;7 428-437.[citado 2024 set. 27 ] Available from: https://doi.org/10.2174/2211550108666190125115515
    • Vancouver

      Ferreira AM, Sena I da S, Magalhães KF, Oliveira SL, Ferreira IM, Porto ALM. Amazon Oils from Andiroba (Carapa sp.) and Babassu (Orbignya sp.) for Preparation Biodiesel by Enzymatic Catalysis [Internet]. Current biotechnology. 2018 ;7 428-437.[citado 2024 set. 27 ] Available from: https://doi.org/10.2174/2211550108666190125115515
  • Source: Proceedings. Conference titles: AIChE Annual Meeting. Unidade: EP

    Subjects: CATALISADORES, BIODIESEL

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      HEWER, Thiago Lewis Reis et al. Hydrodeoxygenation of guaiacol over Ni and Mo nanoparticles supported on SBA-15 and ?-Al2O3. 2018, Anais.. New York: AIChE, 2018. Disponível em: https://www.aiche.org/conferences/aiche-annual-meeting/2018/proceeding/paper/695d-hydrodeoxygenation-guaiacol-over-ni-and-mo-nanoparticles-supported-on-sba-15-and-al2o3. Acesso em: 27 set. 2024.
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      Hewer, T. L. R., Lima, R. W. dos S., Giudici, R., Schmal, M., & Alves, R. M. de B. (2018). Hydrodeoxygenation of guaiacol over Ni and Mo nanoparticles supported on SBA-15 and ?-Al2O3. In Proceedings. New York: AIChE. Recuperado de https://www.aiche.org/conferences/aiche-annual-meeting/2018/proceeding/paper/695d-hydrodeoxygenation-guaiacol-over-ni-and-mo-nanoparticles-supported-on-sba-15-and-al2o3
    • NLM

      Hewer TLR, Lima RW dos S, Giudici R, Schmal M, Alves RM de B. Hydrodeoxygenation of guaiacol over Ni and Mo nanoparticles supported on SBA-15 and ?-Al2O3 [Internet]. Proceedings. 2018 ;[citado 2024 set. 27 ] Available from: https://www.aiche.org/conferences/aiche-annual-meeting/2018/proceeding/paper/695d-hydrodeoxygenation-guaiacol-over-ni-and-mo-nanoparticles-supported-on-sba-15-and-al2o3
    • Vancouver

      Hewer TLR, Lima RW dos S, Giudici R, Schmal M, Alves RM de B. Hydrodeoxygenation of guaiacol over Ni and Mo nanoparticles supported on SBA-15 and ?-Al2O3 [Internet]. Proceedings. 2018 ;[citado 2024 set. 27 ] Available from: https://www.aiche.org/conferences/aiche-annual-meeting/2018/proceeding/paper/695d-hydrodeoxygenation-guaiacol-over-ni-and-mo-nanoparticles-supported-on-sba-15-and-al2o3
  • 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: 27 set. 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 set. 27 ] 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 set. 27 ] Available from: https://doi.org/10.1021/acs.iecr.6b03811
  • Source: Biotechnology Progress. Unidade: ICB

    Subjects: MICROBIOLOGIA, BIODIESEL, BIOPOLÍMEROS, FERMENTAÇÃO, NITROGÊNIO

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      PAULA, Fabrício C. de et al. Poly (3-hydroxybutyrate-co-3-hydroxyvalerate) production from biodiesel by-product and propionic acid by mutante strains of Pandoraea sp. Biotechnology Progress, v. 33, n. 4, p. 1077-1084, 2017Tradução . . Disponível em: https://doi.org/10.1002/btpr.2481. Acesso em: 27 set. 2024.
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      Paula, F. C. de, Paula, C. B. C. de, Gomez, J. G. C., Steinbüchel, A., & Contiero, J. (2017). Poly (3-hydroxybutyrate-co-3-hydroxyvalerate) production from biodiesel by-product and propionic acid by mutante strains of Pandoraea sp. Biotechnology Progress, 33( 4), 1077-1084. doi:10.1002/btpr.2481
    • NLM

      Paula FC de, Paula CBC de, Gomez JGC, Steinbüchel A, Contiero J. Poly (3-hydroxybutyrate-co-3-hydroxyvalerate) production from biodiesel by-product and propionic acid by mutante strains of Pandoraea sp. [Internet]. Biotechnology Progress. 2017 ; 33( 4): 1077-1084.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/btpr.2481
    • Vancouver

      Paula FC de, Paula CBC de, Gomez JGC, Steinbüchel A, Contiero J. Poly (3-hydroxybutyrate-co-3-hydroxyvalerate) production from biodiesel by-product and propionic acid by mutante strains of Pandoraea sp. [Internet]. Biotechnology Progress. 2017 ; 33( 4): 1077-1084.[citado 2024 set. 27 ] Available from: https://doi.org/10.1002/btpr.2481
  • Source: PLOS ONE. Unidades: ESALQ, CENA

    Subjects: SOJA, BIODIESEL, GASES, EFEITO ESTUFA

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      CERRI, Carlos Eduardo Pellegrino et al. Assessing the greenhouse gas emissions of Brazilian soybean biodiesel production. PLOS ONE, v. 12, n. 5, 2017Tradução . . Disponível em: https://doi.org/10.1371/journal.pone.0176948. Acesso em: 27 set. 2024.
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      Cerri, C. E. P., You, X., Cherubin, M. R., Moreira, C. S., Raucci, G. S., Castigioni, B. de A., et al. (2017). Assessing the greenhouse gas emissions of Brazilian soybean biodiesel production. PLOS ONE, 12( 5). doi:10.1371/journal.pone.0176948
    • NLM

      Cerri CEP, You X, Cherubin MR, Moreira CS, Raucci GS, Castigioni B de A, Alves PA, Cerri DGP, Mello FF de C, Cerri CC. Assessing the greenhouse gas emissions of Brazilian soybean biodiesel production [Internet]. PLOS ONE. 2017 ; 12( 5):[citado 2024 set. 27 ] Available from: https://doi.org/10.1371/journal.pone.0176948
    • Vancouver

      Cerri CEP, You X, Cherubin MR, Moreira CS, Raucci GS, Castigioni B de A, Alves PA, Cerri DGP, Mello FF de C, Cerri CC. Assessing the greenhouse gas emissions of Brazilian soybean biodiesel production [Internet]. PLOS ONE. 2017 ; 12( 5):[citado 2024 set. 27 ] Available from: https://doi.org/10.1371/journal.pone.0176948
  • Source: Journal of the American Oil Chemists' Society. Unidade: ESALQ

    Subjects: ANTIOXIDANTES, BIODIESEL, ESTERIFICAÇÃO, ETANOL, ÓLEO DE SOJA

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      BUENO-BORGES, Larissa Braga et al. A highly stable soybean oil-rich miscella obtained by ethanolic extraction as a promising biodiesel feedstock. Journal of the American Oil Chemists' Society, v. 94, n. 8, p. 1101-1109, 2017Tradução . . Disponível em: https://doi.org/10.1007/s11746-017-3012-0. Acesso em: 27 set. 2024.
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      Bueno-Borges, L. B., Bueno-Borges, L. B., Camargo, A. C. de, Sangaletti-Gerhard, N., Santos, G. C. P. dos, Alencar, S. M. de, et al. (2017). A highly stable soybean oil-rich miscella obtained by ethanolic extraction as a promising biodiesel feedstock. Journal of the American Oil Chemists' Society, 94( 8), 1101-1109. doi:10.1007/s11746-017-3012-0
    • NLM

      Bueno-Borges LB, Bueno-Borges LB, Camargo AC de, Sangaletti-Gerhard N, Santos GCP dos, Alencar SM de, Shahidi F, Regitano-d’Arce MAB. A highly stable soybean oil-rich miscella obtained by ethanolic extraction as a promising biodiesel feedstock [Internet]. Journal of the American Oil Chemists' Society. 2017 ; 94( 8): 1101-1109.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s11746-017-3012-0
    • Vancouver

      Bueno-Borges LB, Bueno-Borges LB, Camargo AC de, Sangaletti-Gerhard N, Santos GCP dos, Alencar SM de, Shahidi F, Regitano-d’Arce MAB. A highly stable soybean oil-rich miscella obtained by ethanolic extraction as a promising biodiesel feedstock [Internet]. Journal of the American Oil Chemists' Society. 2017 ; 94( 8): 1101-1109.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s11746-017-3012-0
  • Source: Microchemical Journal. Unidade: CENA

    Subjects: IMAGEM DIGITAL, COLORIMETRIA, BIODIESEL

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      SOARES, Samara e LIMA, Manoel J. A e ROCHA, Fábio Rodrigo Piovezani. A spot test for iodine value determination in biodiesel based on digital images exploiting a smartphone. Microchemical Journal, v. 133, p. 195–199, 2017Tradução . . Disponível em: https://doi.org/10.1016/j.microc.2017.03.029. Acesso em: 27 set. 2024.
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      Soares, S., Lima, M. J. A., & Rocha, F. R. P. (2017). A spot test for iodine value determination in biodiesel based on digital images exploiting a smartphone. Microchemical Journal, 133, 195–199. doi:10.1016/j.microc.2017.03.029
    • NLM

      Soares S, Lima MJA, Rocha FRP. A spot test for iodine value determination in biodiesel based on digital images exploiting a smartphone [Internet]. Microchemical Journal. 2017 ; 133 195–199.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.microc.2017.03.029
    • Vancouver

      Soares S, Lima MJA, Rocha FRP. A spot test for iodine value determination in biodiesel based on digital images exploiting a smartphone [Internet]. Microchemical Journal. 2017 ; 133 195–199.[citado 2024 set. 27 ] Available from: https://doi.org/10.1016/j.microc.2017.03.029
  • Source: Catalysis Letters. Unidade: IQSC

    Subjects: BIOPOLÍMEROS, BIODIESEL

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      FERREIRA , Irlon Maciel et al. Ethylic biodiesel production using lipase immobilized in silk fibroin-alginate spheres by encapsulation. Catalysis Letters, v. 147, n. 1, p. 269-280, 2017Tradução . . Disponível em: https://doi.org/10.1007/s10562-016-1917-0. Acesso em: 27 set. 2024.
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      Ferreira , I. M., Ganzeli, L. de S., Rosset, I. G., Yoshioka, S. A., & Porto, A. L. M. (2017). Ethylic biodiesel production using lipase immobilized in silk fibroin-alginate spheres by encapsulation. Catalysis Letters, 147( 1), 269-280. doi:10.1007/s10562-016-1917-0
    • NLM

      Ferreira IM, Ganzeli L de S, Rosset IG, Yoshioka SA, Porto ALM. Ethylic biodiesel production using lipase immobilized in silk fibroin-alginate spheres by encapsulation [Internet]. Catalysis Letters. 2017 ; 147( 1): 269-280.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s10562-016-1917-0
    • Vancouver

      Ferreira IM, Ganzeli L de S, Rosset IG, Yoshioka SA, Porto ALM. Ethylic biodiesel production using lipase immobilized in silk fibroin-alginate spheres by encapsulation [Internet]. Catalysis Letters. 2017 ; 147( 1): 269-280.[citado 2024 set. 27 ] Available from: https://doi.org/10.1007/s10562-016-1917-0
  • Source: Energy & Fuels. Unidades: EEL, FCFRP

    Subjects: CATÁLISE, ENZIMAS, LIPASE, BIODIESEL

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      COSTA-SILVA, T. A. et al. Enzymatic synthesis of biodiesel using immobilized lipase on a non-commercial support. Energy & Fuels, v. 30, n. 6, p. 4820-4824, 2016Tradução . . Disponível em: https://doi.org/10.1021/acs.energyfuels.6b00208. Acesso em: 27 set. 2024.
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      Costa-Silva, T. A., Carvalho, A. K. F. de, Souza, C. R. F., Castro, H. F. de, Said, S., & Oliveira, W. P. de. (2016). Enzymatic synthesis of biodiesel using immobilized lipase on a non-commercial support. Energy & Fuels, 30( 6), 4820-4824. doi:10.1021/acs.energyfuels.6b00208
    • NLM

      Costa-Silva TA, Carvalho AKF de, Souza CRF, Castro HF de, Said S, Oliveira WP de. Enzymatic synthesis of biodiesel using immobilized lipase on a non-commercial support [Internet]. Energy & Fuels. 2016 ; 30( 6): 4820-4824.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.6b00208
    • Vancouver

      Costa-Silva TA, Carvalho AKF de, Souza CRF, Castro HF de, Said S, Oliveira WP de. Enzymatic synthesis of biodiesel using immobilized lipase on a non-commercial support [Internet]. Energy & Fuels. 2016 ; 30( 6): 4820-4824.[citado 2024 set. 27 ] Available from: https://doi.org/10.1021/acs.energyfuels.6b00208

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