Filtros : "Bio-based polymers" Limpar

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  • Source: Polymers. Unidade: IQSC

    Subjects: BIOMASSA, IMPRESSÃO 3-D

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    • ABNT

      ALARCON, Rafael Turra et al. Thiol-Ene photopolymerization and 3D printing of non-modified castor oil containing bio-based cellulosic fillers. Polymers, v. 17, p. 587, 2025Tradução . . Disponível em: https://doi.org/10.3390/polym17050587. Acesso em: 19 fev. 2026.
    • APA

      Alarcon, R. T., Bergoglio, M., Cavalheiro, E. T. G., & Sangermano, M. (2025). Thiol-Ene photopolymerization and 3D printing of non-modified castor oil containing bio-based cellulosic fillers. Polymers, 17, 587. doi:10.3390/polym17050587
    • NLM

      Alarcon RT, Bergoglio M, Cavalheiro ETG, Sangermano M. Thiol-Ene photopolymerization and 3D printing of non-modified castor oil containing bio-based cellulosic fillers [Internet]. Polymers. 2025 ;17 587.[citado 2026 fev. 19 ] Available from: https://doi.org/10.3390/polym17050587
    • Vancouver

      Alarcon RT, Bergoglio M, Cavalheiro ETG, Sangermano M. Thiol-Ene photopolymerization and 3D printing of non-modified castor oil containing bio-based cellulosic fillers [Internet]. Polymers. 2025 ;17 587.[citado 2026 fev. 19 ] Available from: https://doi.org/10.3390/polym17050587
  • Source: Biomass Conversion and Biorefinery. Unidade: IQSC

    Subjects: POLÍMEROS (MATERIAIS), BIOMASSA

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    • ABNT

      PAULA, Roberta Lopes de e FROLLINI, Elisabete. Progress in the synthesis of polyricinoleic acid via acid catalysis from the primary component of castor oil. Biomass Conversion and Biorefinery, v. 15, p. 4647-4656, 2025Tradução . . Disponível em: https://doi.org/10.1007/s13399-024-05505-5. Acesso em: 19 fev. 2026.
    • APA

      Paula, R. L. de, & Frollini, E. (2025). Progress in the synthesis of polyricinoleic acid via acid catalysis from the primary component of castor oil. Biomass Conversion and Biorefinery, 15, 4647-4656. doi:10.1007/s13399-024-05505-5
    • NLM

      Paula RL de, Frollini E. Progress in the synthesis of polyricinoleic acid via acid catalysis from the primary component of castor oil [Internet]. Biomass Conversion and Biorefinery. 2025 ; 15 4647-4656.[citado 2026 fev. 19 ] Available from: https://doi.org/10.1007/s13399-024-05505-5
    • Vancouver

      Paula RL de, Frollini E. Progress in the synthesis of polyricinoleic acid via acid catalysis from the primary component of castor oil [Internet]. Biomass Conversion and Biorefinery. 2025 ; 15 4647-4656.[citado 2026 fev. 19 ] Available from: https://doi.org/10.1007/s13399-024-05505-5
  • Source: Journal of Polymers and the Environment. Unidade: IQSC

    Subjects: MARACUJÁ, IMPRESSÃO 3-D

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    • ABNT

      SANTOS, Gabriel Iago dos et al. Passion Fruit Seed Oil: A Sustainable Feedstock for Additive Manufacturing of Renewable Polymers. Journal of Polymers and the Environment, v. 32, p. 4748-4762, 2024Tradução . . Disponível em: https://doi.org/10.1007/s10924-024-03282-w. Acesso em: 19 fev. 2026.
    • APA

      Santos, G. I. dos, Gaglieri, C., Alarcon, R. T., Magri, R., Hartlieb, M., & Bannach, G. (2024). Passion Fruit Seed Oil: A Sustainable Feedstock for Additive Manufacturing of Renewable Polymers. Journal of Polymers and the Environment, 32, 4748-4762. doi:10.1007/s10924-024-03282-w
    • NLM

      Santos GI dos, Gaglieri C, Alarcon RT, Magri R, Hartlieb M, Bannach G. Passion Fruit Seed Oil: A Sustainable Feedstock for Additive Manufacturing of Renewable Polymers [Internet]. Journal of Polymers and the Environment. 2024 ; 32 4748-4762.[citado 2026 fev. 19 ] Available from: https://doi.org/10.1007/s10924-024-03282-w
    • Vancouver

      Santos GI dos, Gaglieri C, Alarcon RT, Magri R, Hartlieb M, Bannach G. Passion Fruit Seed Oil: A Sustainable Feedstock for Additive Manufacturing of Renewable Polymers [Internet]. Journal of Polymers and the Environment. 2024 ; 32 4748-4762.[citado 2026 fev. 19 ] Available from: https://doi.org/10.1007/s10924-024-03282-w

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