Filtros : "Environmental Technology" "Financiado pelo CNPq" Limpar

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  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: BIOENERGIA, HIDROGÊNIO, LACTATOS, VINHAÇA, INDÚSTRIA AGRÍCOLA, ENGENHARIA HIDRÁULICA

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    • ABNT

      RIBEIRO, Alexandre Rodrigues et al. Optimization of the bio-H2 and lactate production from vinasse and molasses: an experimental approach for the bioenergy development in Brazil. Environmental Technology, p. 1-19, 2025Tradução . . Disponível em: http://dx.doi.org/10.1080/09593330.2025.2532194. Acesso em: 09 nov. 2025.
    • APA

      Ribeiro, A. R., Freitas Junior, J. A. de, Devens, K. U., Sakamoto, I. K., Varesche, M. B. A., & Silva, E. L. (2025). Optimization of the bio-H2 and lactate production from vinasse and molasses: an experimental approach for the bioenergy development in Brazil. Environmental Technology, 1-19. doi:10.1080/09593330.2025.2532194
    • NLM

      Ribeiro AR, Freitas Junior JA de, Devens KU, Sakamoto IK, Varesche MBA, Silva EL. Optimization of the bio-H2 and lactate production from vinasse and molasses: an experimental approach for the bioenergy development in Brazil [Internet]. Environmental Technology. 2025 ; 1-19.[citado 2025 nov. 09 ] Available from: http://dx.doi.org/10.1080/09593330.2025.2532194
    • Vancouver

      Ribeiro AR, Freitas Junior JA de, Devens KU, Sakamoto IK, Varesche MBA, Silva EL. Optimization of the bio-H2 and lactate production from vinasse and molasses: an experimental approach for the bioenergy development in Brazil [Internet]. Environmental Technology. 2025 ; 1-19.[citado 2025 nov. 09 ] Available from: http://dx.doi.org/10.1080/09593330.2025.2532194
  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: NANOPARTÍCULAS, HIDROGÊNIO, REATORES ANAERÓBIOS, ENGENHARIA HIDRÁULICA

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    • ABNT

      MOURA, Alana Gandra Lima de et al. Application of nanoparticles to increase biological hydrogen production: the difference in metabolic pathways in batch and continuous reactors. Environmental Technology, p. 1-9, 2023Tradução . . Disponível em: https://doi.org/10.1080/09593330.2023.2208274. Acesso em: 09 nov. 2025.
    • APA

      Moura, A. G. L. de, Rabelo, C. A. B. da S., Silva, E. L., & Varesche, M. B. A. (2023). Application of nanoparticles to increase biological hydrogen production: the difference in metabolic pathways in batch and continuous reactors. Environmental Technology, 1-9. doi:10.1080/09593330.2023.2208274
    • NLM

      Moura AGL de, Rabelo CAB da S, Silva EL, Varesche MBA. Application of nanoparticles to increase biological hydrogen production: the difference in metabolic pathways in batch and continuous reactors [Internet]. Environmental Technology. 2023 ; 1-9.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2023.2208274
    • Vancouver

      Moura AGL de, Rabelo CAB da S, Silva EL, Varesche MBA. Application of nanoparticles to increase biological hydrogen production: the difference in metabolic pathways in batch and continuous reactors [Internet]. Environmental Technology. 2023 ; 1-9.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2023.2208274
  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: BIOFILMES, NITRIFICAÇÃO, DESNITRIFICAÇÃO, ENGENHARIA HIDRÁULICA

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    • ABNT

      SILVA, Bruno Garcia et al. Unique biofilm structure and mass transfer mechanisms in the foam aerated biofilm reactor (FABR). Environmental Technology, p. 1-15, 2022Tradução . . Disponível em: https://doi.org/10.1080/09593330.2022.2058422. Acesso em: 09 nov. 2025.
    • APA

      Silva, B. G., Perez Calleja, P., Foresti, E., & Nerenberg, R. (2022). Unique biofilm structure and mass transfer mechanisms in the foam aerated biofilm reactor (FABR). Environmental Technology, 1-15. doi:10.1080/09593330.2022.2058422
    • NLM

      Silva BG, Perez Calleja P, Foresti E, Nerenberg R. Unique biofilm structure and mass transfer mechanisms in the foam aerated biofilm reactor (FABR) [Internet]. Environmental Technology. 2022 ; 1-15.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2022.2058422
    • Vancouver

      Silva BG, Perez Calleja P, Foresti E, Nerenberg R. Unique biofilm structure and mass transfer mechanisms in the foam aerated biofilm reactor (FABR) [Internet]. Environmental Technology. 2022 ; 1-15.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2022.2058422
  • Fonte: Environmental Technology. Unidades: FZEA, EESC

    Assuntos: TRANSFERÊNCIA DE CALOR, REATORES ANAERÓBIOS, DRENAGEM EM MINAS

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    • ABNT

      COUTO, P. T. et al. Using hypothesis testing on the mass-transfer effect with sulfate removal as an application. Environmental Technology, 2020Tradução . . Disponível em: https://doi.org/10.1080/09593330.2020.1714745. Acesso em: 09 nov. 2025.
    • APA

      Couto, P. T., Rodriguez, R. P., Ribeiro, R., & Valdiviesso, G. A. (2020). Using hypothesis testing on the mass-transfer effect with sulfate removal as an application. Environmental Technology. doi:10.1080/09593330.2020.1714745
    • NLM

      Couto PT, Rodriguez RP, Ribeiro R, Valdiviesso GA. Using hypothesis testing on the mass-transfer effect with sulfate removal as an application [Internet]. Environmental Technology. 2020 ;[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2020.1714745
    • Vancouver

      Couto PT, Rodriguez RP, Ribeiro R, Valdiviesso GA. Using hypothesis testing on the mass-transfer effect with sulfate removal as an application [Internet]. Environmental Technology. 2020 ;[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2020.1714745
  • Fonte: Environmental Technology. Unidades: EEL, EP

    Assuntos: ESTRÓGENOS, OXIDAÇÃO

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    • ABNT

      RACKOV, Celyna Karitas Oliveira da Silva et al. A comparative study of persulfate activation by iron-modified diatomite and traditional processes for the treatment of 17α-ethinylestradiol in water. Environmental Technology, v. 1, p. 1-13, 2020Tradução . . Disponível em: https://doi.org/10.1080/09593330.2020.1732470. Acesso em: 09 nov. 2025.
    • APA

      Rackov, C. K. O. da S., Silva, S. S. O., Souza, A. R., Aguiar, L. G. de, Silva, D. J., Vianna, M. M. G. R., et al. (2020). A comparative study of persulfate activation by iron-modified diatomite and traditional processes for the treatment of 17α-ethinylestradiol in water. Environmental Technology, 1, 1-13. doi:10.1080/09593330.2020.1732470
    • NLM

      Rackov CKO da S, Silva SSO, Souza AR, Aguiar LG de, Silva DJ, Vianna MMGR, Nascimento CAO do, Chiavone Filho O. A comparative study of persulfate activation by iron-modified diatomite and traditional processes for the treatment of 17α-ethinylestradiol in water [Internet]. Environmental Technology. 2020 ; 1 1-13.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2020.1732470
    • Vancouver

      Rackov CKO da S, Silva SSO, Souza AR, Aguiar LG de, Silva DJ, Vianna MMGR, Nascimento CAO do, Chiavone Filho O. A comparative study of persulfate activation by iron-modified diatomite and traditional processes for the treatment of 17α-ethinylestradiol in water [Internet]. Environmental Technology. 2020 ; 1 1-13.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2020.1732470
  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: FILTROS DE AREIA, ÁGUA POTÁVEL, TRATAMENTO DE ÁGUA

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    • ABNT

      MACIEL, Paulo Marcos Faria e SABOGAL-PAZ, Lyda Patricia. Household slow sand filters with and without water level control: continuous and intermittent flow efficiencies. Environmental Technology, v. 41, n. 8, p. 944-958, 2020Tradução . . Disponível em: https://doi.org/10.1080/09593330.2018.1515988. Acesso em: 09 nov. 2025.
    • APA

      Maciel, P. M. F., & Sabogal-Paz, L. P. (2020). Household slow sand filters with and without water level control: continuous and intermittent flow efficiencies. Environmental Technology, 41( 8), 944-958. doi:10.1080/09593330.2018.1515988
    • NLM

      Maciel PMF, Sabogal-Paz LP. Household slow sand filters with and without water level control: continuous and intermittent flow efficiencies [Internet]. Environmental Technology. 2020 ; 41( 8): 944-958.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2018.1515988
    • Vancouver

      Maciel PMF, Sabogal-Paz LP. Household slow sand filters with and without water level control: continuous and intermittent flow efficiencies [Internet]. Environmental Technology. 2020 ; 41( 8): 944-958.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2018.1515988
  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: ÁGUA POTÁVEL, COAGULAÇÃO, TRATAMENTO DE ÁGUA

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    • ABNT

      FREITAS, Bárbara Luíza Souza e SABOGAL-PAZ, Lyda Patricia. Pretreatment using Opuntia cochenillifera followed by household slow sand filters: technological alternatives for supplying isolated communities. Environmental Technology, v. 41, n. 21, p. 2783–2794, 2020Tradução . . Disponível em: https://doi.org/10.1080/09593330.2019.1582700. Acesso em: 09 nov. 2025.
    • APA

      Freitas, B. L. S., & Sabogal-Paz, L. P. (2020). Pretreatment using Opuntia cochenillifera followed by household slow sand filters: technological alternatives for supplying isolated communities. Environmental Technology, 41( 21), 2783–2794. doi:10.1080/09593330.2019.1582700
    • NLM

      Freitas BLS, Sabogal-Paz LP. Pretreatment using Opuntia cochenillifera followed by household slow sand filters: technological alternatives for supplying isolated communities [Internet]. Environmental Technology. 2020 ; 41( 21): 2783–2794.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2019.1582700
    • Vancouver

      Freitas BLS, Sabogal-Paz LP. Pretreatment using Opuntia cochenillifera followed by household slow sand filters: technological alternatives for supplying isolated communities [Internet]. Environmental Technology. 2020 ; 41( 21): 2783–2794.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2019.1582700
  • Fonte: Environmental Technology. Unidade: EESC

    Assuntos: PROTOZOA, ÁGUA POTÁVEL

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    • ABNT

      ANDREOLI, Fernando Cesar e SABOGAL-PAZ, Lyda Patricia. Coagulation, flocculation, dissolved air flotation and filtration in the removal of Giardia spp. and Cryptosporidium spp. from water supply. Environmental Technology, v. 40, n. 5, p. 654–663, 2019Tradução . . Disponível em: https://doi.org/10.1080/09593330.2017.1400113. Acesso em: 09 nov. 2025.
    • APA

      Andreoli, F. C., & Sabogal-Paz, L. P. (2019). Coagulation, flocculation, dissolved air flotation and filtration in the removal of Giardia spp. and Cryptosporidium spp. from water supply. Environmental Technology, 40( 5), 654–663. doi:10.1080/09593330.2017.1400113
    • NLM

      Andreoli FC, Sabogal-Paz LP. Coagulation, flocculation, dissolved air flotation and filtration in the removal of Giardia spp. and Cryptosporidium spp. from water supply [Internet]. Environmental Technology. 2019 ; 40( 5): 654–663.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2017.1400113
    • Vancouver

      Andreoli FC, Sabogal-Paz LP. Coagulation, flocculation, dissolved air flotation and filtration in the removal of Giardia spp. and Cryptosporidium spp. from water supply [Internet]. Environmental Technology. 2019 ; 40( 5): 654–663.[citado 2025 nov. 09 ] Available from: https://doi.org/10.1080/09593330.2017.1400113

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