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  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BIOGÁS, DIGESTÃO ANAERÓBIA, FIBRAS VEGETAIS, METANO, RESÍDUOS ORGÂNICOS, SISAL, SUSTENTABILIDADE

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      VIEIRA, Fabiane M et al. Transforming Agave sisalana waste into high-yield biogas: an approach to sustainable energy. Biomass and Bioenergy, v. 204, p. 1-11, 2026Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2025.108476. Acesso em: 04 dez. 2025.
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      Vieira, F. M., Paula, M. S. de, Volpi, M. P. C., Herrera Adarme, O. F., Ribas, T., Silva, J. C. G., et al. (2026). Transforming Agave sisalana waste into high-yield biogas: an approach to sustainable energy. Biomass and Bioenergy, 204, 1-11. doi:10.1016/j.biombioe.2025.108476
    • NLM

      Vieira FM, Paula MS de, Volpi MPC, Herrera Adarme OF, Ribas T, Silva JCG, Carazzolle MF, Pereira GAG, Mockaitis G. Transforming Agave sisalana waste into high-yield biogas: an approach to sustainable energy [Internet]. Biomass and Bioenergy. 2026 ; 204 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2025.108476
    • Vancouver

      Vieira FM, Paula MS de, Volpi MPC, Herrera Adarme OF, Ribas T, Silva JCG, Carazzolle MF, Pereira GAG, Mockaitis G. Transforming Agave sisalana waste into high-yield biogas: an approach to sustainable energy [Internet]. Biomass and Bioenergy. 2026 ; 204 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2025.108476
  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BIOGÁS, BIOMASSA, DIGESTÃO ANAERÓBIA, METANO, SISAL

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      PAULA, Maiki S de et al. Unveiling the biogas potential of raw agave leaf juice: exploring a novel biomass source. Biomass and Bioenergy, v. 193, p. 1-8, 2025Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2024.107522. Acesso em: 04 dez. 2025.
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      Paula, M. S. de, Adarme, O. F. H., Volpi, M. P. C., Flores-Rodriguez, C. I., Carazzolle, M. F., Mockaitis, G., & Pereira, G. A. G. (2025). Unveiling the biogas potential of raw agave leaf juice: exploring a novel biomass source. Biomass and Bioenergy, 193, 1-8. doi:10.1016/j.biombioe.2024.107522
    • NLM

      Paula MS de, Adarme OFH, Volpi MPC, Flores-Rodriguez CI, Carazzolle MF, Mockaitis G, Pereira GAG. Unveiling the biogas potential of raw agave leaf juice: exploring a novel biomass source [Internet]. Biomass and Bioenergy. 2025 ; 193 1-8.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2024.107522
    • Vancouver

      Paula MS de, Adarme OFH, Volpi MPC, Flores-Rodriguez CI, Carazzolle MF, Mockaitis G, Pereira GAG. Unveiling the biogas potential of raw agave leaf juice: exploring a novel biomass source [Internet]. Biomass and Bioenergy. 2025 ; 193 1-8.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2024.107522
  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BIOCARVÃO, BIOENERGIA, CANA-DE-AÇÚCAR, CARBONO, EFEITO ESTUFA, ESPECTROSCOPIA DE RAIO X, GASES, GENES, PALHAS

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      GABETTO, Fernanda Palmeira et al. Exploring the potential of sugarcane straw biochar: Insights into N2O emissions and microbial functional genes. Biomass and Bioenergy, v. 182, p. 1-11, 2024Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2024.107070. Acesso em: 04 dez. 2025.
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      Gabetto, F. P., Tenelli, S., Netto-Ferreira, J. B., Gonzaga, L. C., Isidorio, M. A. S., & Carvalho, J. L. N. (2024). Exploring the potential of sugarcane straw biochar: Insights into N2O emissions and microbial functional genes. Biomass and Bioenergy, 182, 1-11. doi:10.1016/j.biombioe.2024.107070
    • NLM

      Gabetto FP, Tenelli S, Netto-Ferreira JB, Gonzaga LC, Isidorio MAS, Carvalho JLN. Exploring the potential of sugarcane straw biochar: Insights into N2O emissions and microbial functional genes [Internet]. Biomass and Bioenergy. 2024 ; 182 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2024.107070
    • Vancouver

      Gabetto FP, Tenelli S, Netto-Ferreira JB, Gonzaga LC, Isidorio MAS, Carvalho JLN. Exploring the potential of sugarcane straw biochar: Insights into N2O emissions and microbial functional genes [Internet]. Biomass and Bioenergy. 2024 ; 182 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2024.107070
  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BIOMASSA, MACAÚBA, MATÉRIA ORGÂNICA DO SOLO, SEQUESTRO DE CARBONO

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      MOREIRA, Sandro Lucio Silva et al. Carbon accumulation in the soil and biomass of macauba palm commercial plantations. Biomass and Bioenergy, v. 190, p. 1-12, 2024Tradução . . Disponível em: https://www.sciencedirect.com/science/article/pii/S0961953424003374. Acesso em: 04 dez. 2025.
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      Moreira, S. L. S., Santos, R. A. F. dos, Paes, É. de C., Bahia, M. L., Cerqueira, A. E. S., Parreira, D. S., et al. (2024). Carbon accumulation in the soil and biomass of macauba palm commercial plantations. Biomass and Bioenergy, 190, 1-12. doi:10.1016/j.biombioe.2024.107384
    • NLM

      Moreira SLS, Santos RAF dos, Paes É de C, Bahia ML, Cerqueira AES, Parreira DS, Imbuzeiro HMA, Fernandes RBA. Carbon accumulation in the soil and biomass of macauba palm commercial plantations [Internet]. Biomass and Bioenergy. 2024 ; 190 1-12.[citado 2025 dez. 04 ] Available from: https://www.sciencedirect.com/science/article/pii/S0961953424003374
    • Vancouver

      Moreira SLS, Santos RAF dos, Paes É de C, Bahia ML, Cerqueira AES, Parreira DS, Imbuzeiro HMA, Fernandes RBA. Carbon accumulation in the soil and biomass of macauba palm commercial plantations [Internet]. Biomass and Bioenergy. 2024 ; 190 1-12.[citado 2025 dez. 04 ] Available from: https://www.sciencedirect.com/science/article/pii/S0961953424003374
  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BAGAÇOS, BIOMASSA, CELULOSE, CERVEJA, INDÚSTRIA DE BEBIDAS, LIGNINA

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      SANCHES, Marcio Augusto Ribeiro et al. Water sorption properties of brewer s spent grain: a study aimed at its stabilization for further conversion into value-added products. Biomass and Bioenergy, v. 170, p. 1-11, 2023Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2023.106718. Acesso em: 04 dez. 2025.
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      Sanches, M. A. R., Augusto, P. E. D., Polachini, T. C., & Telis-Romero, J. (2023). Water sorption properties of brewer s spent grain: a study aimed at its stabilization for further conversion into value-added products. Biomass and Bioenergy, 170, 1-11. doi:10.1016/j.biombioe.2023.106718
    • NLM

      Sanches MAR, Augusto PED, Polachini TC, Telis-Romero J. Water sorption properties of brewer s spent grain: a study aimed at its stabilization for further conversion into value-added products [Internet]. Biomass and Bioenergy. 2023 ; 170 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2023.106718
    • Vancouver

      Sanches MAR, Augusto PED, Polachini TC, Telis-Romero J. Water sorption properties of brewer s spent grain: a study aimed at its stabilization for further conversion into value-added products [Internet]. Biomass and Bioenergy. 2023 ; 170 1-11.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2023.106718
  • Source: Biomass and Bioenergy. Unidades: ESALQ, CENA

    Subjects: ADUBAÇÃO, CANA-DE-AÇÚCAR, EFEITO ESTUFA, FERTILIZANTES NITROGENADOS, GASES, PALHAS, VINHAÇA

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      VASCONCELOS, Ana Luisa S et al. Sugarcane residue and N-fertilization effects on soil GHG emissions in south-central, Brazil. Biomass and Bioenergy, v. 158, p. 1-9, 2022Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2022.106342. Acesso em: 04 dez. 2025.
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      Vasconcelos, A. L. S., Cherubin, M. R., Cerri, C. E. P., Feigl, B. J., Reis, A. F. de B., & Siqueira-Neto, M. (2022). Sugarcane residue and N-fertilization effects on soil GHG emissions in south-central, Brazil. Biomass and Bioenergy, 158, 1-9. doi:10.1016/j.biombioe.2022.106342
    • NLM

      Vasconcelos ALS, Cherubin MR, Cerri CEP, Feigl BJ, Reis AF de B, Siqueira-Neto M. Sugarcane residue and N-fertilization effects on soil GHG emissions in south-central, Brazil [Internet]. Biomass and Bioenergy. 2022 ; 158 1-9.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2022.106342
    • Vancouver

      Vasconcelos ALS, Cherubin MR, Cerri CEP, Feigl BJ, Reis AF de B, Siqueira-Neto M. Sugarcane residue and N-fertilization effects on soil GHG emissions in south-central, Brazil [Internet]. Biomass and Bioenergy. 2022 ; 158 1-9.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2022.106342
  • Source: Biomass and Bioenergy. Unidade: ESALQ

    Subjects: BIOENERGIA, BIOMASSA, CAVACOS, EUCALIPTO, RAIZ, RESÍDUOS FLORESTAIS, SUSTENTABILIDADE

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      ANGNES, Graciele et al. Energy and economic performances of stump and roots removal of Eucalyptus for bioenergy. Biomass and Bioenergy, v. 153, p. 1-9, 2021Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2021.106229. Acesso em: 04 dez. 2025.
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      Angnes, G., Almeida, B. O. de, Milan, M., & Romanelli, T. L. (2021). Energy and economic performances of stump and roots removal of Eucalyptus for bioenergy. Biomass and Bioenergy, 153, 1-9. doi:10.1016/j.biombioe.2021.106229
    • NLM

      Angnes G, Almeida BO de, Milan M, Romanelli TL. Energy and economic performances of stump and roots removal of Eucalyptus for bioenergy [Internet]. Biomass and Bioenergy. 2021 ;153 1-9.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2021.106229
    • Vancouver

      Angnes G, Almeida BO de, Milan M, Romanelli TL. Energy and economic performances of stump and roots removal of Eucalyptus for bioenergy [Internet]. Biomass and Bioenergy. 2021 ;153 1-9.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2021.106229
  • Source: Biomass and Bioenergy. Unidade: EP

    Subjects: CANA-DE-AÇÚCAR, LEGISLAÇÃO AMBIENTAL

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      TOMEI, Julia et al. Assessing the relationship between sugarcane expansion and human development at the municipal level: a case study of Mato Grosso do Sul, Brazil. Biomass and Bioenergy, v. 141, 2020Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2020.105700. Acesso em: 04 dez. 2025.
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      Tomei, J., Oliveira, L. L. de, Ribeiro, C., Ho, L. L., & Montoya, L. G. (2020). Assessing the relationship between sugarcane expansion and human development at the municipal level: a case study of Mato Grosso do Sul, Brazil. Biomass and Bioenergy, 141. doi:10.1016/j.biombioe.2020.105700
    • NLM

      Tomei J, Oliveira LL de, Ribeiro C, Ho LL, Montoya LG. Assessing the relationship between sugarcane expansion and human development at the municipal level: a case study of Mato Grosso do Sul, Brazil [Internet]. Biomass and Bioenergy. 2020 ; 141[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2020.105700
    • Vancouver

      Tomei J, Oliveira LL de, Ribeiro C, Ho LL, Montoya LG. Assessing the relationship between sugarcane expansion and human development at the municipal level: a case study of Mato Grosso do Sul, Brazil [Internet]. Biomass and Bioenergy. 2020 ; 141[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2020.105700
  • Source: Biomass and Bioenergy. Unidade: EP

    Subjects: CLOSTRIDIUM, TOLERÂNCIA, CANA-DE-AÇÚCAR, BAGAÇOS

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      ZETTY-ARENAS, Ana Maria et al. Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: strain screening, and the effects of sugar concentration and butanol tolerance. Biomass and Bioenergy, v. 126, p. 190-189, 2019Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2019.05.011. Acesso em: 04 dez. 2025.
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      Zetty-Arenas, A. M., Alves, C. R. F., Portela, C. A. F., Mariano, A. P., Basso, T. O., Tovar, L. P., et al. (2019). Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: strain screening, and the effects of sugar concentration and butanol tolerance. Biomass and Bioenergy, 126, 190-189. doi:10.1016/j.biombioe.2019.05.011
    • NLM

      Zetty-Arenas AM, Alves CRF, Portela CAF, Mariano AP, Basso TO, Tovar LP, Maciel Filho R, Freitas S. Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: strain screening, and the effects of sugar concentration and butanol tolerance [Internet]. Biomass and Bioenergy. 2019 ;126 190-189.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2019.05.011
    • Vancouver

      Zetty-Arenas AM, Alves CRF, Portela CAF, Mariano AP, Basso TO, Tovar LP, Maciel Filho R, Freitas S. Towards enhanced n-butanol production from sugarcane bagasse hemicellulosic hydrolysate: strain screening, and the effects of sugar concentration and butanol tolerance [Internet]. Biomass and Bioenergy. 2019 ;126 190-189.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2019.05.011
  • Source: Biomass and Bioenergy. Unidades: IQSC, EESC

    Subjects: ADSORÇÃO (TRATAMENTO DE ÁGUA), QUITOSANA, BIOPOLÍMEROS, CANA-DE-AÇÚCAR

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      GEROMEL-COSTA, Camila G.A et al. Adsorption of metals by crosslinked chitosan beads in sugarcane contaminated streams. Biomass and Bioenergy, v. 119, p. 128-134, 2018Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2018.09.019. Acesso em: 04 dez. 2025.
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      Geromel-Costa, C. G. A., Corbi, J. J., Gorni, G. R., Colombo, V., Corrêa, R. C., Fiamingo, A., & Campana Filho, S. P. (2018). Adsorption of metals by crosslinked chitosan beads in sugarcane contaminated streams. Biomass and Bioenergy, 119, 128-134. doi:10.1016/j.biombioe.2018.09.019
    • NLM

      Geromel-Costa CGA, Corbi JJ, Gorni GR, Colombo V, Corrêa RC, Fiamingo A, Campana Filho SP. Adsorption of metals by crosslinked chitosan beads in sugarcane contaminated streams [Internet]. Biomass and Bioenergy. 2018 ; 119 128-134.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2018.09.019
    • Vancouver

      Geromel-Costa CGA, Corbi JJ, Gorni GR, Colombo V, Corrêa RC, Fiamingo A, Campana Filho SP. Adsorption of metals by crosslinked chitosan beads in sugarcane contaminated streams [Internet]. Biomass and Bioenergy. 2018 ; 119 128-134.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2018.09.019
  • Source: Biomass and Bioenergy. Unidade: IFSC

    Subjects: BAGAÇOS, BIOMASSA, CANA-DE-AÇÚCAR, ETANOL

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      ZHU, Zongyuan et al. Efficient sugar production from sugarcane bagasse by microwave assisted acid and alkali pretreatment. Biomass and Bioenergy, v. 93, p. 269-278, 2016Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2016.06.017. Acesso em: 04 dez. 2025.
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      Zhu, Z., Rezende, C. A., Simister, R., McQueen-Mason, S. J., Macquarrie, D. J., Polikarpov, I., & Gomez, L. D. (2016). Efficient sugar production from sugarcane bagasse by microwave assisted acid and alkali pretreatment. Biomass and Bioenergy, 93, 269-278. doi:10.1016/j.biombioe.2016.06.017
    • NLM

      Zhu Z, Rezende CA, Simister R, McQueen-Mason SJ, Macquarrie DJ, Polikarpov I, Gomez LD. Efficient sugar production from sugarcane bagasse by microwave assisted acid and alkali pretreatment [Internet]. Biomass and Bioenergy. 2016 ; 93 269-278.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2016.06.017
    • Vancouver

      Zhu Z, Rezende CA, Simister R, McQueen-Mason SJ, Macquarrie DJ, Polikarpov I, Gomez LD. Efficient sugar production from sugarcane bagasse by microwave assisted acid and alkali pretreatment [Internet]. Biomass and Bioenergy. 2016 ; 93 269-278.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2016.06.017
  • Source: Biomass and Bioenergy. Unidade: IQSC

    Assunto: CATALISADORES

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      LUCRÉDIO, Alessandra Fonseca e ASSAF, Jose Mansur e ASSAF, Elisabete Moreira. Reforming of a model sulfur-free biogas on Ni catalysts supported on Mg(Al)O derived from hydrotalcite precursors: effect of La and Rh addition. Biomass and Bioenergy, v. 60, p. 8-17, 2014Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2013.11.006. Acesso em: 04 dez. 2025.
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      Lucrédio, A. F., Assaf, J. M., & Assaf, E. M. (2014). Reforming of a model sulfur-free biogas on Ni catalysts supported on Mg(Al)O derived from hydrotalcite precursors: effect of La and Rh addition. Biomass and Bioenergy, 60, 8-17. doi:10.1016/j.biombioe.2013.11.006
    • NLM

      Lucrédio AF, Assaf JM, Assaf EM. Reforming of a model sulfur-free biogas on Ni catalysts supported on Mg(Al)O derived from hydrotalcite precursors: effect of La and Rh addition [Internet]. Biomass and Bioenergy. 2014 ; 60 8-17.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2013.11.006
    • Vancouver

      Lucrédio AF, Assaf JM, Assaf EM. Reforming of a model sulfur-free biogas on Ni catalysts supported on Mg(Al)O derived from hydrotalcite precursors: effect of La and Rh addition [Internet]. Biomass and Bioenergy. 2014 ; 60 8-17.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2013.11.006
  • Source: Biomass and Bioenergy. Unidade: CENA

    Subjects: NITROGÊNIO, CULTIVO MÍNIMO, CELULOSE, RESÍDUOS

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      FORTES, Caio e TRIVELIN, Paulo Cesar Ocheuze e VITTI, Andre Cesar. Long-term decomposition of sugarcane harvest residues in Sao Paulo state, Brazil. Biomass and Bioenergy, v. 42, p. 189–198, 2012Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2012.03.011. Acesso em: 04 dez. 2025.
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      Fortes, C., Trivelin, P. C. O., & Vitti, A. C. (2012). Long-term decomposition of sugarcane harvest residues in Sao Paulo state, Brazil. Biomass and Bioenergy, 42, 189–198. doi:10.1016/j.biombioe.2012.03.011
    • NLM

      Fortes C, Trivelin PCO, Vitti AC. Long-term decomposition of sugarcane harvest residues in Sao Paulo state, Brazil [Internet]. Biomass and Bioenergy. 2012 ; 42 189–198.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2012.03.011
    • Vancouver

      Fortes C, Trivelin PCO, Vitti AC. Long-term decomposition of sugarcane harvest residues in Sao Paulo state, Brazil [Internet]. Biomass and Bioenergy. 2012 ; 42 189–198.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2012.03.011
  • Source: Biomass and Bioenergy. Unidade: FCF

    Subjects: ENERGIA DE BIOMASSA, BIOTECNOLOGIA, MICROALGAS

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      SASSANO, Carlos Eduardo Nascimento et al. Cultivation of Spirulina platensis by continuous process using ammonium chloride as nitrogen source. Biomass and Bioenergy, v. 31, n. 8, p. 593-598, 2007Tradução . . Disponível em: https://doi.org/10.1016/j.biombioe.2007.04.001. Acesso em: 04 dez. 2025.
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      Sassano, C. E. N., Gioielli, L. A., Almeida, K. A. de, Sato, S., Perego, P., Converti, A., & Carvalho, J. C. M. de. (2007). Cultivation of Spirulina platensis by continuous process using ammonium chloride as nitrogen source. Biomass and Bioenergy, 31( 8), 593-598. doi:10.1016/j.biombioe.2007.04.001
    • NLM

      Sassano CEN, Gioielli LA, Almeida KA de, Sato S, Perego P, Converti A, Carvalho JCM de. Cultivation of Spirulina platensis by continuous process using ammonium chloride as nitrogen source [Internet]. Biomass and Bioenergy. 2007 ; 31( 8): 593-598.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2007.04.001
    • Vancouver

      Sassano CEN, Gioielli LA, Almeida KA de, Sato S, Perego P, Converti A, Carvalho JCM de. Cultivation of Spirulina platensis by continuous process using ammonium chloride as nitrogen source [Internet]. Biomass and Bioenergy. 2007 ; 31( 8): 593-598.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/j.biombioe.2007.04.001
  • Source: Biomass and Bioenergy. Unidade: FCF

    Subjects: BIOQUÍMICA, BIOTECNOLOGIA, MICROALGAS

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      DANESI, Eliane Dalva Godoy et al. Effect of reducing the light intensity on the growth and production of chlorophyll by Spirulina platensis. Biomass and Bioenergy, v. 26, n. 4, p. 329-335, 2004Tradução . . Disponível em: https://doi.org/10.1016/s0961-9534(03)00127-2. Acesso em: 04 dez. 2025.
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      Danesi, E. D. G., Rangel-Yagui, C. de O., Carvalho, J. C. M. de, & Sato, S. (2004). Effect of reducing the light intensity on the growth and production of chlorophyll by Spirulina platensis. Biomass and Bioenergy, 26( 4), 329-335. doi:10.1016/s0961-9534(03)00127-2
    • NLM

      Danesi EDG, Rangel-Yagui C de O, Carvalho JCM de, Sato S. Effect of reducing the light intensity on the growth and production of chlorophyll by Spirulina platensis [Internet]. Biomass and Bioenergy. 2004 ; 26( 4): 329-335.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/s0961-9534(03)00127-2
    • Vancouver

      Danesi EDG, Rangel-Yagui C de O, Carvalho JCM de, Sato S. Effect of reducing the light intensity on the growth and production of chlorophyll by Spirulina platensis [Internet]. Biomass and Bioenergy. 2004 ; 26( 4): 329-335.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/s0961-9534(03)00127-2
  • Source: Biomass and Bioenergy. Unidade: FCF

    Subjects: BIOTECNOLOGIA, MICROALGAS, BIOQUÍMICA

    Acesso à fonteDOIHow to cite
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    • ABNT

      DANESI, Eliane Dalva Godoy et al. An investigation of effect of replacing nitrate by urea in the growth and production of chlorophyll by Spirulina platensis. Biomass and Bioenergy, v. 23, n. 4, p. 261-269, 2002Tradução . . Disponível em: https://doi.org/10.1016/s0961-9534(02)00054-5. Acesso em: 04 dez. 2025.
    • APA

      Danesi, E. D. G., Rangel-Yagui, C. de O., Carvalho, J. C. M. de, & Sato, S. (2002). An investigation of effect of replacing nitrate by urea in the growth and production of chlorophyll by Spirulina platensis. Biomass and Bioenergy, 23( 4), 261-269. doi:10.1016/s0961-9534(02)00054-5
    • NLM

      Danesi EDG, Rangel-Yagui C de O, Carvalho JCM de, Sato S. An investigation of effect of replacing nitrate by urea in the growth and production of chlorophyll by Spirulina platensis [Internet]. Biomass and Bioenergy. 2002 ; 23( 4): 261-269.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/s0961-9534(02)00054-5
    • Vancouver

      Danesi EDG, Rangel-Yagui C de O, Carvalho JCM de, Sato S. An investigation of effect of replacing nitrate by urea in the growth and production of chlorophyll by Spirulina platensis [Internet]. Biomass and Bioenergy. 2002 ; 23( 4): 261-269.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/s0961-9534(02)00054-5
  • Source: Biomass and Bioenergy. Unidade: FCF

    Subjects: BIOTECNOLOGIA, FARMÁCIA

    Acesso à fonteDOIHow to cite
    A citação é gerada automaticamente e pode não estar totalmente de acordo com as normas
    • ABNT

      VITOLO, Michele et al. Invertase activity of intact yeast cells harvested from fed-batch ethanol fermentation of sugar cane blackstrap molasses. Biomass and Bioenergy, v. 1 , n. 5 , p. 301-4, 1991Tradução . . Disponível em: https://doi.org/10.1016/0961-9534(91)90043-c. Acesso em: 04 dez. 2025.
    • APA

      Vitolo, M., Carvalho, J. C. M. de, Duranti, M. A., & Breda, M. (1991). Invertase activity of intact yeast cells harvested from fed-batch ethanol fermentation of sugar cane blackstrap molasses. Biomass and Bioenergy, 1 ( 5 ), 301-4. doi:10.1016/0961-9534(91)90043-c
    • NLM

      Vitolo M, Carvalho JCM de, Duranti MA, Breda M. Invertase activity of intact yeast cells harvested from fed-batch ethanol fermentation of sugar cane blackstrap molasses [Internet]. Biomass and Bioenergy. 1991 ;1 ( 5 ): 301-4.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/0961-9534(91)90043-c
    • Vancouver

      Vitolo M, Carvalho JCM de, Duranti MA, Breda M. Invertase activity of intact yeast cells harvested from fed-batch ethanol fermentation of sugar cane blackstrap molasses [Internet]. Biomass and Bioenergy. 1991 ;1 ( 5 ): 301-4.[citado 2025 dez. 04 ] Available from: https://doi.org/10.1016/0961-9534(91)90043-c

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