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Registro Completo |
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Biblioteca(s): |
Embrapa Milho e Sorgo; Embrapa Suínos e Aves. |
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Data corrente: |
27/01/2026 |
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Data da última atualização: |
20/03/2026 |
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Tipo da produção científica: |
Artigo em Periódico Indexado |
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Autoria: |
LAZAROTO, A. C.; PRÁ, M. C. de; SILVA, J. F. F. da; TAPPARO, D. C.; ASSIS, D. B. de; STEINMETZ, R. L. R.; ANTES, F. G.; PARRELLA, R. A. da C.; SIMEONE, M. L. F.; MAGRINI, F. E.; SOPHIATTI, I. V. M.; PAESI, S.; KUNZ, A. |
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Afiliação: |
ANA CLAUDIA LAZAROTO, UNIVERSIDADE TECNOLÓGICA FEDERAL DO PARANÁ; MARINA CELANT DE PRA, UNIVERSIDADE TECNOLÓGICA FEDERAL DO PARANÁ; JOAO FERNANDO FERRI DA SILVA, UNIVERSIDADE ESTADUAL DO OESTE DO PARANÁ; DEISI CRISTINA TAPPARO; DAGMARA BELTRAME DE ASSIS, UNIVERSIDADE FEDERAL DO PARANA; RICARDO LUIS RADIS STEINMETZ, CNPSA; FABIANE GOLDSCHMIDT ANTES, CNPSA; RAFAEL AUGUSTO DA COSTA PARRELLA, CNPMS; MARIA LUCIA FERREIRA SIMEONE, CNPMS; FLAVIANE EVA MAGRINI, UNIVERSIDADE DE CAXIAS DO SUL; IGOR VINICIUS MACHADO SOPHIATTI, UNIVERSIDADE DE CAXIAS DO SUL; SUELEN PAESI, UNIVERSIDADE DE CAXIAS DO SUL; AIRTON KUNZ, CNPSA. |
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Título: |
Scaling biogas production with a new sorghum cultivar: biomass yield as a key driver. |
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Ano de publicação: |
2026 |
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Fonte/Imprenta: |
Biomass and Bioenergy, v. 208, 108873, 2026. |
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DOI: |
https://doi.org/10.1016/j.biombioe.2025.108873 |
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Idioma: |
Inglês |
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Conteúdo: |
Sorghum is a promising energy crop due to its high productivity and adaptability to adverse conditions. Among sorghum hybrids, BRS 716 stands out for its exceptional biomass yield, optimizing land use. This study investigated the biogas and methane production potential of BRS 716. The Biochemical Methane Potential (BMP) of the biomass (296 ± 4.4 LN Kgvs add − 1 ) was consistent with previously reported values, confirming the effectiveness of the anaerobic digestion (AD) process. The high fresh biomass yield of 117 t ha− 1 translates into an estimated methane yield of 11,316 m3 ha− 1 , approximately seven times higher than reported for sweet sorghum cultivars, highlighting its energy recovery potential and contribution to economic viability and environmental sustainability. Additionally, a continuous stirred-tank reactor (CSTR) was operated for 182 days with stepwise increases in organic loading rate (OLR) of 0.5 gVS L− 1 reactor d− 1 . Optimal performance occurred at an OLR of 2.5 gVS L− 1 reactor d− 1 (Phase V) with a maximum productivity of 0.50 LN CH4 L reactor − 1 d− 1 and a 200 LN CH4 kgVS − 1 yield. From 3.0 gVS L− 1 reactor d− 1 , propionic acid accumulation (above 570 mg L− 1 ) caused inhibition. Microbial analysis revealed increased diversity in Phase V, with a predominance of the genera Sedimentibacter, Ruminofilibacter, HN-HF0106, Proteiniphilum, and Bacteroidetes_vadinHA17, associated with lignocellulosic degradation. Methanosarcina dominated the archaeal community, and genes related to acetoclastic methanogenesis and lignocellulose hydrolysis were predicted in higher abundance. These results demonstrate that BRS 716 combines high biomass yield with efficient AD conversion, offering significant potential for large-scale biogas production from energy crops. MenosSorghum is a promising energy crop due to its high productivity and adaptability to adverse conditions. Among sorghum hybrids, BRS 716 stands out for its exceptional biomass yield, optimizing land use. This study investigated the biogas and methane production potential of BRS 716. The Biochemical Methane Potential (BMP) of the biomass (296 ± 4.4 LN Kgvs add − 1 ) was consistent with previously reported values, confirming the effectiveness of the anaerobic digestion (AD) process. The high fresh biomass yield of 117 t ha− 1 translates into an estimated methane yield of 11,316 m3 ha− 1 , approximately seven times higher than reported for sweet sorghum cultivars, highlighting its energy recovery potential and contribution to economic viability and environmental sustainability. Additionally, a continuous stirred-tank reactor (CSTR) was operated for 182 days with stepwise increases in organic loading rate (OLR) of 0.5 gVS L− 1 reactor d− 1 . Optimal performance occurred at an OLR of 2.5 gVS L− 1 reactor d− 1 (Phase V) with a maximum productivity of 0.50 LN CH4 L reactor − 1 d− 1 and a 200 LN CH4 kgVS − 1 yield. From 3.0 gVS L− 1 reactor d− 1 , propionic acid accumulation (above 570 mg L− 1 ) caused inhibition. Microbial analysis revealed increased diversity in Phase V, with a predominance of the genera Sedimentibacter, Ruminofilibacter, HN-HF0106, Proteiniphilum, and Bacteroidetes_vadinHA17, associated with lignocellulosic degradation. Methanosarcina dominated the archaeal communi... Mostrar Tudo |
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Thesagro: |
Bioenergia; Biogás; Biomassa; Metano; Sorghum Bicolor; Sorgo. |
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Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
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Marc: |
LEADER 02808naa a2200349 a 4500 001 2185663 005 2026-03-20 008 2026 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.biombioe.2025.108873$2DOI 100 1 $aLAZAROTO, A. C. 245 $aScaling biogas production with a new sorghum cultivar$bbiomass yield as a key driver.$h[electronic resource] 260 $c2026 520 $aSorghum is a promising energy crop due to its high productivity and adaptability to adverse conditions. Among sorghum hybrids, BRS 716 stands out for its exceptional biomass yield, optimizing land use. This study investigated the biogas and methane production potential of BRS 716. The Biochemical Methane Potential (BMP) of the biomass (296 ± 4.4 LN Kgvs add − 1 ) was consistent with previously reported values, confirming the effectiveness of the anaerobic digestion (AD) process. The high fresh biomass yield of 117 t ha− 1 translates into an estimated methane yield of 11,316 m3 ha− 1 , approximately seven times higher than reported for sweet sorghum cultivars, highlighting its energy recovery potential and contribution to economic viability and environmental sustainability. Additionally, a continuous stirred-tank reactor (CSTR) was operated for 182 days with stepwise increases in organic loading rate (OLR) of 0.5 gVS L− 1 reactor d− 1 . Optimal performance occurred at an OLR of 2.5 gVS L− 1 reactor d− 1 (Phase V) with a maximum productivity of 0.50 LN CH4 L reactor − 1 d− 1 and a 200 LN CH4 kgVS − 1 yield. From 3.0 gVS L− 1 reactor d− 1 , propionic acid accumulation (above 570 mg L− 1 ) caused inhibition. Microbial analysis revealed increased diversity in Phase V, with a predominance of the genera Sedimentibacter, Ruminofilibacter, HN-HF0106, Proteiniphilum, and Bacteroidetes_vadinHA17, associated with lignocellulosic degradation. Methanosarcina dominated the archaeal community, and genes related to acetoclastic methanogenesis and lignocellulose hydrolysis were predicted in higher abundance. These results demonstrate that BRS 716 combines high biomass yield with efficient AD conversion, offering significant potential for large-scale biogas production from energy crops. 650 $aBioenergia 650 $aBiogás 650 $aBiomassa 650 $aMetano 650 $aSorghum Bicolor 650 $aSorgo 700 1 $aPRÁ, M. C. de 700 1 $aSILVA, J. F. F. da 700 1 $aTAPPARO, D. C. 700 1 $aASSIS, D. B. de 700 1 $aSTEINMETZ, R. L. R. 700 1 $aANTES, F. G. 700 1 $aPARRELLA, R. A. da C. 700 1 $aSIMEONE, M. L. F. 700 1 $aMAGRINI, F. E. 700 1 $aSOPHIATTI, I. V. M. 700 1 $aPAESI, S. 700 1 $aKUNZ, A. 773 $tBiomass and Bioenergy$gv. 208, 108873, 2026.
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Registro original: |
Embrapa Suínos e Aves (CNPSA) |
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