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Registros recuperados : 13 | |
2. | | PUGSLEY, B.; ANDRADE, D. R. M.; SILVA, P. R. Obtenção de etanol pelo método de hidrólise e fermentação simultâneas (SSF) a partir do lodo de reciclagem de papel. In: EVENTO DE INICIAÇÃO CIENTÍFICA DA EMBRAPA FLORESTAS, 12., 2013, Colombo. Anais. Colombo: Embrapa Florestas, 2013. (Embrapa Florestas. Documentos, 253). Editores técnicos: Marcílio José Thomazini, Elenice Fritzsons, Patrícia Raquel Silva, Guilherme Schnell e Schuhli, Denise Jeton Cardoso, Luziane Franciscon. EVINCI. Resumos., 2013. Biblioteca(s): Embrapa Florestas. |
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4. | | ALMEIDA, A.; ANDRADE, D. R. M.; HELM, C. V.; LIEBSCH, D.; MIKICH, S. B. Compostos fenólicos totais em frutos silvestres e sua relação com as preferências alimentares de Cebus nigritus. In: CONGRESO LATINOAMERICANO DE MASTOZOOLOGIA, 2.; JORNADAS ARGENTINAS DE MASTOZOOLOGIA, 25., 2012, Buenos Aires. Libro de resúmenes. [S.l.]: Sociedad Argentina para el Studio de los Mamíferos: Red Latinoamericana de Mastozoología, 2012. p. 61. Biblioteca(s): Embrapa Florestas. |
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8. | | ANDRADE, D. R. M.; HELM, C. V.; BOLZÓN DE MUÑIZ, G. I.; SATYANARAYANA, K. G.; MAGALHAES, W. L. E. Avaliação toxicológica em Artemia salina de suspensão de nanofibrilas de celulose a partir do resíduo da pupunha. In: WORKSHOP DA REDE DE NANOTECNOLOGIA APLICADA AO AGRONEGÓCIO, 7.; ESCOLA DE NANOTECNOLOGIA, 3., 2013, São Carlos, SP. Anais. São Carlos, SP: Embrapa Instrumentação, 2013. CD-ROM. p. 554-556. Biblioteca(s): Embrapa Florestas. |
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9. | | NUNES, H. C. A.; HELM, C. V.; SILVA, P. R.; HEINZ, K. G. H.; PAZZAN, A. M.; SCHOEN, C.; ANDRADE, D. R. M.; SCHULTZ, J. Pré-tratamento e hidrólise enzimática de biomassas agroindustriais. In: MOSTRA INTEGRADA DE ENSINO, PESQUISA E EXTENSÃO, 7., 2013, Blumenau. Anais. Blumenau: FURB, 2013. Resumo. Disponível online. MIPE. Biblioteca(s): Embrapa Florestas. |
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10. | | ANDRADE, D. R. M.; MENDONÇA, M. H.; HELM, C. V.; MAGALHAES, W. L. E.; BOLZON DE MUNIZ, G. I.; KESTUR, S. G. Assessment of nano cellulose from peach palm residue as potential food additive: part II: preliminary studies. Journal of Food Science and Technology, v. 52, n. 9, p. 5641-5650, Sept. 2015. Biblioteca(s): Embrapa Florestas. |
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11. | | ANDRADE, D. R. M.; MENDONÇA, M. H.; TAVARES, L. B. B.; MAGALHAES, W. L. E.; MIRANDA, N. B. de; BUSARELLO. E. Del P.; SATYANARAYANA, K. G.; HELM, C. V. Avaliação bioquímica em animais submetidos a uma dieta com nanofibrilas de celulose de pupunha. In: WORKSHOP DA REDE DE NANOTECNOLOGIA APLICADA AO AGRONEGÓCIO, 7.; ESCOLA DE NANOTECNOLOGIA, 3., 2013, São Carlos, SP. Anais. São Carlos, SP: Embrapa Instrumentação, 2013. CD-ROM. p. 393-395. Biblioteca(s): Embrapa Florestas. |
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12. | | PRESTES, A. A.; SILVEIRA, M. F.; CANELLA, M. H. M.; HELM, C. V.; ANDRADE, D. R. M.; FERREIRA, A. L. A.; AMBONI, R. D. de M. C.; FEDRIGO, I. M. T.; HERNÁNDEZ, E.; PRUDENCIO, E. S. Whey block freeze concentration aiming a functional fermented lactic beverage with the addition of probiotic and guabiroba pulp (Campomanesia xanthocarpa O. Berg), a native Brazilian fruit. Food Science and Technology, v. 43, e26923, p. 1-9, 2023. Biblioteca(s): Embrapa Florestas. |
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13. | | TIMM, T. G.; ULLER, S. E.; ANDRADE, D. R. M.; HELM, C. V.; LIMA, E. A. de; AMÂNCIO, B. R.; LOREGIAN, K. E.; MAGNANI, E.; MARCONDES, M. I.; BRANCO, R. H.; PAULA, E. M.; BENEDETI, P. Del B.; TAVARES, L. B. B. Bioeconomic valorization of Bactris Gasipaes Kunth shells as a substrate for shitake mushrooms and its by product for beef cattle feed. In: SIMPÓSIO LATINO AMERICANO DE CIÊNCIA DE ALIMENTOS E NUTRIÇÃO, 15., 2023, Campinas. Caderno de resumos [...]. Campinas: Galoá Science, 2023. p. 1006-1007. SLACAN 2023. Biblioteca(s): Embrapa Florestas. |
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Registros recuperados : 13 | |
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| Acesso ao texto completo restrito à biblioteca da Embrapa Florestas. Para informações adicionais entre em contato com cnpf.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Florestas. |
Data corrente: |
04/12/2023 |
Data da última atualização: |
05/12/2023 |
Tipo da produção científica: |
Resumo em Anais de Congresso |
Autoria: |
TIMM, T. G.; ULLER, S. E.; ANDRADE, D. R. M.; HELM, C. V.; LIMA, E. A. de; AMÂNCIO, B. R.; LOREGIAN, K. E.; MAGNANI, E.; MARCONDES, M. I.; BRANCO, R. H.; PAULA, E. M.; BENEDETI, P. Del B.; TAVARES, L. B. B. |
Afiliação: |
THAYNÃ GONÇALVES TIMM, FUNDAÇÃO UNIVERSIDADE REGIONAL DE BLUMENAU; STEFANIE ELIS ULLER, FUNDAÇÃO UNIVERSIDADE REGIONAL DE BLUMENAU; DAYANNE REGINA MENDES ANDRADE; CRISTIANE VIEIRA HELM, CNPF; EDSON ALVES DE LIMA, CNPF; BRUNA ROBERTA AMÂNCIO, INSTITUTO DE ZOOTECNIA DE SÃO PAULO; KALISTA ELOISA LOREGIAN, INSTITUTO DE ZOOTECNIA DE SÃO PAULO; ELAINE MAGNANI; MARCOS INÁCIO MARCONDES, WASHINGTON STATE UNIVERSITY; RENATA HELENA BRANCO, INSTITUTO DE ZOOTECNIA DE SÃO PAULO; EDUARDO MAROSTEGAN DE PAULA, INSTITUTO DE ZOOTECNIA DE SÃO PAULO; PEDRO DEL BIANCO BENEDETI, UNIVERSIDADE DO ESTADO DE SANTA CATARINA; LORENA BENATHAR BALLOD TAVARES, FUNDAÇÃO UNIVERSIDADE REGIONAL DE BLUMENAU. |
Título: |
Bioeconomic valorization of Bactris Gasipaes Kunth shells as a substrate for shitake mushrooms and its by product for beef cattle feed. |
Ano de publicação: |
2023 |
Fonte/Imprenta: |
In: SIMPÓSIO LATINO AMERICANO DE CIÊNCIA DE ALIMENTOS E NUTRIÇÃO, 15., 2023, Campinas. Caderno de resumos [...]. Campinas: Galoá Science, 2023. |
Páginas: |
p. 1006-1007. |
ISBN: |
978-65-89463-70-2 |
Idioma: |
Português |
Notas: |
SLACAN 2023. |
Conteúdo: |
Bactris gasipaes Kunth (peach palm) processing generates byproducts (shells), which when inappropriately discarded, cause environmental problems. These shells are lignocellulosic material with great potential as a substrate for the axenic cultivation of mushrooms. Nevertheless, after the mushroom harvesting, there is a byproduct (spent mushroom substrate; SMS), which presents high nutritional value. This study aimed to verify the technical viability of Shiitake (Lentinula edodes) production in an axenic cultivation system using peach palm shells as substrate and to evaluate the SMS as an ingredient for beef cattle diet. Shiitake mushrooms in axenic cultivation was carried out using supplemented (20%; manioc bagasse, soya bran, and sorghum flour; 5 treatments) external shells as substrate (80%) to evaluate the substrate influence on productive parameters and chemical composition, mainly total protein and β-glucans content. The SMS that presented the highest β-glucans content was analyzed using an in vitro system to assess the effects on ruminal fermentation and greenhouse gas parameters. Results showed that all treatments of the axenic system presented mushroom growth. Treatment 2 (supplemented with soya bran and sorghum flour) obtained the highest total number of mushrooms (6 mushrooms) and protein content (27.03%), while treatment 4 (supplemented with soya bran and manioc bagasse) presented the highest mushroom wet weight, performance, and biological efficiency (97.28 g, 19.45%, and 67.06%, respectively), and 3 (supplemented with manioc bagasse and sorghum flour) had the highest β-glucans content (mushrooms: 29.53%; SMS: 11.27%). The SMS presented similar digestibility (73.95%) to conventional diets (corn silage and sugar cane) and lower methane and carbon dioxide emissions than corn silage (22% lower and 21.3% lower, respectively) and sugar cane (20.9% lower and 22.6% lower, respectively). This study highlighted a sustainable use of byproducts for human and cattle diets, promising for digestibility, nutritional value, β-glucans incorporation, and environmental impact mitigation, favoring the circular bioeconomy. MenosBactris gasipaes Kunth (peach palm) processing generates byproducts (shells), which when inappropriately discarded, cause environmental problems. These shells are lignocellulosic material with great potential as a substrate for the axenic cultivation of mushrooms. Nevertheless, after the mushroom harvesting, there is a byproduct (spent mushroom substrate; SMS), which presents high nutritional value. This study aimed to verify the technical viability of Shiitake (Lentinula edodes) production in an axenic cultivation system using peach palm shells as substrate and to evaluate the SMS as an ingredient for beef cattle diet. Shiitake mushrooms in axenic cultivation was carried out using supplemented (20%; manioc bagasse, soya bran, and sorghum flour; 5 treatments) external shells as substrate (80%) to evaluate the substrate influence on productive parameters and chemical composition, mainly total protein and β-glucans content. The SMS that presented the highest β-glucans content was analyzed using an in vitro system to assess the effects on ruminal fermentation and greenhouse gas parameters. Results showed that all treatments of the axenic system presented mushroom growth. Treatment 2 (supplemented with soya bran and sorghum flour) obtained the highest total number of mushrooms (6 mushrooms) and protein content (27.03%), while treatment 4 (supplemented with soya bran and manioc bagasse) presented the highest mushroom wet weight, performance, and biological efficiency (97.28 g, 19... Mostrar Tudo |
Palavras-Chave: |
Bioeconomia circular; Circular bioeconomy; Resíduos; Substrate. |
Thesagro: |
Alimento; Bactris Gasipaes; Cogumelo; Lentinula Edodes; Subproduto. |
Categoria do assunto: |
K Ciência Florestal e Produtos de Origem Vegetal |
Marc: |
LEADER 03398nam a2200397 a 4500 001 2159104 005 2023-12-05 008 2023 bl uuuu u00u1 u #d 020 $a978-65-89463-70-2 100 1 $aTIMM, T. G. 245 $aBioeconomic valorization of Bactris Gasipaes Kunth shells as a substrate for shitake mushrooms and its by product for beef cattle feed.$h[electronic resource] 260 $aIn: SIMPÓSIO LATINO AMERICANO DE CIÊNCIA DE ALIMENTOS E NUTRIÇÃO, 15., 2023, Campinas. Caderno de resumos [...]. Campinas: Galoá Science$c2023 300 $ap. 1006-1007. 500 $aSLACAN 2023. 520 $aBactris gasipaes Kunth (peach palm) processing generates byproducts (shells), which when inappropriately discarded, cause environmental problems. These shells are lignocellulosic material with great potential as a substrate for the axenic cultivation of mushrooms. Nevertheless, after the mushroom harvesting, there is a byproduct (spent mushroom substrate; SMS), which presents high nutritional value. This study aimed to verify the technical viability of Shiitake (Lentinula edodes) production in an axenic cultivation system using peach palm shells as substrate and to evaluate the SMS as an ingredient for beef cattle diet. Shiitake mushrooms in axenic cultivation was carried out using supplemented (20%; manioc bagasse, soya bran, and sorghum flour; 5 treatments) external shells as substrate (80%) to evaluate the substrate influence on productive parameters and chemical composition, mainly total protein and β-glucans content. The SMS that presented the highest β-glucans content was analyzed using an in vitro system to assess the effects on ruminal fermentation and greenhouse gas parameters. Results showed that all treatments of the axenic system presented mushroom growth. Treatment 2 (supplemented with soya bran and sorghum flour) obtained the highest total number of mushrooms (6 mushrooms) and protein content (27.03%), while treatment 4 (supplemented with soya bran and manioc bagasse) presented the highest mushroom wet weight, performance, and biological efficiency (97.28 g, 19.45%, and 67.06%, respectively), and 3 (supplemented with manioc bagasse and sorghum flour) had the highest β-glucans content (mushrooms: 29.53%; SMS: 11.27%). The SMS presented similar digestibility (73.95%) to conventional diets (corn silage and sugar cane) and lower methane and carbon dioxide emissions than corn silage (22% lower and 21.3% lower, respectively) and sugar cane (20.9% lower and 22.6% lower, respectively). This study highlighted a sustainable use of byproducts for human and cattle diets, promising for digestibility, nutritional value, β-glucans incorporation, and environmental impact mitigation, favoring the circular bioeconomy. 650 $aAlimento 650 $aBactris Gasipaes 650 $aCogumelo 650 $aLentinula Edodes 650 $aSubproduto 653 $aBioeconomia circular 653 $aCircular bioeconomy 653 $aResíduos 653 $aSubstrate 700 1 $aULLER, S. E. 700 1 $aANDRADE, D. R. M. 700 1 $aHELM, C. V. 700 1 $aLIMA, E. A. de 700 1 $aAMÂNCIO, B. R. 700 1 $aLOREGIAN, K. E. 700 1 $aMAGNANI, E. 700 1 $aMARCONDES, M. I. 700 1 $aBRANCO, R. H. 700 1 $aPAULA, E. M. 700 1 $aBENEDETI, P. Del B. 700 1 $aTAVARES, L. B. B.
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