Otimiza??o do pr?-tratamento ?cido de torta de caro?o de algod?o e baga?o de malte com farinha de pupunha para produ??o de bioetanol de segunda gera??o

Autor: Silva, Alexandre Alves da
Jazyk: portugalština
Rok vydání: 2012
Předmět:
Zdroj: Repositório Institucional da UFVJMUniversidade Federal dos Vales do Jequitinhonha e MucuriUFVJM.
Druh dokumentu: masterThesis
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Na atualidade, n?o se pode desconsiderar a necessidade de desenvolvimento de tecnologias que suportem as demandas por energias renov?veis. Uma das vias para a produ??o de energia renov?vel ? a transforma??o de biomassas vegetais em combust?veis l?quidos. Os res?duos agroindustriais s?o candidatos potenciais como insumos para essa nova ind?stria de energia. Dessa forma a presente disserta??o teve por objetivo avaliar o potencial da torta de caro?o de algod?o e do baga?o de malte com farinha de pupunha como mat?rias-primas para a produ??o de etanol de segunda gera??o e otimizar etapa de pr?-tratamento ?cido do material lignocelul?sico necess?ria para a utiliza??o da celulose. Inicialmente foi determinada a composi??o centesimal da torta de caro?o de algod?o e do baga?o de malte em rela??o aos valores percentuais de umidade, cinzas, extrato et?reo, prote?na bruta, a??cares sol?veis totais, amido, hemicelulose, celulose, lignina, fibra em detergente neutro e fibra em detergente ?cido. Com os resultados da caracteriza??o qu?mica p?de-se estimar uma produ??o potencial superior a 300 L de etanol/tonelada de cada res?duo. Para a otimiza??o do pr?-tratamento ?cido para remo??o da fra??o hemicelul?sica foi aplicada metodologia de Planejamento Fatorial atrav?s de Delineamento Composto Central Rotacional. O programa STATISTICA Vers?o 8.0 (Statsoft Inc., Tulsa,) foi utilizado para an?lise dos dados. A qualidade do ajuste da equa??o do modelo foi expressa pelo coeficiente de determina??o (R?) e sua signific?ncia estat?stica condicionada pelo teste-F. O material insol?vel recuperado ap?s o pr?-tratamento otimizado teve as fra??es hemicelul?sicas e de amido completamente removidas. O hidrolisado obtido em condi??es otimizadas de pr?-tratamento apresentou 15,7% de a??cares redutores para o baga?o de malte e pupunha e 5,9% de a??cares redutores para a torta de caro?o de algod?o. O tratamento dos hidrolisados com carv?o ativado removeu n?o menos que 58% dos compostos fen?licos a? presentes. Os testes de fermentabilidade com Saccharomyces cerevisiae e Pichia stipitis foram promissores. A fermenta??o com S. cerevisiae apresentou um YP/S de 0,30 para a torta de caro?o de algod?o e 0,37 para o baga?o de malte. Os rendimentos fementativos com P. stipitis variaram de 9% a 25% para os res?duos agroindustriais. Os dados experimentais indicam que a torta de caro?o de algod?o (Gossypium hirsutum L.) e baga?o malte com farinha de pupunha tem elevado potencial para a produ??o de bioetanol.
Disserta??o (Mestrado) ? Programa de P?s-Gradua??o em Qu?mica, Universidade Federal dos Vales do Jequitinhonha e Mucuri, 2012.
Nowadays, one cannot ignore the need for developing technologies that support the demands for renewable energy. One of the pathways for production of renewable energy is the transformation of vegetal biomass to liquid fuels. The agro-industrial residues as raw materials are potential candidates for this new energy industry. Thus the aim of the present dissertation was to evaluate the potential of cottonseed cake and crushed malt with peach palm flour as raw materials for the production of second generation ethanol and optimize step of acid pretreatment of lignocellulosic material. Initially was determined the chemical composition of cotton seed cake and crushed malt in relation to the percentages of moisture, ash, ether extract, crude protein, total soluble sugars, starch, hemicellulose, cellulose, lignin, neutral detergent fiber and acid detergent fiber. With the results of chemical characterization it was possible to estimate a potential yield of more than 300L of ethanol / ton of each residue. For the optimization of acid pretreatment for hemicelluloses removal was applied a Central Composite Design. The software STATISTICA Version 8.0 (Statsoft Inc., Tulsa,) was used for data analysis. The goodness of fit of the model equation was expressed by the coefficient of determination (R?) and its statistical significance conditioned by F-test. The insoluble material recovered after the optimized pretreatment had starch and hemicellulose fractions completely removed. The hydrolyzate obtained under optimized conditions of pretreatment showed 15.7% of reducing sugars to the crushed malt and 5.9% of reducing sugars for cottonseed cake. The treatment of the hydrolysates with activated charcoal removed no less than 58% of the phenolic compounds present there. Fermentability tests with Saccharomyces cerevisiae and Pichia stipitis have been promising. Fermentation with S. cerevisiae showed a YP/S of 0.30 for cottonseed cake and 0.37 for the crushed malt. Fermentative yields with P. stipitis ranged from 9% to 25% for agro-industrial residues. The experimental data indicate that the cottonseed cake (Gossypium hirsutum L.) and crushed malt has a high potential for the production of bioethanol.
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