DOI: 10.11606/d.75.2015.tde-07052015-092948
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Determinação e caracterização físico-química e espectroscópica de gramíneas para obtenção de etanol de segunda geração

Abstract: À Deus por me amparar em todos os momentos de minha vida, me dar forças para superar as dificuldades e mostrar os caminhos nas horas incertas. Ao meu orientador e amigo Prof. Dr. Wilson Tadeu Lopes da Silva, pelo apoio, confiança, paciência, incentivo e que aceitou o desafio. Aos técnicos e analistas da Embrapa Instrumentação, principalmente ao Paulo Lasso, Matteo, Viviane, Alice, Edilene e Marcelo. À pesquisadora Cristiane Farinas que cedeu o laboratório de Agroenergia para a realização das análises dos resíd… Show more

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“…From the infrared spectrometer (Figure 6), the main functional groups present in açaí seeds were identified (Table 2). According to Martelli (2014), the application of this analysis allows the identification of some molecular structures, such as aliphatic, aromatic and peptide components, and reactive functional groups, e.g., COOH, OH, C = O and NH2. The region between 3750 to 3500 cm -1 can be directly related to water molecules (Lisbon, 2016).…”
Section: Fourier Transform Infrared Spectroscopy (Ftir)mentioning
confidence: 99%
“…From the infrared spectrometer (Figure 6), the main functional groups present in açaí seeds were identified (Table 2). According to Martelli (2014), the application of this analysis allows the identification of some molecular structures, such as aliphatic, aromatic and peptide components, and reactive functional groups, e.g., COOH, OH, C = O and NH2. The region between 3750 to 3500 cm -1 can be directly related to water molecules (Lisbon, 2016).…”
Section: Fourier Transform Infrared Spectroscopy (Ftir)mentioning
confidence: 99%