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Baru (Dipteryx alata Vogel) Oil Extraction by Supercritical-CO2: Improved Composition by Using Water as Cosolvent.
Peixoto, Vanessa Oliveira Di-Sarli; Silva, Laís de Oliveira; Castelo-Branco, Vanessa Naciuk; Torres, Alexandre Guedes.
Affiliation
  • Peixoto VOD; Laboratório de Bioquímica Nutricional e de Alimentos (LBNA) e Laboratório de Lipidômica e Bioquímica de Lipídeos (LipBio), Instituto de Química, Universidade Federal do Rio de Janeiro.
  • Silva LO; Laboratório de Bioquímica Nutricional e de Alimentos (LBNA) e Laboratório de Lipidômica e Bioquímica de Lipídeos (LipBio), Instituto de Química, Universidade Federal do Rio de Janeiro.
  • Castelo-Branco VN; Laboratório de Biotecnologia de Alimentos, Faculdade de Farmácia, Universidade Federal Fluminense.
  • Torres AG; Laboratório de Bioquímica Nutricional e de Alimentos (LBNA) e Laboratório de Lipidômica e Bioquímica de Lipídeos (LipBio), Instituto de Química, Universidade Federal do Rio de Janeiro.
J Oleo Sci ; 71(2): 201-213, 2022 Feb 03.
Article in En | MEDLINE | ID: mdl-35034941
Baru (Dipteryx alata) almond is an emerging nut from the Brazilian savannah, that presents unique flavor and an interesting specialty oil. In this study, we aimed at investigating the effects of pressure, temperature, type (alcohol and/or water), and concentration of polar cosolvent on the extraction yield and tocopherol contents of baru oil obtained by supercritical-CO2 extraction (SC-CO2); and to investigate the effect of temperature and pressure on phytosterol, phenolic, and volatile compounds' profile in the oil when H2O was the cosolvent. Baru oil extracted with SC-CO2 using alcohol as a cosolvent showed a higher extraction yield (20.5-31.1%) than when using H2O (4.16-22.7%). However, when 0.3% H2O was used as cosolvent, baru oils presented the highest γ-tocopherol (107 and 43.7 mg/100 g) and total tocopherol (212 and 48.7 mg/100 g) contents, depending on the temperature and pressure used (50°C and 10 MPa or 70°C and 30 MPa, respectively). Consequently, the lowest pressure (10 MPa) and temperature (50°C) values resulted in baru oils with better γ/α-ratio, and the highest contents of ß-sitosterol (107 mg/100 g) and phenolic compounds (166 mg/100 g). However, the highest pressure (30 MPa) and temperature (70°C) values improved the volatile profile of oils. Therefore, although alcohol as a cosolvent improved oil yield, small amounts of H2O provided a value-added baru oil with either high content of bioactive compounds or with a distinctive volatile profile by tuning temperature and pressure used during SC-CO2 extraction.
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Full text: 1 Database: MEDLINE Main subject: Solvents / Plant Oils / Carbon Dioxide / Water / Tocopherols / Dipteryx / Liquid-Liquid Extraction Language: En Journal: J Oleo Sci Year: 2022 Type: Article

Full text: 1 Database: MEDLINE Main subject: Solvents / Plant Oils / Carbon Dioxide / Water / Tocopherols / Dipteryx / Liquid-Liquid Extraction Language: En Journal: J Oleo Sci Year: 2022 Type: Article