共 39 条
[1]
Alluis B., Dangles O., Quercetin (=2‐(3, 4‐Dihydroxyphenyl)‐3, 5, 7‐trihydroxy‐4H‐1‐benzopyran‐4‐one) glycosides and sulfates: chemical synthesis, complexation, and antioxidant properties, Helv Chim Acta, 84, 5, pp. 1133-1156, (2001)
[2]
Amyrgialaki E., Makris D.P., Mauromoustakos A., Kefalas P., Optimisation of the extraction of pomegranate (Punica granatum) husk phenolics using water/ethanol solvent systems and response surface methodology, Ind Crop Prod, 59, pp. 216-222, (2014)
[3]
Apostolakis A., Grigorakis S., Makris D.P., Optimisation and comparative kinetics study of polyphenol extraction from olive leaves (Olea europaea) using heated water/glycerol mixtures, Sep Purif Technol, 128, pp. 89-95, (2014)
[4]
Arancon R.A.D., Lin C.S.K., Chan K.M., Kwan T.H., Luque R., Advances on waste valorization: new horizons for a more sustainable society, Energy Sci Eng, 1, 2, pp. 53-71, (2013)
[5]
Babbar N., Oberoi H.S., Sandhu S.K., Therapeutic and nutraceutical potential of bioactive compounds extracted from fruit residues, Crit Rev Food Sci Nutr, 55, 3, pp. 319-337, (2015)
[6]
Baiano A., Recovery of biomolecules from food wastes—a review, Molecules, 19, 9, pp. 14821-14842, (2014)
[7]
Bazykina N., Nikolaevskii A., Filippenko T., Kaloerova V., Optimization of conditions for the extraction of natural antioxidants from raw plant materials, Pharm Chem J, 36, 2, pp. 46-49, (2002)
[8]
Boulekbache-Makhlouf L., Medouni L., Medouni-Adrar S., Arkoub L., Madani K., Effect of solvents extraction on phenolic content and antioxidant activity of the byproduct of eggplant, Ind Crop Prod, 49, pp. 668-674, (2013)
[9]
Cavdarova M., Makris D.P., Extraction kinetics of phenolics from carob (Ceratonia siliqua L.) kibbles using environmentally benign solvents, Waste Biomass Valoriz, 5, 5, pp. 773-779, (2014)
[10]
Chatterjee D., Jadhav N.T., Bhattacharjee P., Solvent and supercritical carbon dioxide extraction of color from eggplants: characterization and food applications, LWT-Food Sci Technol, 51, 1, pp. 319-324, (2013)