Open Access

New Methods Of Plant Selection For Food Aroma Recovery Aided By Oxidation Processes


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1. Guentert, M. (2007). The flavour and fragrance industry—past, present, and future. In Berger, R. G. (Ed.). Flavours and fragrances: chemistry, bioprocessing and sustainability. Springer.Search in Google Scholar

2. Ahn, Y. Y., Ahnert, S. E., Bagrow, J. P., & Barabási, A. L. (2011). Flavor network and the principles of food pairing. Scientific reports, 1.10.1038/srep00196324094722355711Search in Google Scholar

3. Reed, G. (1966). Enzymes in Food Processing (1966). Access Online via Elsevier.Search in Google Scholar

4. Hasselstrom, T., Bailey, S., & Reese, E. T. (1962). Regeneration of Food Flavors through Enzymatic Action. Army Research Office Washington DC.10.21236/AD0286640Search in Google Scholar

5. Schwimmer, S. Alteration of the flavor of processed vegetables by enzyme preparations. Journal of Food Science, 28(4), (1963) 460-466.10.1111/j.1365-2621.1963.tb00227.xSearch in Google Scholar

6. J. Jolly, S. Ulbrich «Enzyme compositions that enhance the flavor of food and beverages» U.S. Patent No. 2007/0020744 Al. 25 Jan. 2007Search in Google Scholar

7. Reineccius, G. (2005). Flavor chemistry and technology. CRC press.10.1201/9780203485347Search in Google Scholar

8. Oey, I. (2010). Effect of novel food processing on fruit and vegetable enzymes. In Bayındırlı, A. Enzymes in Fruit and Vegetable Processing, 245. Taylor & Francis Group.10.1201/9781420094343-c10Search in Google Scholar

9. Leone, A., Bleve-Zacheo, T., Gerardi, C., Melillo, M. T., Leo, L., & Zacheo, G. (2006). Lipoxygenase involvement in ripening strawberry. Journal of Agricultural and Food chemistry, 54(18), 6835-6844.10.1021/jf061457g16939347Search in Google Scholar

10. Dubova, H.E., Bezysov, A.T. (2014) Theory development of enzymatic aroma recovery. Proceedings of the Voroneg state university of engineering technologies, 2 (60), 119-124.Search in Google Scholar

11. Jiménez-Monreal, A. M., García-Diz, L., Martínez-Tomé, M., Mariscal, M., & Murcia, M. A. (2009). Influence of cooking methods on antioxidant activity of vegetables. Journal of Food Science, 74(3), H97-H103.10.1111/j.1750-3841.2009.01091.x19397724Search in Google Scholar

12. Scopes, R. (1985). Methods of protein purification. M.: Mir.Search in Google Scholar

13. Antolovich, M., Prenzler, P.D., Patsalides, E. Methods for testing antioxidant activity // Analyst. 2002. V. 127. P. 183–19810.1039/b009171p11827390Search in Google Scholar

14. Oey, I. (2010). Effect of novel food processing on fruit and vegetable enzymes. In Bayındırlı, A. Enzymes in Fruit and Vegetable Processing, 245. Taylor & Francis Group.10.1201/9781420094343-c10Search in Google Scholar

15. Damodaran, S., & Parkin, K. L. (Eds.). (2008). Fennema's food chemistry (Vol. 4). Boca Raton, FL: CRC press.Search in Google Scholar

16. Gardner, Harold W. “Decomposition of linoleic acid hydroperoxides. Enzymic reactions compared with nonenzymic.” Journal of agricultural and food chemistry23.2 (1975): 129-136.10.1021/jf60198a012805802Search in Google Scholar

17. Eriksson, Caj. “Aroma compounds derived from oxidized lipids. Biochemical and analytical aspects.” Journal of Agricultural and Food Chemistry 23.2 (1975): 126-128.10.1021/jf60198a011Search in Google Scholar

18. Pandey, D., Agrawal, M., & Bohra, J. S. (2014). Effects of conventional tillage and no tillage permutations on extracellular soil enzyme activities and microbial biomass under rice cultivation. Soil and Tillage Research, 136, 51-60.10.1016/j.still.2013.09.013Search in Google Scholar

19. Cutter, C. N. (2002). Microbial control by packaging: a review. Critical reviews in food science and nutrition, 42(2), 151-161.10.1080/10408690290825493Search in Google Scholar

20. Nam, K. C., & Ahn, D. U. (2002). Carbon monoxide-heme pigment is responsible for the pink color in irradiated raw turkey breast meat. Meat Science, 60(1), 25-33.10.1016/S0309-1740(01)00101-2Search in Google Scholar

21. Nam, Ki-Chang. “Mechanisms of color change and the prevention of off-color and off-flavor in irradiated meat.” (2002).Search in Google Scholar

22. Okouchi, S., Suzuki, M., Sugano, K., Kagamimori, S., & Ikeda, S. (2002). Water Desirable for the Human Body in Terms of Oxidation-Reduction Potential (ORP) to pH Relationship. Journal of food science, 67(5), 1594-1598.10.1111/j.1365-2621.2002.tb08689.xSearch in Google Scholar

23. Suslow, T. V. (2004). Oxidation-reduction potential (ORP) for water disinfection monitoring, control, and documentation. Division of Agriculture and National Resources, University of California, Davis.10.3733/ucanr.8149Search in Google Scholar

24. Pinchuk, I., Shoval, H., Dotan, Y., Lichtenberg, D. (2012). Evaluation of antioxidants: Scope, limitations and relevance of assays. Chemistry and physics of lipids, 165(6), 638-647.10.1016/j.chemphyslip.2012.05.00322721987Search in Google Scholar

25. Stephanson, C. J., Stephanson, A. M., & Flanagan, G. P. (2002). Antioxidant capability and efficacy of Mega-H™ silica hydride, an antioxidant dietary supplement, by in vitro cellular analysis using photosensitization and fluorescence detection. Journal of medicinal food, 5(1), 9-16.10.1089/10966200275372317912511108Search in Google Scholar

eISSN:
2344-150X
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Industrial Chemistry, other, Food Science and Technology