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The Oxidation Stability of Virgin and Pure Olive Oil on Autoxidation and Thermal Oxidation

자동산화 및 가열산화에 대한 압착 및 혼합 올리브유의 산화안정성

  • 문주수 (국립한경대학교 식품생물공학과 식품생물산업연구소) ;
  • 이옥환 (국립한경대학교 식품생물공학과 식품생물산업연구소) ;
  • 손종연 (국립한경대학교 식품생물공학과 식품생물산업연구소)
  • Published : 2005.01.01

Abstract

Total tocopherol and phenol contents were determined for virgin and pure oilve oil, and their autoxidation and thermal oxidation were compared with those of commercial soybean oil, in the presence or absence of fluorescent light. The total tocopherol contents of virgin, pure olive oil, and soybean oil were 15.7, 11.2, and 80.7 mg/100 g, respectively. Their total phenol contents were 10.4, 1.6 and 0.5 mg/l00 g, respectively. In autoxidation under dark place at 45$^{\circ}C$, the oxidative stability of the substrate oils decreased in order of virgin oilve oil, pure olive oil, and soybean oil. The average temperature coefficients of the virgin, pure olive oil and soybean oil in the range of 45∼$65^{\circ}C$ were 1.73, 1.83 and 1.64, and the activation energies were 26.86, 29.49, and 24.07 KJ/mol, respectively. In temperature range of 45∼$65^{\circ}C$, pure olive oil was the most susceptible to temperature change, whereas soybean oil the least. In autoxidation under fluorescent light at 45$^{\circ}C$, the oxidative stability of substrate oils decreased in the order of soybean oil, pure olive oil, and virgin olive oil. In thermal oxidation at 18$0^{\circ}C$, the oxidative stability of substrate oils decreased in order of pure olive oil, virgin olive oil, and soybean oil.

압착 및 혼합 올리브유의 총토코페롤 및 총페놀 함량을 비교 분석하고, 아울러 빛의 존재 유무에 따른 자동산화 및 가열산화에 대한 산화안정성을 대두유와 비교 검토하였다. 압착 올리브유, 혼합 올리브유 및 대두유의 총토코페롤 함량은 각각 15.7, 11.2 및 80.7 mg/100 g이었다. 이들의 총페놀 함량은 각각 10.4, 1.6 및 0.5 mg/100g이었다. 암소하에서 자동산화에 의한 산화안정성은 압착 올리브유>혼합 올리브유^gt;대두유 순이었다. 압착 올리브유, 혼합 올리브유 및 대두유의 평균 온도계수는 45∼$65^{\circ}C$의 온도범위 에서 각각 1.73, 1.83 및 1.64이었으며, 활성화에너지는 각각 26.86,29.49 및 24.07 KJ/moi이었다. 빛의 존재 하에서 자동산화에 대한 산화안정성은 대두유>혼합 올리브유>압착 올리브유의 순이었으며, 이 들의 유도기간은 각각 15.3일, 16.4일 및 18.0일이었다. 가열산화에 대한 산화안정성은 혼합 올리브유>압착 올리브유>대두유의 순이었다.

Keywords

References

  1. The Korean Society of Food and Nutrition. 1998. Dictionary of Food and Nutrition. Korea Dictionary Research Publishing, Seoul, Korea
  2. Fernandez-Escobar R, Moreno R, Garcia-Creus M. 1999. Seasonal changes of mineral nutrients in olive leaves during the alternate-bearing cycle. Scientia Horticulture 82: 25- 45 https://doi.org/10.1016/S0304-4238(99)00045-X
  3. Zarzuelo A. 1991. Vasoliator effect of olive leaf. Planta Medica 57: 417-419 https://doi.org/10.1055/s-2006-960138
  4. Samuelssion G. 1951. The blood pressure lowering factor in leaves of Olea europaea. Farmacevtisk Revy 15: 229-239
  5. Aziz NH, Farag SE, Mousa LA, Abo-Zaid MA. 1998. Comparative antibacterial and antifungal effects of some phenolic compounds. Microbios 93: 43-54
  6. Anonymous. 2003. The Food and Distribution Yearbook. The Food Journal, Seoul, Korea
  7. Shahidi F, Wanasumdara PD. 1992. Phenolic antioxidants. Rev Food Sci Nutr 32: 67-103 https://doi.org/10.1080/10408399209527581
  8. Cinquanta L, Esti M, Di Matteo M. 2001. Oxidative stability of virgin olive oils. J Am Oil Chem Soc 78: 1197-1202 https://doi.org/10.1007/s11745-001-0413-x
  9. Fakourelis N, Lee EC, Min DB. 1987. Effects of chlorophyll and ${\beta}-carotene$ on the oxidation stability of olive oil. J Food Sci 52: 243-235
  10. Endo Y, Usuki R, Kaneda T. 1984. Prooxidants activities of chlorophyll and their decomposition products on the photooxidation of methyl linoleate. J Am Oil Chem Soc 61: 781-784 https://doi.org/10.1007/BF02672135
  11. Lee J, Ye L, Landan WO Jr, Eitenmiller RR. 2000. Optimization of an extraction procedure for the quantification of vitamin E in tomato and broccoli using respon surface methodology. J Food Composition and Analysis 13: 45-57 https://doi.org/10.1006/jfca.1999.0845
  12. Teresa SM, Huang SW, Edwin NF. 1995. Effect of natural antioxidants in virgin olive oil on oxidative stability of refined, bleached, and deodorized olive oil. JAOCS 72: 1131-1137 https://doi.org/10.1007/BF02540978
  13. AOAC. 1984. Official Methods of Analysis. 14th ed. Method 9.110. Association of official analytical communities, Arlington, VA, USA
  14. AOAC. 1990. Official Methods of Analysis. 15th ed. Association of official analytical chemists, Washington, DC. Cd 8-35
  15. AOCS. 1990. Official and Tentative Method. 2nd ed. Method Ti-la-64. Am Oil Chem Soc Chicago, USA
  16. AOCS. 1990. Official and Tentative Methods. 10th AOCS official Method Cd 3a-63, Am Oil Chem Soc, Chicago, USA
  17. Benavente-Garcia O, Castillo J, Lorente J, Ortuno A, Del Rio JA. 2000. Antioxidant activity of phenolics extracted from Olea europaea L. leaves. Food Chem 68: 457-462 https://doi.org/10.1016/S0308-8146(99)00221-6
  18. Ahmet K, Ali R, Tekin and Mehmet D. 1993. Oxidative stability of sunflower and olive oils. Lebensmittel Wissenschaft Technol 26: 464-468 https://doi.org/10.1006/fstl.1993.1091
  19. Endo Y, Usuki R, Kaneda T. 1984. Prooxidant activities of chlorophylls and their decomposition products on the photooxidation of methyl linolate. J Am Oil Chem Soc 61: 781-784 https://doi.org/10.1007/BF02672135
  20. Endo Y, Usuki R, Kaneda T. 1984. The photooxidative alteration of chlorophylls in the methyl linolate and prooxidant activity of their decomposition products. Agric Biol Chem 48: 985 https://doi.org/10.1271/bbb1961.48.985
  21. Ranalli A. 1992. Carotenoids in virgin olive oils. J Food Sci 1: 53-57

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