• Title/Summary/Keyword: sesame%28oil%29

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Analysis of Volatile Flavor Compounds in Sesame Oil Extracted by Purge-and-Trap Method (Purge-and-Trap법에 의해 추출한 참기름 향기성분 분석)

  • Lee, Sang-Hwa;Joo, Kwang-Jee
    • Korean Journal of Food Science and Technology
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    • v.30 no.2
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    • pp.260-265
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    • 1998
  • In this study, volatile flavor compounds in sesame oils were analyzed by using pure-and-trap method and a gas chromatography. 2-ethoxy-3-ethylpyrazine was used as an internal standard and retention index (Kovat's number) for the volatiles were determined through the use of a n-paraffin $(C_5-C_{25})$ standards. A total of 33 volatile compounds including 14 pyrazines, 7 thiazoles, 4 pyridines, 2 oxazoles and 6 others were identified in the sesame oils. By comparing the total yields of volatile flavor compounds, the pyrazines are the most abundant compounds all of the oil samples and considered as good contributor to characteristic flavor of sesame oil. The oil from the seeds roasted in the electric pan at $200^{\circ}C$ and $230^{\circ}C$ for 10 minutes generated 277.06 ppm, 264.81 ppm in pyrazine and 15.16 ppm, 13.19 ppm in thiazole, respectively. The sensory evaluation of oil samples was also investigated. The sesame oil obtained from the sesame seeds roasted at $200^{\circ}C$ for 10 minutes with electric pan showed good flavor scores and quality among the all of samples.

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Detection of the Adulterated Sesame Oil by the Analysis of Fatty Acid Compositions and Carbon Isotope Ratio (지방산조성과 탄소동위원소 분석에 의한 참기름에 혼입된 타식용유의 검출방법)

  • Ha, Jae-Ho;Hawer, Woo-Derck;Hwang, Jin-Bong
    • Korean Journal of Food Science and Technology
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    • v.25 no.4
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    • pp.345-350
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    • 1993
  • Fatty acid composition of sesame oil could be distinguished from that of rapeseed oil and soybean oil by the content of linolenic acid. The relative composition of each fatty acid revealed the clear difference between sesame oil and other vegetable oils except corn oil. Ricebran oil was different from sesame oil in the relative composition of palmitic acid with respect to stearic acid and cottonseed oil in oleic acid to linoleic acid. ${\delta}^{13}C$ of corn oil was $19.40%_{\circ}$, in oleic acid and $-17.11%_{\circ}$, in linoleic acid, while that of sesame oil was $-27.60%_{\circ}$ in oleic acid and $-27.70%_{\circ}$ in linoleic acid. Therefore, most adulterant could be detected by comparing the ratio of fatty acids in vegetable oils except corn oil. It could, however, be detected by comparing carbon isotope ratio in the case of corn oil.

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Study on Characteristics of Cold-pressed Sesame Oil and Virgin Sesame Oil (냉 압착 참기름과 볶음 압착 참기름의 품질 특성)

  • Kim, Bum-Keun;Lim, Jeong-Ho;Cho, Young-Sim;Park, Kee-Jai;Kim, Jong-Chan;Jeon, Jin-Woong;Jeong, Seong-Weon
    • Journal of the East Asian Society of Dietary Life
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    • v.18 no.5
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    • pp.812-821
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    • 2008
  • The characteristics of cold-pressed sesame oil (CPSO), virgin sesame oil (VSO), commercial heat-press extracted sesame oil (CHPESO) and commercial supercritical fluid extracted sesame oil (CSFESO) were investigated. The total phenolics of CPSO, VSO, CHPESO and CSFESO were 31.27, 68.33, 60.65 and 31.44 mg/100 g, respectively. Their $\gamma$-tocopherol contents were 32.82, 31.66, 29.26 and 26.87 mg/100g, respectively. The sesamol, sesamin, and sesamolin contents of VSO were the highest. The oxidation induction period (4.53 hr) of CPSO was lower than that of VSO, CHPESO and CSFESO (19.90, 16.50, and 12.23 hr, respectively). CPSO was rapidly oxidized during storage at $60^{\circ}C$ in the dark, and its peroxide value (POV) was increased about 14 times. Although there were few differences in electron-donating abilities at low concentrations (below 100 mg%), VSO showed the highest electron-donating abilities at higher concentrations (77.76% at 10,000 mg%). Contents of linolenic acid and oleic acid were $40.35{\sim}43.98$ and $31.59{\sim}33.46\;g$/100 g, respectively. CPSO contained the highest amount of oleic and linoleic acid among the variously extracted sesame oil.

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