TY - JOUR
T1 - Effect of supercritical carbon dioxide decaffeination on volatile components of green teas
AU - Lee, S.
AU - Park, M. K.
AU - Kim, K. H.
AU - Kim, Y. S.
PY - 2007/9
Y1 - 2007/9
N2 - Volatile components in regular and decaffeinated green teas were isolated by simultaneous steam distillation and solvent extraction (SDE), and then analyzed by GC-MS. A total of 41 compounds, including 8 alcohols, 15 terpene-type compounds, 10 carbonyls, 4 N-containing compounds, and 4 miscellaneous compounds, were found in regular and decaffeinated green teas. Among them, linalool and phenylacetaldehyde were quantitatively dominant in both regular and decaffeinated green teas. By a decaffeination process using supercritical carbon dioxide, most volatile components decreased. The more caffeine was removed, the more volatile components were reduced in green teas. In particular, relatively nonpolar components such as terpene-type compounds gradually decreased according to the decaffeination process. Aroma-active compounds in regular and decaffeinated green teas were also determined and compared by aroma extract dilution analysis (AEDA). Most greenish and floral flavor compounds such as hexanal, (E)-2-hexenal, and some unknown compounds disappeared or decreased after the decaffeination process.
AB - Volatile components in regular and decaffeinated green teas were isolated by simultaneous steam distillation and solvent extraction (SDE), and then analyzed by GC-MS. A total of 41 compounds, including 8 alcohols, 15 terpene-type compounds, 10 carbonyls, 4 N-containing compounds, and 4 miscellaneous compounds, were found in regular and decaffeinated green teas. Among them, linalool and phenylacetaldehyde were quantitatively dominant in both regular and decaffeinated green teas. By a decaffeination process using supercritical carbon dioxide, most volatile components decreased. The more caffeine was removed, the more volatile components were reduced in green teas. In particular, relatively nonpolar components such as terpene-type compounds gradually decreased according to the decaffeination process. Aroma-active compounds in regular and decaffeinated green teas were also determined and compared by aroma extract dilution analysis (AEDA). Most greenish and floral flavor compounds such as hexanal, (E)-2-hexenal, and some unknown compounds disappeared or decreased after the decaffeination process.
KW - Aroma extract dilution analysis
KW - Aroma-active compounds
KW - Regular and decaffeinated green teas
KW - Supercritical carbon dioxide
KW - Volatile components
UR - http://www.scopus.com/inward/record.url?scp=34548480204&partnerID=8YFLogxK
U2 - 10.1111/j.1750-3841.2007.00446.x
DO - 10.1111/j.1750-3841.2007.00446.x
M3 - Article
C2 - 17995663
AN - SCOPUS:34548480204
SN - 0022-1147
VL - 72
SP - S497-S502
JO - Journal of Food Science
JF - Journal of Food Science
IS - 7
ER -